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Research report.

Callen, I., Carbonari, M. V., DeArmond, M., Dewey, D., Dizon-Ross, E., Goldhaber, D., Isaacs, J., et al. (2023). Summer School As a Learning Loss Recovery Strategy After COVID-19: Evidence from Summer 2022 . Abstract To make up for pandemic-related learning losses, many U.S. public school districts have increased enrollment in their summer school programs. We assess summer school as a strategy for COVID-19 learning recovery by tracking the academic progress of students who attended summer school in 2022 across eight districts serving 400,000 students. Based on students’ spring to fall progress, we find a positive impact for summer school on math test achievement (0.03 standard deviation, SD), but not on reading tests. These effects are predominantly driven by students in upper elementary grades. To put the results into perspective, if we assume that these districts have losses similar to those present at the end of the 2022–23 school year (i.e., approximately -0.2 SD), we estimate summer programming closed approximately 2% to 3% of the districts’ total learning losses in math, but none in reading.

We analyze data from approximately 7,800 school districts to describe variation in pandemic-related learning losses among communities and student subgroups. We attempt to understand mechanisms that led to learning losses, as well as explore how historical data from those districts can inform our expectations for how quickly districts will rebound from such losses. We show that learning losses during the pandemic were large and highly variable among communities. Similar to previous research, we find that losses were larger in lower-income and minority districts and in districts which remained remote or hybrid for longer periods during the 2020-21 school year. Among districts, the math learning loss per week of remote/hybrid instruction was larger in high-minority and high-poverty districts. Within districts, however, White students and non-economically disadvantaged students lost about the same amount of ground as Black, Hispanic and economically disadvantaged students. This suggests that the mechanisms driving losses operated at the district or community level, rather than household level. Several community-level characteristics were related to learning losses: broadband access, disruptions to social and economic activity, and trust in government institutions. However, no individual predictor provided strong explanatory power. Relative to historical years, losses during the pandemic were substantial, and an exploratory analysis of historical shocks to achievement suggests that the effects of the pandemic are likely to persist without continued concerted investments in student learning.

Teacher evaluation reform has been among the most controversial education reforms in recent years. It also is one of the costliest in terms of the time teachers and principals must spend on classroom observations. We conducted a randomized field trial at four sites to evaluate whether substituting teacher-collected videos for in-person observations could improve the value of teacher observations for teachers, administrators, or students. Relative to teachers in the control group who participated in standard in-person observations, teachers in the video-based treatment group reported that post-observation meetings were more “supportive” and they were more able to identify a specific practice they changed afterward. Treatment principals were able to shift their observation work to noninstructional times. The program also substantially increased teacher retention. Nevertheless, the intervention did not improve students’ academic achievement or self-reported classroom experiences, either in the year of the intervention or for the next cohort of students. Following from the literature on observation and feedback cycles in low-stakes settings, we hypothesize that to improve student outcomes schools may need to pair video feedback with more specific supports for desired changes in practice.

Click to read full text on MIT Press Journals

The project team is still awaiting student test data to complete the evaluation, but this brief provides a short update on survey results. Students of MQI-coached teachers report that their teachers ask more substantive questions, and require more use of mathematical vocabulary as compared to students of control teachers. Students in MQI-coached classrooms also reported more student talk in class. Teachers who received MQI Coaching tended to find their professional development significantly more useful than control teachers, and were also more likely to report that their mathematics instruction improved over the course of the year.

In Massachusetts, the charter school debate has centered on four concerns:

  • that the achievement of the high-scoring charter schools is due to selective admission and retention policies and not the education that the charter schools provide,
  • that charter schools are underserving English language learners and special education students,
  • that charter schools are disciplining students at higher rates in order to drive troublesome students back to traditional schools, and
  • that charter schools are undermining traditional public schools financially.

This report summarizes the evidence pertaining to these four concerns.

(2016). Findings from a National Study on Research Use Among School and District Leaders (Technical Report No. 1) . National Center for Research in Policy and Practice. Read the report (NCRPP Website)

Achievement Network (ANet) was founded in 2005 as a school-level intervention to support the use of academic content standards and assessments to improve teaching and learning. Initially developed within the Boston charter school sector, it has expanded to serve over 500 schools in nine geographic networks across the United States. The program is based on the belief that if teachers are provided with timely data on student performance from interim assessments tied to state standards, if school leaders provide support and create structures that help them use that data to identify student weaknesses, and if teachers have knowledge of how to improve the performance of students who are falling behind, then they will become more effective at identifying and addressing gaps in student learning. This will, in turn, improve student performance, particularly for high-need students.

In 2010, ANet received a development grant from the U.S. Department of Education’s Investing in Innovation (i3) Program. The grant funded both the expansion of the program to serve up to 60 additional schools in five school districts, as well as an external evaluation of the expansion. The Center for Education Policy Research (CEPR) at Harvard University partnered with ANet to design a matched-pair, school-randomized evaluation of their program’s impact on educator practice and student achievement in schools participating in its i3-funded expansion.

Subtle policy adjustments can induce relatively large “ripple effects.” We evaluate a College Board initiative that increased the number of free SAT score reports available to low-income students and changed the time horizon for using these score reports. Using a difference-in-differences analytic strategy, we estimate that targeted students were roughly 10 percentage points more likely to send eight or more reports. The policy improved on-time college attendance and 6-year bachelor’s completion by about 2 percentage points. Impacts were realized primarily by students who were competitive candidates for 4-year college admission. The bachelor’s completion impacts are larger than would be expected based on the number of students driven by the policy change to enroll in college and to shift into more selective colleges. The unexplained portion of the completion effects may result from improvements in nonacademic fit between students and the postsecondary institutions in which they enroll.

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Home » Research Report – Example, Writing Guide and Types

Research Report – Example, Writing Guide and Types

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Research Report

Research Report

Definition:

Research Report is a written document that presents the results of a research project or study, including the research question, methodology, results, and conclusions, in a clear and objective manner.

The purpose of a research report is to communicate the findings of the research to the intended audience, which could be other researchers, stakeholders, or the general public.

Components of Research Report

Components of Research Report are as follows:

Introduction

The introduction sets the stage for the research report and provides a brief overview of the research question or problem being investigated. It should include a clear statement of the purpose of the study and its significance or relevance to the field of research. It may also provide background information or a literature review to help contextualize the research.

Literature Review

The literature review provides a critical analysis and synthesis of the existing research and scholarship relevant to the research question or problem. It should identify the gaps, inconsistencies, and contradictions in the literature and show how the current study addresses these issues. The literature review also establishes the theoretical framework or conceptual model that guides the research.

Methodology

The methodology section describes the research design, methods, and procedures used to collect and analyze data. It should include information on the sample or participants, data collection instruments, data collection procedures, and data analysis techniques. The methodology should be clear and detailed enough to allow other researchers to replicate the study.

The results section presents the findings of the study in a clear and objective manner. It should provide a detailed description of the data and statistics used to answer the research question or test the hypothesis. Tables, graphs, and figures may be included to help visualize the data and illustrate the key findings.

The discussion section interprets the results of the study and explains their significance or relevance to the research question or problem. It should also compare the current findings with those of previous studies and identify the implications for future research or practice. The discussion should be based on the results presented in the previous section and should avoid speculation or unfounded conclusions.

The conclusion summarizes the key findings of the study and restates the main argument or thesis presented in the introduction. It should also provide a brief overview of the contributions of the study to the field of research and the implications for practice or policy.

The references section lists all the sources cited in the research report, following a specific citation style, such as APA or MLA.

The appendices section includes any additional material, such as data tables, figures, or instruments used in the study, that could not be included in the main text due to space limitations.

Types of Research Report

Types of Research Report are as follows:

Thesis is a type of research report. A thesis is a long-form research document that presents the findings and conclusions of an original research study conducted by a student as part of a graduate or postgraduate program. It is typically written by a student pursuing a higher degree, such as a Master’s or Doctoral degree, although it can also be written by researchers or scholars in other fields.

Research Paper

Research paper is a type of research report. A research paper is a document that presents the results of a research study or investigation. Research papers can be written in a variety of fields, including science, social science, humanities, and business. They typically follow a standard format that includes an introduction, literature review, methodology, results, discussion, and conclusion sections.

Technical Report

A technical report is a detailed report that provides information about a specific technical or scientific problem or project. Technical reports are often used in engineering, science, and other technical fields to document research and development work.

Progress Report

A progress report provides an update on the progress of a research project or program over a specific period of time. Progress reports are typically used to communicate the status of a project to stakeholders, funders, or project managers.

Feasibility Report

A feasibility report assesses the feasibility of a proposed project or plan, providing an analysis of the potential risks, benefits, and costs associated with the project. Feasibility reports are often used in business, engineering, and other fields to determine the viability of a project before it is undertaken.

Field Report

A field report documents observations and findings from fieldwork, which is research conducted in the natural environment or setting. Field reports are often used in anthropology, ecology, and other social and natural sciences.

Experimental Report

An experimental report documents the results of a scientific experiment, including the hypothesis, methods, results, and conclusions. Experimental reports are often used in biology, chemistry, and other sciences to communicate the results of laboratory experiments.

Case Study Report

A case study report provides an in-depth analysis of a specific case or situation, often used in psychology, social work, and other fields to document and understand complex cases or phenomena.

Literature Review Report

A literature review report synthesizes and summarizes existing research on a specific topic, providing an overview of the current state of knowledge on the subject. Literature review reports are often used in social sciences, education, and other fields to identify gaps in the literature and guide future research.

Research Report Example

Following is a Research Report Example sample for Students:

Title: The Impact of Social Media on Academic Performance among High School Students

This study aims to investigate the relationship between social media use and academic performance among high school students. The study utilized a quantitative research design, which involved a survey questionnaire administered to a sample of 200 high school students. The findings indicate that there is a negative correlation between social media use and academic performance, suggesting that excessive social media use can lead to poor academic performance among high school students. The results of this study have important implications for educators, parents, and policymakers, as they highlight the need for strategies that can help students balance their social media use and academic responsibilities.

Introduction:

Social media has become an integral part of the lives of high school students. With the widespread use of social media platforms such as Facebook, Twitter, Instagram, and Snapchat, students can connect with friends, share photos and videos, and engage in discussions on a range of topics. While social media offers many benefits, concerns have been raised about its impact on academic performance. Many studies have found a negative correlation between social media use and academic performance among high school students (Kirschner & Karpinski, 2010; Paul, Baker, & Cochran, 2012).

Given the growing importance of social media in the lives of high school students, it is important to investigate its impact on academic performance. This study aims to address this gap by examining the relationship between social media use and academic performance among high school students.

Methodology:

The study utilized a quantitative research design, which involved a survey questionnaire administered to a sample of 200 high school students. The questionnaire was developed based on previous studies and was designed to measure the frequency and duration of social media use, as well as academic performance.

The participants were selected using a convenience sampling technique, and the survey questionnaire was distributed in the classroom during regular school hours. The data collected were analyzed using descriptive statistics and correlation analysis.

The findings indicate that the majority of high school students use social media platforms on a daily basis, with Facebook being the most popular platform. The results also show a negative correlation between social media use and academic performance, suggesting that excessive social media use can lead to poor academic performance among high school students.

Discussion:

The results of this study have important implications for educators, parents, and policymakers. The negative correlation between social media use and academic performance suggests that strategies should be put in place to help students balance their social media use and academic responsibilities. For example, educators could incorporate social media into their teaching strategies to engage students and enhance learning. Parents could limit their children’s social media use and encourage them to prioritize their academic responsibilities. Policymakers could develop guidelines and policies to regulate social media use among high school students.

Conclusion:

In conclusion, this study provides evidence of the negative impact of social media on academic performance among high school students. The findings highlight the need for strategies that can help students balance their social media use and academic responsibilities. Further research is needed to explore the specific mechanisms by which social media use affects academic performance and to develop effective strategies for addressing this issue.

Limitations:

One limitation of this study is the use of convenience sampling, which limits the generalizability of the findings to other populations. Future studies should use random sampling techniques to increase the representativeness of the sample. Another limitation is the use of self-reported measures, which may be subject to social desirability bias. Future studies could use objective measures of social media use and academic performance, such as tracking software and school records.

Implications:

The findings of this study have important implications for educators, parents, and policymakers. Educators could incorporate social media into their teaching strategies to engage students and enhance learning. For example, teachers could use social media platforms to share relevant educational resources and facilitate online discussions. Parents could limit their children’s social media use and encourage them to prioritize their academic responsibilities. They could also engage in open communication with their children to understand their social media use and its impact on their academic performance. Policymakers could develop guidelines and policies to regulate social media use among high school students. For example, schools could implement social media policies that restrict access during class time and encourage responsible use.

References:

  • Kirschner, P. A., & Karpinski, A. C. (2010). Facebook® and academic performance. Computers in Human Behavior, 26(6), 1237-1245.
  • Paul, J. A., Baker, H. M., & Cochran, J. D. (2012). Effect of online social networking on student academic performance. Journal of the Research Center for Educational Technology, 8(1), 1-19.
  • Pantic, I. (2014). Online social networking and mental health. Cyberpsychology, Behavior, and Social Networking, 17(10), 652-657.
  • Rosen, L. D., Carrier, L. M., & Cheever, N. A. (2013). Facebook and texting made me do it: Media-induced task-switching while studying. Computers in Human Behavior, 29(3), 948-958.

Note*: Above mention, Example is just a sample for the students’ guide. Do not directly copy and paste as your College or University assignment. Kindly do some research and Write your own.

Applications of Research Report

Research reports have many applications, including:

  • Communicating research findings: The primary application of a research report is to communicate the results of a study to other researchers, stakeholders, or the general public. The report serves as a way to share new knowledge, insights, and discoveries with others in the field.
  • Informing policy and practice : Research reports can inform policy and practice by providing evidence-based recommendations for decision-makers. For example, a research report on the effectiveness of a new drug could inform regulatory agencies in their decision-making process.
  • Supporting further research: Research reports can provide a foundation for further research in a particular area. Other researchers may use the findings and methodology of a report to develop new research questions or to build on existing research.
  • Evaluating programs and interventions : Research reports can be used to evaluate the effectiveness of programs and interventions in achieving their intended outcomes. For example, a research report on a new educational program could provide evidence of its impact on student performance.
  • Demonstrating impact : Research reports can be used to demonstrate the impact of research funding or to evaluate the success of research projects. By presenting the findings and outcomes of a study, research reports can show the value of research to funders and stakeholders.
  • Enhancing professional development : Research reports can be used to enhance professional development by providing a source of information and learning for researchers and practitioners in a particular field. For example, a research report on a new teaching methodology could provide insights and ideas for educators to incorporate into their own practice.

How to write Research Report

Here are some steps you can follow to write a research report:

  • Identify the research question: The first step in writing a research report is to identify your research question. This will help you focus your research and organize your findings.
  • Conduct research : Once you have identified your research question, you will need to conduct research to gather relevant data and information. This can involve conducting experiments, reviewing literature, or analyzing data.
  • Organize your findings: Once you have gathered all of your data, you will need to organize your findings in a way that is clear and understandable. This can involve creating tables, graphs, or charts to illustrate your results.
  • Write the report: Once you have organized your findings, you can begin writing the report. Start with an introduction that provides background information and explains the purpose of your research. Next, provide a detailed description of your research methods and findings. Finally, summarize your results and draw conclusions based on your findings.
  • Proofread and edit: After you have written your report, be sure to proofread and edit it carefully. Check for grammar and spelling errors, and make sure that your report is well-organized and easy to read.
  • Include a reference list: Be sure to include a list of references that you used in your research. This will give credit to your sources and allow readers to further explore the topic if they choose.
  • Format your report: Finally, format your report according to the guidelines provided by your instructor or organization. This may include formatting requirements for headings, margins, fonts, and spacing.

Purpose of Research Report

The purpose of a research report is to communicate the results of a research study to a specific audience, such as peers in the same field, stakeholders, or the general public. The report provides a detailed description of the research methods, findings, and conclusions.

Some common purposes of a research report include:

  • Sharing knowledge: A research report allows researchers to share their findings and knowledge with others in their field. This helps to advance the field and improve the understanding of a particular topic.
  • Identifying trends: A research report can identify trends and patterns in data, which can help guide future research and inform decision-making.
  • Addressing problems: A research report can provide insights into problems or issues and suggest solutions or recommendations for addressing them.
  • Evaluating programs or interventions : A research report can evaluate the effectiveness of programs or interventions, which can inform decision-making about whether to continue, modify, or discontinue them.
  • Meeting regulatory requirements: In some fields, research reports are required to meet regulatory requirements, such as in the case of drug trials or environmental impact studies.

When to Write Research Report

A research report should be written after completing the research study. This includes collecting data, analyzing the results, and drawing conclusions based on the findings. Once the research is complete, the report should be written in a timely manner while the information is still fresh in the researcher’s mind.

In academic settings, research reports are often required as part of coursework or as part of a thesis or dissertation. In this case, the report should be written according to the guidelines provided by the instructor or institution.

In other settings, such as in industry or government, research reports may be required to inform decision-making or to comply with regulatory requirements. In these cases, the report should be written as soon as possible after the research is completed in order to inform decision-making in a timely manner.

Overall, the timing of when to write a research report depends on the purpose of the research, the expectations of the audience, and any regulatory requirements that need to be met. However, it is important to complete the report in a timely manner while the information is still fresh in the researcher’s mind.

Characteristics of Research Report

There are several characteristics of a research report that distinguish it from other types of writing. These characteristics include:

  • Objective: A research report should be written in an objective and unbiased manner. It should present the facts and findings of the research study without any personal opinions or biases.
  • Systematic: A research report should be written in a systematic manner. It should follow a clear and logical structure, and the information should be presented in a way that is easy to understand and follow.
  • Detailed: A research report should be detailed and comprehensive. It should provide a thorough description of the research methods, results, and conclusions.
  • Accurate : A research report should be accurate and based on sound research methods. The findings and conclusions should be supported by data and evidence.
  • Organized: A research report should be well-organized. It should include headings and subheadings to help the reader navigate the report and understand the main points.
  • Clear and concise: A research report should be written in clear and concise language. The information should be presented in a way that is easy to understand, and unnecessary jargon should be avoided.
  • Citations and references: A research report should include citations and references to support the findings and conclusions. This helps to give credit to other researchers and to provide readers with the opportunity to further explore the topic.

Advantages of Research Report

Research reports have several advantages, including:

  • Communicating research findings: Research reports allow researchers to communicate their findings to a wider audience, including other researchers, stakeholders, and the general public. This helps to disseminate knowledge and advance the understanding of a particular topic.
  • Providing evidence for decision-making : Research reports can provide evidence to inform decision-making, such as in the case of policy-making, program planning, or product development. The findings and conclusions can help guide decisions and improve outcomes.
  • Supporting further research: Research reports can provide a foundation for further research on a particular topic. Other researchers can build on the findings and conclusions of the report, which can lead to further discoveries and advancements in the field.
  • Demonstrating expertise: Research reports can demonstrate the expertise of the researchers and their ability to conduct rigorous and high-quality research. This can be important for securing funding, promotions, and other professional opportunities.
  • Meeting regulatory requirements: In some fields, research reports are required to meet regulatory requirements, such as in the case of drug trials or environmental impact studies. Producing a high-quality research report can help ensure compliance with these requirements.

Limitations of Research Report

Despite their advantages, research reports also have some limitations, including:

  • Time-consuming: Conducting research and writing a report can be a time-consuming process, particularly for large-scale studies. This can limit the frequency and speed of producing research reports.
  • Expensive: Conducting research and producing a report can be expensive, particularly for studies that require specialized equipment, personnel, or data. This can limit the scope and feasibility of some research studies.
  • Limited generalizability: Research studies often focus on a specific population or context, which can limit the generalizability of the findings to other populations or contexts.
  • Potential bias : Researchers may have biases or conflicts of interest that can influence the findings and conclusions of the research study. Additionally, participants may also have biases or may not be representative of the larger population, which can limit the validity and reliability of the findings.
  • Accessibility: Research reports may be written in technical or academic language, which can limit their accessibility to a wider audience. Additionally, some research may be behind paywalls or require specialized access, which can limit the ability of others to read and use the findings.

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Research reports

This resource will help you identify the common elements and basic format of a research report.

Research reports generally follow a similar structure and have common elements, each with a particular purpose. Learn more about each of these elements below.

Common elements of reports

Your title should be brief, topic-specific, and informative, clearly indicating the purpose and scope of your study. Include key words in your title so that search engines can easily access your work. For example:  Measurement of water around Station Pier.

An abstract is a concise summary that helps readers to quickly assess the content and direction of your paper. It should be brief, written in a single paragraph and cover: the scope and purpose of your report; an overview of methodology; a summary of the main findings or results; principal conclusions or significance of the findings; and recommendations made.

The information in the abstract must be presented in the same order as it is in your report. The abstract is usually written last when you have developed your arguments and synthesised the results.

The introduction creates the context for your research. It should provide sufficient background to allow the reader to understand and evaluate your study without needing to refer to previous publications. After reading the introduction your reader should understand exactly what your research is about, what you plan to do, why you are undertaking this research and which methods you have used. Introductions generally include:

  • The rationale for the present study. Why are you interested in this topic? Why is this topic worth investigating?
  • Key terms and definitions.
  • An outline of the research questions and hypotheses; the assumptions or propositions that your research will test.

Not all research reports have a separate literature review section. In shorter research reports, the review is usually part of the Introduction.

A literature review is a critical survey of recent relevant research in a particular field. The review should be a selection of carefully organised, focused and relevant literature that develops a narrative ‘story’ about your topic. Your review should answer key questions about the literature:

  • What is the current state of knowledge on the topic?
  • What differences in approaches / methodologies are there?
  • Where are the strengths and weaknesses of the research?
  • What further research is needed? The review may identify a gap in the literature which provides a rationale for your study and supports your research questions and methodology.

The review is not just a summary of all you have read. Rather, it must develop an argument or a point of view that supports your chosen methodology and research questions.

The purpose of this section is to detail how you conducted your research so that others can understand and replicate your approach.

You need to briefly describe the subjects (if appropriate), any equipment or materials used and the approach taken. If the research method or method of data analysis is commonly used within your field of study, then simply reference the procedure. If, however, your methods are new or controversial then you need to describe them in more detail and provide a rationale for your approach. The methodology is written in the past tense and should be as concise as possible.

This section is a concise, factual summary of your findings, listed under headings appropriate to your research questions. It’s common to use tables and graphics. Raw data or details about the method of statistical analysis used should be included in the Appendices.

Present your results in a consistent manner. For example, if you present the first group of results as percentages, it will be confusing for the reader and difficult to make comparisons of data if later results are presented as fractions or as decimal values.

In general, you won’t discuss your results here. Any analysis of your results usually occurs in the Discussion section.

Notes on visual data representation:

  • Graphs and tables may be used to reveal trends in your data, but they must be explained and referred to in adjacent accompanying text.
  • Figures and tables do not simply repeat information given in the text: they summarise, amplify or complement it.
  • Graphs are always referred to as ‘Figures’, and both axes must be clearly labelled.
  • Tables must be numbered, and they must be able to stand-alone or make sense without your reader needing to read all of the accompanying text.

The Discussion responds to the hypothesis or research question. This section is where you interpret your results, account for your findings and explain their significance within the context of other research. Consider the adequacy of your sampling techniques, the scope and long-term implications of your study, any problems with data collection or analysis and any assumptions on which your study was based. This is also the place to discuss any disappointing results and address limitations.

Checklist for the discussion

  • To what extent was each hypothesis supported?
  • To what extent are your findings validated or supported by other research?
  • Were there unexpected variables that affected your results?
  • On reflection, was your research method appropriate?
  • Can you account for any differences between your results and other studies?

Conclusions in research reports are generally fairly short and should follow on naturally from points raised in the Discussion. In this section you should discuss the significance of your findings. To what extent and in what ways are your findings useful or conclusive? Is further research required? If so, based on your research experience, what suggestions could you make about improvements to the scope or methodology of future studies?

Also, consider the practical implications of your results and any recommendations you could make. For example, if your research is on reading strategies in the primary school classroom, what are the implications of your results for the classroom teacher? What recommendations could you make for teachers?

A Reference List contains all the resources you have cited in your work, while a Bibliography is a wider list containing all the resources you have consulted (but not necessarily cited) in the preparation of your work. It is important to check which of these is required, and the preferred format, style of references and presentation requirements of your own department.

Appendices (singular ‘Appendix’) provide supporting material to your project. Examples of such materials include:

  • Relevant letters to participants and organisations (e.g. regarding the ethics or conduct of the project).
  • Background reports.
  • Detailed calculations.

Different types of data are presented in separate appendices. Each appendix must be titled, labelled with a number or letter, and referred to in the body of the report.

Appendices are placed at the end of a report, and the contents are generally not included in the word count.

Fi nal ti p

While there are many common elements to research reports, it’s always best to double check the exact requirements for your task. You may find that you don’t need some sections, can combine others or have specific requirements about referencing, formatting or word limits.

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Many public K-12 teachers say people should know that teaching is hard job, and that teachers care about students and deserve respect.

What’s It Like To Be a Teacher in America Today?

Public K-12 teachers express low job satisfaction and few are optimistic about the future of U.S. education.

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research report in education

Research Topics & Ideas: Education

170+ Research Ideas To Fast-Track Your Dissertation, Thesis Or Research Project

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I f you’re just starting out exploring education-related topics for your dissertation, thesis or research project, you’ve come to the right place. In this post, we’ll help kickstart your research topic ideation process by providing a hearty list of research topics and ideas , including examples from actual dissertations and theses..

PS – This is just the start…

We know it’s exciting to run through a list of research topics, but please keep in mind that this list is just a starting point . To develop a suitable education-related research topic, you’ll need to identify a clear and convincing research gap , and a viable plan of action to fill that gap.

If this sounds foreign to you, check out our free research topic webinar that explores how to find and refine a high-quality research topic, from scratch. Alternatively, if you’d like hands-on help, consider our 1-on-1 coaching service .

Overview: Education Research Topics

  • How to find a research topic (video)
  • List of 50+ education-related research topics/ideas
  • List of 120+ level-specific research topics 
  • Examples of actual dissertation topics in education
  • Tips to fast-track your topic ideation (video)
  • Where to get extra help

Education-Related Research Topics & Ideas

Below you’ll find a list of education-related research topics and idea kickstarters. These are fairly broad and flexible to various contexts, so keep in mind that you will need to refine them a little. Nevertheless, they should inspire some ideas for your project.

  • The impact of school funding on student achievement
  • The effects of social and emotional learning on student well-being
  • The effects of parental involvement on student behaviour
  • The impact of teacher training on student learning
  • The impact of classroom design on student learning
  • The impact of poverty on education
  • The use of student data to inform instruction
  • The role of parental involvement in education
  • The effects of mindfulness practices in the classroom
  • The use of technology in the classroom
  • The role of critical thinking in education
  • The use of formative and summative assessments in the classroom
  • The use of differentiated instruction in the classroom
  • The use of gamification in education
  • The effects of teacher burnout on student learning
  • The impact of school leadership on student achievement
  • The effects of teacher diversity on student outcomes
  • The role of teacher collaboration in improving student outcomes
  • The implementation of blended and online learning
  • The effects of teacher accountability on student achievement
  • The effects of standardized testing on student learning
  • The effects of classroom management on student behaviour
  • The effects of school culture on student achievement
  • The use of student-centred learning in the classroom
  • The impact of teacher-student relationships on student outcomes
  • The achievement gap in minority and low-income students
  • The use of culturally responsive teaching in the classroom
  • The impact of teacher professional development on student learning
  • The use of project-based learning in the classroom
  • The effects of teacher expectations on student achievement
  • The use of adaptive learning technology in the classroom
  • The impact of teacher turnover on student learning
  • The effects of teacher recruitment and retention on student learning
  • The impact of early childhood education on later academic success
  • The impact of parental involvement on student engagement
  • The use of positive reinforcement in education
  • The impact of school climate on student engagement
  • The role of STEM education in preparing students for the workforce
  • The effects of school choice on student achievement
  • The use of technology in the form of online tutoring

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Level-Specific Research Topics

Looking for research topics for a specific level of education? We’ve got you covered. Below you can find research topic ideas for primary, secondary and tertiary-level education contexts. Click the relevant level to view the respective list.

Research Topics: Pick An Education Level

Primary education.

  • Investigating the effects of peer tutoring on academic achievement in primary school
  • Exploring the benefits of mindfulness practices in primary school classrooms
  • Examining the effects of different teaching strategies on primary school students’ problem-solving skills
  • The use of storytelling as a teaching strategy in primary school literacy instruction
  • The role of cultural diversity in promoting tolerance and understanding in primary schools
  • The impact of character education programs on moral development in primary school students
  • Investigating the use of technology in enhancing primary school mathematics education
  • The impact of inclusive curriculum on promoting equity and diversity in primary schools
  • The impact of outdoor education programs on environmental awareness in primary school students
  • The influence of school climate on student motivation and engagement in primary schools
  • Investigating the effects of early literacy interventions on reading comprehension in primary school students
  • The impact of parental involvement in school decision-making processes on student achievement in primary schools
  • Exploring the benefits of inclusive education for students with special needs in primary schools
  • Investigating the effects of teacher-student feedback on academic motivation in primary schools
  • The role of technology in developing digital literacy skills in primary school students
  • Effective strategies for fostering a growth mindset in primary school students
  • Investigating the role of parental support in reducing academic stress in primary school children
  • The role of arts education in fostering creativity and self-expression in primary school students
  • Examining the effects of early childhood education programs on primary school readiness
  • Examining the effects of homework on primary school students’ academic performance
  • The role of formative assessment in improving learning outcomes in primary school classrooms
  • The impact of teacher-student relationships on academic outcomes in primary school
  • Investigating the effects of classroom environment on student behavior and learning outcomes in primary schools
  • Investigating the role of creativity and imagination in primary school curriculum
  • The impact of nutrition and healthy eating programs on academic performance in primary schools
  • The impact of social-emotional learning programs on primary school students’ well-being and academic performance
  • The role of parental involvement in academic achievement of primary school children
  • Examining the effects of classroom management strategies on student behavior in primary school
  • The role of school leadership in creating a positive school climate Exploring the benefits of bilingual education in primary schools
  • The effectiveness of project-based learning in developing critical thinking skills in primary school students
  • The role of inquiry-based learning in fostering curiosity and critical thinking in primary school students
  • The effects of class size on student engagement and achievement in primary schools
  • Investigating the effects of recess and physical activity breaks on attention and learning in primary school
  • Exploring the benefits of outdoor play in developing gross motor skills in primary school children
  • The effects of educational field trips on knowledge retention in primary school students
  • Examining the effects of inclusive classroom practices on students’ attitudes towards diversity in primary schools
  • The impact of parental involvement in homework on primary school students’ academic achievement
  • Investigating the effectiveness of different assessment methods in primary school classrooms
  • The influence of physical activity and exercise on cognitive development in primary school children
  • Exploring the benefits of cooperative learning in promoting social skills in primary school students

Secondary Education

  • Investigating the effects of school discipline policies on student behavior and academic success in secondary education
  • The role of social media in enhancing communication and collaboration among secondary school students
  • The impact of school leadership on teacher effectiveness and student outcomes in secondary schools
  • Investigating the effects of technology integration on teaching and learning in secondary education
  • Exploring the benefits of interdisciplinary instruction in promoting critical thinking skills in secondary schools
  • The impact of arts education on creativity and self-expression in secondary school students
  • The effectiveness of flipped classrooms in promoting student learning in secondary education
  • The role of career guidance programs in preparing secondary school students for future employment
  • Investigating the effects of student-centered learning approaches on student autonomy and academic success in secondary schools
  • The impact of socio-economic factors on educational attainment in secondary education
  • Investigating the impact of project-based learning on student engagement and academic achievement in secondary schools
  • Investigating the effects of multicultural education on cultural understanding and tolerance in secondary schools
  • The influence of standardized testing on teaching practices and student learning in secondary education
  • Investigating the effects of classroom management strategies on student behavior and academic engagement in secondary education
  • The influence of teacher professional development on instructional practices and student outcomes in secondary schools
  • The role of extracurricular activities in promoting holistic development and well-roundedness in secondary school students
  • Investigating the effects of blended learning models on student engagement and achievement in secondary education
  • The role of physical education in promoting physical health and well-being among secondary school students
  • Investigating the effects of gender on academic achievement and career aspirations in secondary education
  • Exploring the benefits of multicultural literature in promoting cultural awareness and empathy among secondary school students
  • The impact of school counseling services on student mental health and well-being in secondary schools
  • Exploring the benefits of vocational education and training in preparing secondary school students for the workforce
  • The role of digital literacy in preparing secondary school students for the digital age
  • The influence of parental involvement on academic success and well-being of secondary school students
  • The impact of social-emotional learning programs on secondary school students’ well-being and academic success
  • The role of character education in fostering ethical and responsible behavior in secondary school students
  • Examining the effects of digital citizenship education on responsible and ethical technology use among secondary school students
  • The impact of parental involvement in school decision-making processes on student outcomes in secondary schools
  • The role of educational technology in promoting personalized learning experiences in secondary schools
  • The impact of inclusive education on the social and academic outcomes of students with disabilities in secondary schools
  • The influence of parental support on academic motivation and achievement in secondary education
  • The role of school climate in promoting positive behavior and well-being among secondary school students
  • Examining the effects of peer mentoring programs on academic achievement and social-emotional development in secondary schools
  • Examining the effects of teacher-student relationships on student motivation and achievement in secondary schools
  • Exploring the benefits of service-learning programs in promoting civic engagement among secondary school students
  • The impact of educational policies on educational equity and access in secondary education
  • Examining the effects of homework on academic achievement and student well-being in secondary education
  • Investigating the effects of different assessment methods on student performance in secondary schools
  • Examining the effects of single-sex education on academic performance and gender stereotypes in secondary schools
  • The role of mentoring programs in supporting the transition from secondary to post-secondary education

Tertiary Education

  • The role of student support services in promoting academic success and well-being in higher education
  • The impact of internationalization initiatives on students’ intercultural competence and global perspectives in tertiary education
  • Investigating the effects of active learning classrooms and learning spaces on student engagement and learning outcomes in tertiary education
  • Exploring the benefits of service-learning experiences in fostering civic engagement and social responsibility in higher education
  • The influence of learning communities and collaborative learning environments on student academic and social integration in higher education
  • Exploring the benefits of undergraduate research experiences in fostering critical thinking and scientific inquiry skills
  • Investigating the effects of academic advising and mentoring on student retention and degree completion in higher education
  • The role of student engagement and involvement in co-curricular activities on holistic student development in higher education
  • The impact of multicultural education on fostering cultural competence and diversity appreciation in higher education
  • The role of internships and work-integrated learning experiences in enhancing students’ employability and career outcomes
  • Examining the effects of assessment and feedback practices on student learning and academic achievement in tertiary education
  • The influence of faculty professional development on instructional practices and student outcomes in tertiary education
  • The influence of faculty-student relationships on student success and well-being in tertiary education
  • The impact of college transition programs on students’ academic and social adjustment to higher education
  • The impact of online learning platforms on student learning outcomes in higher education
  • The impact of financial aid and scholarships on access and persistence in higher education
  • The influence of student leadership and involvement in extracurricular activities on personal development and campus engagement
  • Exploring the benefits of competency-based education in developing job-specific skills in tertiary students
  • Examining the effects of flipped classroom models on student learning and retention in higher education
  • Exploring the benefits of online collaboration and virtual team projects in developing teamwork skills in tertiary students
  • Investigating the effects of diversity and inclusion initiatives on campus climate and student experiences in tertiary education
  • The influence of study abroad programs on intercultural competence and global perspectives of college students
  • Investigating the effects of peer mentoring and tutoring programs on student retention and academic performance in tertiary education
  • Investigating the effectiveness of active learning strategies in promoting student engagement and achievement in tertiary education
  • Investigating the effects of blended learning models and hybrid courses on student learning and satisfaction in higher education
  • The role of digital literacy and information literacy skills in supporting student success in the digital age
  • Investigating the effects of experiential learning opportunities on career readiness and employability of college students
  • The impact of e-portfolios on student reflection, self-assessment, and showcasing of learning in higher education
  • The role of technology in enhancing collaborative learning experiences in tertiary classrooms
  • The impact of research opportunities on undergraduate student engagement and pursuit of advanced degrees
  • Examining the effects of competency-based assessment on measuring student learning and achievement in tertiary education
  • Examining the effects of interdisciplinary programs and courses on critical thinking and problem-solving skills in college students
  • The role of inclusive education and accessibility in promoting equitable learning experiences for diverse student populations
  • The role of career counseling and guidance in supporting students’ career decision-making in tertiary education
  • The influence of faculty diversity and representation on student success and inclusive learning environments in higher education

Research topic idea mega list

Education-Related Dissertations & Theses

While the ideas we’ve presented above are a decent starting point for finding a research topic in education, they are fairly generic and non-specific. So, it helps to look at actual dissertations and theses in the education space to see how this all comes together in practice.

Below, we’ve included a selection of education-related research projects to help refine your thinking. These are actual dissertations and theses, written as part of Master’s and PhD-level programs, so they can provide some useful insight as to what a research topic looks like in practice.

  • From Rural to Urban: Education Conditions of Migrant Children in China (Wang, 2019)
  • Energy Renovation While Learning English: A Guidebook for Elementary ESL Teachers (Yang, 2019)
  • A Reanalyses of Intercorrelational Matrices of Visual and Verbal Learners’ Abilities, Cognitive Styles, and Learning Preferences (Fox, 2020)
  • A study of the elementary math program utilized by a mid-Missouri school district (Barabas, 2020)
  • Instructor formative assessment practices in virtual learning environments : a posthumanist sociomaterial perspective (Burcks, 2019)
  • Higher education students services: a qualitative study of two mid-size universities’ direct exchange programs (Kinde, 2020)
  • Exploring editorial leadership : a qualitative study of scholastic journalism advisers teaching leadership in Missouri secondary schools (Lewis, 2020)
  • Selling the virtual university: a multimodal discourse analysis of marketing for online learning (Ludwig, 2020)
  • Advocacy and accountability in school counselling: assessing the use of data as related to professional self-efficacy (Matthews, 2020)
  • The use of an application screening assessment as a predictor of teaching retention at a midwestern, K-12, public school district (Scarbrough, 2020)
  • Core values driving sustained elite performance cultures (Beiner, 2020)
  • Educative features of upper elementary Eureka math curriculum (Dwiggins, 2020)
  • How female principals nurture adult learning opportunities in successful high schools with challenging student demographics (Woodward, 2020)
  • The disproportionality of Black Males in Special Education: A Case Study Analysis of Educator Perceptions in a Southeastern Urban High School (McCrae, 2021)

As you can see, these research topics are a lot more focused than the generic topic ideas we presented earlier. So, in order for you to develop a high-quality research topic, you’ll need to get specific and laser-focused on a specific context with specific variables of interest.  In the video below, we explore some other important things you’ll need to consider when crafting your research topic.

Get 1-On-1 Help

If you’re still unsure about how to find a quality research topic within education, check out our Research Topic Kickstarter service, which is the perfect starting point for developing a unique, well-justified research topic.

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71 Comments

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You can find our list of nursing-related research topic ideas here: https://gradcoach.com/research-topics-nursing/

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parental involvement and students academic performance

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Bonang Morapedi

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Nkwain Chia Charles

Kindly help me with the research questions on the topic” Effects of workplace conflict on the employees’ job performance”. The effects can be applicable in every institution,enterprise or organisation.

Kelvin Kells Grant

Greetings, I am a student majoring in Sociology and minoring in Public Administration. I’m considering any recommended research topic in the field of Sociology.

Sulemana Alhassan

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Research Defense for students in senior high

Kupoluyi Regina

Kindly help me with a research topic in educational psychology. Ph.D level. Thank you.

Project-based learning is a teaching/learning type,if well applied in a classroom setting will yield serious positive impact. What can a teacher do to implement this in a disadvantaged zone like “North West Region of Cameroon ( hinterland) where war has brought about prolonged and untold sufferings on the indegins?

Damaris Nzoka

I wish to get help on topics of research on educational administration

I wish to get help on topics of research on educational administration PhD level

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William AU Mill

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D.Newlands PhD.

Look at British Library as they keep a copy of all PhDs in the UK Core.ac.uk to access Open University and 6 other university e-archives, pdf downloads mostly available, all free.

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Am a PhD student in Educational Foundations would like a sociological topic. Thank

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also916

Greetings and Regards I am a doctoral student in the field of philosophy of education. I am looking for a new topic for my thesis. Because of my work in the elementary school, I am looking for a topic that is from the field of elementary education and is related to the philosophy of education.

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Rey

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JAMES MALUKI MUTIA

I am a graduate with two masters. 1) Master of arts in religious studies and 2) Master in education in foundations of education. I intend to do a Ph.D. on my second master’s, however, I need to bring both masters together through my Ph.D. research. can I do something like, ” The contribution of Philosophy of education for a quality religion education in Kenya”? kindly, assist and be free to suggest a similar topic that will bring together the two masters. thanks in advance

betiel

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Mekonnen Tadesse

that is good idea you are sharing for a lot of researchers. I am one of such an information sucker. I am a chemistry teacher in Ethiopia secondary school. I am MSc degree holder in Analytical chemistry. I need to continue my education by this field. How I can get a full scholar ship?

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research report in education

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The future of education.

Google for Education collaborated with research partner Canvas8 to conduct a study across 24 countries on the future of education. The result is a three-part global report highlighting insights from around the world.

Global nonprofit American Institutes for Research (AIR) served as an advisor and consultant to this research.

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Preparing for a new future

As educators work to equip students with the skills and mindsets they’ll need to navigate massive change, the experts we interviewed discussed how and why they’re rethinking the role of education.

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What's inside

Rising demand for global problem solvers

Change in the skill sets required for work

Shift to a lifelong learning mindset

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Evolving how we teach and learn

Find out how recent technological advances are evolving how we think about teaching and learning from a one-to-many model to a more personal approach to learning.

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Making learning personal

Reimagining learning design

Elevating the teacher

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Reimagining learning ecosystems

Learn how educators are taking a more systemic approach to transformation, by reimagining the education ecosystem around the learner.

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Upgrading learning environments

Empowering educators with data

Re-evaluating student progress

Building the report

This report contains insights from interviews with education thought leaders from around the world, including experts in policy, academic researchers covering education, district-level representatives, school principals and teachers and edtech leaders.

FROM THE EXPERTS

“There is a need to develop human beings who are internally strong and resilient. The importance of knowledge transmission will decline in order to place a greater emphasis on fundamental and higher thinking skills, including children's socio-affective spheres.”

Sylvia Schmelkes, researcher at Universidad Iberoamericana, Mexico

“The education system has to enable young people to be great career navigators, to learn transferable skills that enable them to change fields and not just change jobs. And, to be alert to the changing workforce needs in ways that were probably less apparent previously.”

Valerie Hannon, co-founder, Innovation Unit, United Kingdom

“The power of technology in education [is a major force shaping it], changing learning experiences, changing the role and nature of educators — your work in knowledge transmission is no longer that relevant. You have to instead become a great coach, a great mentor, a social worker, and career advisor.”

Andreas Schleicher, director for education and skills, and special advisor on education policy to the secretary-general at the Organisation for Economic Co-operation and Development (OECD), Global

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Research report guide: Definition, types, and tips

Last updated

5 March 2024

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Short on time? Get an AI generated summary of this article instead

From successful product launches or software releases to planning major business decisions, research reports serve many vital functions. They can summarize evidence and deliver insights and recommendations to save companies time and resources. They can reveal the most value-adding actions a company should take.

However, poorly constructed reports can have the opposite effect! Taking the time to learn established research-reporting rules and approaches will equip you with in-demand skills. You’ll be able to capture and communicate information applicable to numerous situations and industries, adding another string to your resume bow.

  • What are research reports?

A research report is a collection of contextual data, gathered through organized research, that provides new insights into a particular challenge (which, for this article, is business-related). Research reports are a time-tested method for distilling large amounts of data into a narrow band of focus.

Their effectiveness often hinges on whether the report provides:

Strong, well-researched evidence

Comprehensive analysis

Well-considered conclusions and recommendations

Though the topic possibilities are endless, an effective research report keeps a laser-like focus on the specific questions or objectives the researcher believes are key to achieving success. Many research reports begin as research proposals, which usually include the need for a report to capture the findings of the study and recommend a course of action.

A description of the research method used, e.g., qualitative, quantitative, or other

Statistical analysis

Causal (or explanatory) research (i.e., research identifying relationships between two variables)

Inductive research, also known as ‘theory-building’

Deductive research, such as that used to test theories

Action research, where the research is actively used to drive change

  • Importance of a research report

Research reports can unify and direct a company's focus toward the most appropriate strategic action. Of course, spending resources on a report takes up some of the company's human and financial resources. Choosing when a report is called for is a matter of judgment and experience.

Some development models used heavily in the engineering world, such as Waterfall development, are notorious for over-relying on research reports. With Waterfall development, there is a linear progression through each step of a project, and each stage is precisely documented and reported on before moving to the next.

The pace of the business world is faster than the speed at which your authors can produce and disseminate reports. So how do companies strike the right balance between creating and acting on research reports?

The answer lies, again, in the report's defined objectives. By paring down your most pressing interests and those of your stakeholders, your research and reporting skills will be the lenses that keep your company's priorities in constant focus.

Honing your company's primary objectives can save significant amounts of time and align research and reporting efforts with ever-greater precision.

Some examples of well-designed research objectives are:

Proving whether or not a product or service meets customer expectations

Demonstrating the value of a service, product, or business process to your stakeholders and investors

Improving business decision-making when faced with a lack of time or other constraints

Clarifying the relationship between a critical cause and effect for problematic business processes

Prioritizing the development of a backlog of products or product features

Comparing business or production strategies

Evaluating past decisions and predicting future outcomes

  • Features of a research report

Research reports generally require a research design phase, where the report author(s) determine the most important elements the report must contain.

Just as there are various kinds of research, there are many types of reports.

Here are the standard elements of almost any research-reporting format:

Report summary. A broad but comprehensive overview of what readers will learn in the full report. Summaries are usually no more than one or two paragraphs and address all key elements of the report. Think of the key takeaways your primary stakeholders will want to know if they don’t have time to read the full document.

Introduction. Include a brief background of the topic, the type of research, and the research sample. Consider the primary goal of the report, who is most affected, and how far along the company is in meeting its objectives.

Methods. A description of how the researcher carried out data collection, analysis, and final interpretations of the data. Include the reasons for choosing a particular method. The methods section should strike a balance between clearly presenting the approach taken to gather data and discussing how it is designed to achieve the report's objectives.

Data analysis. This section contains interpretations that lead readers through the results relevant to the report's thesis. If there were unexpected results, include here a discussion on why that might be. Charts, calculations, statistics, and other supporting information also belong here (or, if lengthy, as an appendix). This should be the most detailed section of the research report, with references for further study. Present the information in a logical order, whether chronologically or in order of importance to the report's objectives.

Conclusion. This should be written with sound reasoning, often containing useful recommendations. The conclusion must be backed by a continuous thread of logic throughout the report.

  • How to write a research paper

With a clear outline and robust pool of research, a research paper can start to write itself, but what's a good way to start a research report?

Research report examples are often the quickest way to gain inspiration for your report. Look for the types of research reports most relevant to your industry and consider which makes the most sense for your data and goals.

The research report outline will help you organize the elements of your report. One of the most time-tested report outlines is the IMRaD structure:

Introduction

...and Discussion

Pay close attention to the most well-established research reporting format in your industry, and consider your tone and language from your audience's perspective. Learn the key terms inside and out; incorrect jargon could easily harm the perceived authority of your research paper.

Along with a foundation in high-quality research and razor-sharp analysis, the most effective research reports will also demonstrate well-developed:

Internal logic

Narrative flow

Conclusions and recommendations

Readability, striking a balance between simple phrasing and technical insight

How to gather research data for your report

The validity of research data is critical. Because the research phase usually occurs well before the writing phase, you normally have plenty of time to vet your data.

However, research reports could involve ongoing research, where report authors (sometimes the researchers themselves) write portions of the report alongside ongoing research.

One such research-report example would be an R&D department that knows its primary stakeholders are eager to learn about a lengthy work in progress and any potentially important outcomes.

However you choose to manage the research and reporting, your data must meet robust quality standards before you can rely on it. Vet any research with the following questions in mind:

Does it use statistically valid analysis methods?

Do the researchers clearly explain their research, analysis, and sampling methods?

Did the researchers provide any caveats or advice on how to interpret their data?

Have you gathered the data yourself or were you in close contact with those who did?

Is the source biased?

Usually, flawed research methods become more apparent the further you get through a research report.

It's perfectly natural for good research to raise new questions, but the reader should have no uncertainty about what the data represents. There should be no doubt about matters such as:

Whether the sampling or analysis methods were based on sound and consistent logic

What the research samples are and where they came from

The accuracy of any statistical functions or equations

Validation of testing and measuring processes

When does a report require design validation?

A robust design validation process is often a gold standard in highly technical research reports. Design validation ensures the objects of a study are measured accurately, which lends more weight to your report and makes it valuable to more specialized industries.

Product development and engineering projects are the most common research-report examples that typically involve a design validation process. Depending on the scope and complexity of your research, you might face additional steps to validate your data and research procedures.

If you’re including design validation in the report (or report proposal), explain and justify your data-collection processes. Good design validation builds greater trust in a research report and lends more weight to its conclusions.

Choosing the right analysis method

Just as the quality of your report depends on properly validated research, a useful conclusion requires the most contextually relevant analysis method. This means comparing different statistical methods and choosing the one that makes the most sense for your research.

Most broadly, research analysis comes down to quantitative or qualitative methods (respectively: measurable by a number vs subjectively qualified values). There are also mixed research methods, which bridge the need for merging hard data with qualified assessments and still reach a cohesive set of conclusions.

Some of the most common analysis methods in research reports include:

Significance testing (aka hypothesis analysis), which compares test and control groups to determine how likely the data was the result of random chance.

Regression analysis , to establish relationships between variables, control for extraneous variables , and support correlation analysis.

Correlation analysis (aka bivariate testing), a method to identify and determine the strength of linear relationships between variables. It’s effective for detecting patterns from complex data, but care must be exercised to not confuse correlation with causation.

With any analysis method, it's important to justify which method you chose in the report. You should also provide estimates of the statistical accuracy (e.g., the p-value or confidence level of quantifiable data) of any data analysis.

This requires a commitment to the report's primary aim. For instance, this may be achieving a certain level of customer satisfaction by analyzing the cause and effect of changes to how service is delivered. Even better, use statistical analysis to calculate which change is most positively correlated with improved levels of customer satisfaction.

  • Tips for writing research reports

There's endless good advice for writing effective research reports, and it almost all depends on the subjective aims of the people behind the report. Due to the wide variety of research reports, the best tips will be unique to each author's purpose.

Consider the following research report tips in any order, and take note of the ones most relevant to you:

No matter how in depth or detailed your report might be, provide a well-considered, succinct summary. At the very least, give your readers a quick and effective way to get up to speed.

Pare down your target audience (e.g., other researchers, employees, laypersons, etc.), and adjust your voice for their background knowledge and interest levels

For all but the most open-ended research, clarify your objectives, both for yourself and within the report.

Leverage your team members’ talents to fill in any knowledge gaps you might have. Your team is only as good as the sum of its parts.

Justify why your research proposal’s topic will endure long enough to derive value from the finished report.

Consolidate all research and analysis functions onto a single user-friendly platform. There's no reason to settle for less than developer-grade tools suitable for non-developers.

What's the format of a research report?

The research-reporting format is how the report is structured—a framework the authors use to organize their data, conclusions, arguments, and recommendations. The format heavily determines how the report's outline develops, because the format dictates the overall structure and order of information (based on the report's goals and research objectives).

What's the purpose of a research-report outline?

A good report outline gives form and substance to the report's objectives, presenting the results in a readable, engaging way. For any research-report format, the outline should create momentum along a chain of logic that builds up to a conclusion or interpretation.

What's the difference between a research essay and a research report?

There are several key differences between research reports and essays:

Research report:

Ordered into separate sections

More commercial in nature

Often includes infographics

Heavily descriptive

More self-referential

Usually provides recommendations

Research essay

Does not rely on research report formatting

More academically minded

Normally text-only

Less detailed

Omits discussion of methods

Usually non-prescriptive 

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Generative AI in education: user research and technical report

Reports on the insights from teachers, leaders and pupils on the potential uses of generative artificial intelligence in education.

Applies to England

Use cases for generative ai in education: user research report.

Ref: ISBN 978-1-83870-564-0, RR1423

PDF , 1.66 MB , 121 pages

Use cases for generative AI in education: technical report

Ref: ISBN 978-1-83870-565-7, RR1442

PDF , 2.33 MB , 124 pages

The reporting from this project contains 2 documents: 

  • a narrative report on the process, user research, and findings of the generative AI hackathons project
  • a detailed technical report describing the process of optimising a generative AI ‘proof of concept’ tool based on the findings of the hackathon

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EDUCAUSE Review - The Voice of the Higher Education Technology Community

Cautious Optimism on OSTP Research Cybersecurity Requirements

The Office of Science and Technology Policy has released its final requirements for research security programs, which federal research funding agencies will have to apply to colleges and universities that average $50 million or more per year in federal research grants. The requirements include potentially positive guidelines for research cybersecurity at covered institutions.

Person with a superimposed cybersecurity lock in front of them.

In early 2023, the White House Office of Science and Technology Policy (OSTP) released its initial proposal for a "research security program standard requirement." All federal research funding agencies would have to apply the requirement to colleges and universities that receive more than $50 million per year in federal research funding. Footnote 1 The development of these comprehensive research security mandates stems from National Security Presidential Memorandum – 33 (NSPM-33), "Supported Research and Development National Security Policy." When finalized, the "standard requirement" would establish the basic parameters for the research security programs that covered institutions must have in place to continue competing for federal research grants.

Most of the proposed framework addresses research security issues such as faculty conflicts of interest and commitment and research talent recruitment programs of foreign governments. However, it also includes a research cybersecurity section that essentially would make the cybersecurity guidelines for Federal contract information (FCI) the standards for higher education research cybersecurity. As the Policy team discussed in our review of this issue last summer, EDUCAUSE member feedback indicated that the FCI basic safeguards do not fit well with higher education research environments because they are primarily intended for administrative contexts and data. Footnote 2 EDUCAUSE urged OSTP to revamp its proposed research security program guidance and focus on allowing institutions to pursue a risk management approach to research cybersecurity. Rather than the one-size-fits-all checklist model that the FCI guidelines would impose, a risk management approach would enable institutions to prioritize cybersecurity measures and resources based on national security risks associated with research areas and projects.

EDUCAUSE was not alone in asking OSTP to alter its course and base its research security program guidance on risk management. The Association of American Universities (AAU), the Association of Public and Land-grant Universities (APLU), and the Council on Governmental Relations (COGR) also stressed the need for a risk management emphasis in other areas of higher education research security. Fortunately, OSTP heard the combined input of our respective associations. Rather than rushing forward with research security program requirements that largely reflected those in its original proposal, OSTP took roughly one year to rethink its guidance before releasing the final version on July 9, 2024. The final research security program guidelines do not base research cybersecurity program requirements on the FCI safeguards. Instead, OSTP points to a pending report on higher education research cybersecurity from the National Institute of Standards and Technology (NIST).

As the first element of the standardized requirement, federal research agencies shall require institutions of higher education to certify that the institution will implement a cybersecurity program consistent with the cybersecurity resource for research institutions described in the CHIPS and Science Act, [18] within one year after the National Institute of Standards and Technology (NIST) of the Department of Commerce publishes that resource. Footnote 3

Footnote 18 in the memorandum (in brackets above) identifies the relevant NIST report as NIST Interagency Report (IR) 8481: Cybersecurity for Research: Findings and Possible Paths Forward , which is currently available in "Initial Public Draft" (IPD) form. The CHIPS and Science Act provision from which the report stems required NIST to explore the resources it could develop to better support research cybersecurity at higher education institutions. Footnote 4 NIST conducted substantial outreach to EDUCAUSE and its members in pursuing the project, leading to a draft that largely incorporates the recommendations of our research cybersecurity community. It is a welcome development to see OSTP cite the report as the governing reference for research cybersecurity under its research security program guidelines.

Although OSTP's reliance on a report that reflects substantial EDUCAUSE member input provides a basis for cautious optimism regarding how federal research agencies will implement research cybersecurity requirements, there is still room for agency compliance efforts to jump the rails. The OSTP memorandum does not explain or provide parameters for what constitutes "a cybersecurity program consistent with" the NIST report (emphasis added). Footnote 5 Given the overall tenor of the guidelines, which stress the importance of federal research agencies providing substantial flexibility and discretion to higher education institutions in establishing and maintaining research security programs, research agencies might reasonably develop policies and procedures that allow institutions to draw from the range of resources identified in the NIST report—as well as models and frameworks similar to them—in determining the basis of their programs. However, the lack of guidance on what "consistent with" means may leave space for agencies to mandate that their grantees implement specific frameworks or measures presented in the NIST report. Such a development could produce substantial risks for institutions and agencies alike, given that not all resources identified in the draft NIST report will necessarily lead to optimal—or even appropriate—outcomes in all higher education research contexts.

Our concern about the potential for agencies to mandate inappropriate requirements is exacerbated by the fact that the NIST report was not written for the purposes for which OSTP is applying it. As previously mentioned, the CHIPS and Science Act charged NIST with identifying ways the agency could better support higher education research cybersecurity. Given that task, the current draft of the report—not surprisingly—focuses on highlighting a variety of options that institutions might explore to advance their research cybersecurity posture. This focus does not exactly match how OSTP wants to use the report in its research security program guidelines. The advisory nature of the NIST report may lend itself to the institutional flexibility and discretion that the OSTP memo implies should be the basis of federal agency approaches to research (cyber)security. However, the report does not provide clear direction about what cybersecurity should look like for research security programs that comply with NSPM-33. Without a definitive framework, both research agencies and higher education institutions may struggle to determine what constitutes compliance.

Fortunately, EDUCAUSE members should not have to wait long to get a sense of whether federal agencies that fund research will either try to be highly prescriptive or allow covered institutions to choose what elements of the NIST report—or options similar to them—will form the basis of their research cybersecurity programs. The memo from OSTP states that agencies will have six months from the date the memo was published to provide OSTP and the Office of Management and Budget (OMB) with their proposed implementation plans for the research security program guidelines. Once those agency plans are submitted, colleges and universities should be able to better understand what agencies' compliance regimes might look like. Agencies will then have another six months to implement their policies and processes, with institutions getting up to eighteen months from that point to ensure that they have compliant research security programs. Footnote 6 Based on these time frames, we should see research agency implementation plans by early January 2025, with the final execution of those plans due by mid-2025. Institutions would then have to achieve compliance with the relevant agency policies and processes by around December 2026.

Remember, though, that OSTP provides a unique timeline for its research cybersecurity requirements. As stated above, institutions will have one year from the publication of the NIST final report to ensure that they have research cybersecurity programs that are "consistent with" the report. With that in mind, NIST could try to align the release of its final report with the timeline for institutional compliance with OSTP's research security program guidelines. In this case, the overall measures mandated by the OSTP guidelines would have to be in place by the end of 2026. However, nothing in the OSTP memo precludes NIST from starting the research cybersecurity clock much sooner by releasing its final report at some point later this year or in early 2025. At this juncture, we will have to wait for NIST to provide more information about its plans, which will most likely include making some adjustments between the draft and final versions to account for how research agencies and higher education institutions will have to make use of the final report for compliance purposes.

EDUCAUSE will continue to monitor developments in this space and look for opportunities to inform OSTP, NIST, and agency implementation efforts. In the interim, EDUCAUSE members should review the draft NIST report for reference points that align with their current institutional research cybersecurity program and for resources they might find useful in strengthening their research cybersecurity posture given NSPM-33 and the OSTP research security guidelines that derive from it.

  • Arati Prabhakar, Memorandum for the Heads of Federal Research Agencies, "Guidelines for Research Security Programs at Covered Institutions," (Office of Science and Technology Policy, Executive Office of the President, July 9, 2024), 3. Jump back to footnote 1 in the text. ↩
  • EDUCAUSE letter to Stacy Murphy, Deputy Chief Operations Officer/Security Officer, Office of Science and Technology Policy,  "Regarding Comment on Research Security Programs,"  June 5, 2023. Jump back to footnote 2 in the text. ↩
  • Prabhakar, "Guidelines for Research Security Programs," 4. Jump back to footnote 3 in the text. ↩
  • Jarret Cummings, "NIST Explores Developing Research Cybersecurity Resources for Higher Ed,"   EDUCAUSE Review , August 1, 2023. Jump back to footnote 4 in the text. ↩
  • Prabhakar, "Guidelines for Research Security Programs," 4–5. Jump back to footnote 5 in the text. ↩
  • Ibid., 9. Jump back to footnote 6 in the text. ↩

Jarret Cummings is Senior Advisor, Policy and Government Relations, at EDUCAUSE.

© 2024 EDUCAUSE. The content of this work is licensed under a Creative Commons BY-NC-ND 4.0 International License.

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SC TEACHER publishes their first report capturing data on principals and assistant principals across South Carolina in the 2022–23 Administrator Workforce Profile

The latest publication from SC TEACHER explores the demographics of administrators in the state, alongside trend data and national comparisons. The report follows a similar format to other workforce reports published by the research consortium, including the Teacher Workforce Profile in South Carolina for 2021–22 .

Access the report: https://sc-teacher.org/south-carolina-administrator-workforce-profile-for-2022-23/

What it is:

  • SC TEACHER’s administrator workforce profile examines characteristics of principals and assistant principals, including educational attainment, race/ethnicity, gender, evaluations, and tenure.
  • The report also examines data from other states, the country, and across time to capture significant patterns and comparisons.
  • Graphs, charts, and data visualizations are included in the overview and report.

Why it matters: This report includes an analysis of preliminary data needed to better understand principals’ and assistant principals’ influence in the school ecosystem. Further collection of data on principal turnover, job satisfaction, and working conditions could significantly inform retention strategies and provide insights to positively impact educational outcomes for students and the educators serving them.

Housed in the USC College of Education, SC TEACHER is a research consortium focused on connecting data from South Carolina’s educator pipeline with statewide policies. The consortium is in its third year of legislative funding and releases new research each month.

Challenge the conventional. Create the exceptional. No Limits.

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  • UNL research center looks to future with $5.8 million NIH renewal

The Nebraska Center for the Prevention of Obesity Diseases through Dietary Molecules, led by Janos Zempleni (pictured), has received a five-year, $5.8 million renewal from the National Institutes of Health’s Centers of Biomedical Research Excellence Program. The funding will support the center’s efforts to solidify its research base and prepare to thrive in the long term. (Craig Chandler, University Communication and Marketing)

11 Sep 2024     By Tiffany Lee, Research and Innovation

A University of Nebraska–Lincoln research center with a unique strategy for fighting obesity and related diseases has received a third and final round of funding from the National Institutes of Health.   

The  Nebraska Center for the Prevention of Obesity Diseases through Dietary Molecules , or NPOD, received a five-year, $5,808,886 renewal from the NIH’s Centers of Biomedical Research Excellence Program, known as COBRE. The funding will support the center’s efforts to solidify its research base and prepare to thrive in the long term. 

“Phase 3 is all about sustainability,” said  Janos Zempleni,  NPOD director and Willa Cather Professor of molecular nutrition. “We are putting the pieces into place that will enable the center to continue its work after the 15 years of NIH funding ends.”     

Since its 2014 founding, NPOD has established itself as an internationally distinctive research hub. Among the many obesity-related research centers, NPOD sets itself apart with a focus on using bioactive compounds in foods to prevent, treat and cure obesity and related diseases like Type 2 diabetes, cardiovascular disease and non-alcoholic fatty liver disease. Bioactive compounds are types of chemicals found in small amounts in plants and certain foods like fruits, vegetables and nuts. Center researchers aim to use these naturally occurring compounds — such as choline, fiber and omega-3 fatty acids — to promote improved health. 

The approach is both consumer friendly and economically feasible, enabling people to adjust their diets with little impact on taste. The strategy could be pivotal in fighting obesity, which affects roughly 40% of both Americans and Nebraskans. 

It's been a successful niche: Over the past decade, the center has secured $200 million in external funding, which amounts to a nearly 36:1 return on investment for each dollar invested by the university. The number of center-affiliated researchers has increased from 12 faculty in 12 departments at UNL and the University of Nebraska Medical Center to 59 faculty in 26 departments at UNL, UNMC and the University of Nebraska at Omaha. Their work has resulted in more than 1,000 publications covering diverse topics, including:

  • Obesity intervention studies in underserved populations in western Nebraska and in Native American communities.
  • Extracellular vesicles’ role in human metabolism. 
  • The role of the microbiome in regulating metabolism.
  • Lipid metabolism.
  • Liver disease.

As NPOD’s focus shifts to sustainability, Zempleni will hire two additional faculty members to expand the center’s research portfolio. He will also prepare select NPOD researchers for eventual leadership of the center, ensuring a smooth line of succession in the future. The center’s pilot grant program will focus on positioning faculty to secure large-scale federal funding, which could help fund NPOD operations.

Another goal is to grow the momentum of the  Biomedical and Obesity Research Core , which provides state-of-the-art equipment and services for obesity and bioactive compound research. The core, which NPOD launched in 2014, is already nearly self-sustaining. Zempleni will extend that trajectory by further aligning the core’s services with user needs and attracting more users, both internal and external.

To position NPOD for future external funding — possibly through NIH’s Nutrition Obesity Research Centers program — center researchers are working to strengthen ties with colleagues in the region.   

Zempleni said NPOD’s long-term presence in Nebraska would benefit the state in multiple ways. For one, the center’s focus on bioactive food compounds dovetails with another of Nebraska’s research strengths, presenting opportunities for collaboration. 

“With Nebraska being an ag state, it’s the perfect home for this focus,” he said. 

Beyond the research, the center fuels the state’s economy. As the number of NPOD researchers has increased, so too has the number of technicians, postdoctoral researchers and students who reside in Nebraska. Giving students a first-hand view of the center’s cutting-edge research also may combat brain drain from the state.   

“It’s a training ground for young students, even high schoolers, who might decide to stay in Nebraska because there is a lot of great science going on at UNL and also at UNMC, our partner institution,” Zempleni said.

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