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Published on September 24, 2022 by Jack Caulfield . Revised on September 5, 2024.
The introduction to a research paper is where you set up your topic and approach for the reader. It has several key goals:
The introduction looks slightly different depending on whether your paper presents the results of original empirical research or constructs an argument by engaging with a variety of sources.
The five steps in this article will help you put together an effective introduction for either type of research paper.
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Step 1: introduce your topic, step 2: describe the background, step 3: establish your research problem, step 4: specify your objective(s), step 5: map out your paper, research paper introduction examples, frequently asked questions about the research paper introduction.
The first job of the introduction is to tell the reader what your topic is and why it’s interesting or important. This is generally accomplished with a strong opening hook.
The hook is a striking opening sentence that clearly conveys the relevance of your topic. Think of an interesting fact or statistic, a strong statement, a question, or a brief anecdote that will get the reader wondering about your topic.
For example, the following could be an effective hook for an argumentative paper about the environmental impact of cattle farming:
A more empirical paper investigating the relationship of Instagram use with body image issues in adolescent girls might use the following hook:
Don’t feel that your hook necessarily has to be deeply impressive or creative. Clarity and relevance are still more important than catchiness. The key thing is to guide the reader into your topic and situate your ideas.
Professional editors proofread and edit your paper by focusing on:
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This part of the introduction differs depending on what approach your paper is taking.
In a more argumentative paper, you’ll explore some general background here. In a more empirical paper, this is the place to review previous research and establish how yours fits in.
After you’ve caught your reader’s attention, specify a bit more, providing context and narrowing down your topic.
Provide only the most relevant background information. The introduction isn’t the place to get too in-depth; if more background is essential to your paper, it can appear in the body .
For a paper describing original research, you’ll instead provide an overview of the most relevant research that has already been conducted. This is a sort of miniature literature review —a sketch of the current state of research into your topic, boiled down to a few sentences.
This should be informed by genuine engagement with the literature. Your search can be less extensive than in a full literature review, but a clear sense of the relevant research is crucial to inform your own work.
Begin by establishing the kinds of research that have been done, and end with limitations or gaps in the research that you intend to respond to.
The next step is to clarify how your own research fits in and what problem it addresses.
In an argumentative research paper, you can simply state the problem you intend to discuss, and what is original or important about your argument.
In an empirical research paper, try to lead into the problem on the basis of your discussion of the literature. Think in terms of these questions:
You can make the connection between your problem and the existing research using phrases like the following.
Although has been studied in detail, insufficient attention has been paid to . | You will address a previously overlooked aspect of your topic. |
The implications of study deserve to be explored further. | You will build on something suggested by a previous study, exploring it in greater depth. |
It is generally assumed that . However, this paper suggests that … | You will depart from the consensus on your topic, establishing a new position. |
Now you’ll get into the specifics of what you intend to find out or express in your research paper.
The way you frame your research objectives varies. An argumentative paper presents a thesis statement, while an empirical paper generally poses a research question (sometimes with a hypothesis as to the answer).
The thesis statement expresses the position that the rest of the paper will present evidence and arguments for. It can be presented in one or two sentences, and should state your position clearly and directly, without providing specific arguments for it at this point.
The research question is the question you want to answer in an empirical research paper.
Present your research question clearly and directly, with a minimum of discussion at this point. The rest of the paper will be taken up with discussing and investigating this question; here you just need to express it.
A research question can be framed either directly or indirectly.
If your research involved testing hypotheses , these should be stated along with your research question. They are usually presented in the past tense, since the hypothesis will already have been tested by the time you are writing up your paper.
For example, the following hypothesis might respond to the research question above:
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The final part of the introduction is often dedicated to a brief overview of the rest of the paper.
In a paper structured using the standard scientific “introduction, methods, results, discussion” format, this isn’t always necessary. But if your paper is structured in a less predictable way, it’s important to describe the shape of it for the reader.
If included, the overview should be concise, direct, and written in the present tense.
Scribbr’s paraphrasing tool can help you rephrase sentences to give a clear overview of your arguments.
Full examples of research paper introductions are shown in the tabs below: one for an argumentative paper, the other for an empirical paper.
Are cows responsible for climate change? A recent study (RIVM, 2019) shows that cattle farmers account for two thirds of agricultural nitrogen emissions in the Netherlands. These emissions result from nitrogen in manure, which can degrade into ammonia and enter the atmosphere. The study’s calculations show that agriculture is the main source of nitrogen pollution, accounting for 46% of the country’s total emissions. By comparison, road traffic and households are responsible for 6.1% each, the industrial sector for 1%. While efforts are being made to mitigate these emissions, policymakers are reluctant to reckon with the scale of the problem. The approach presented here is a radical one, but commensurate with the issue. This paper argues that the Dutch government must stimulate and subsidize livestock farmers, especially cattle farmers, to transition to sustainable vegetable farming. It first establishes the inadequacy of current mitigation measures, then discusses the various advantages of the results proposed, and finally addresses potential objections to the plan on economic grounds.
The rise of social media has been accompanied by a sharp increase in the prevalence of body image issues among women and girls. This correlation has received significant academic attention: Various empirical studies have been conducted into Facebook usage among adolescent girls (Tiggermann & Slater, 2013; Meier & Gray, 2014). These studies have consistently found that the visual and interactive aspects of the platform have the greatest influence on body image issues. Despite this, highly visual social media (HVSM) such as Instagram have yet to be robustly researched. This paper sets out to address this research gap. We investigated the effects of daily Instagram use on the prevalence of body image issues among adolescent girls. It was hypothesized that daily Instagram use would be associated with an increase in body image concerns and a decrease in self-esteem ratings.
The introduction of a research paper includes several key elements:
and your problem statement
Don’t feel that you have to write the introduction first. The introduction is often one of the last parts of the research paper you’ll write, along with the conclusion.
This is because it can be easier to introduce your paper once you’ve already written the body ; you may not have the clearest idea of your arguments until you’ve written them, and things can change during the writing process .
The way you present your research problem in your introduction varies depending on the nature of your research paper . A research paper that presents a sustained argument will usually encapsulate this argument in a thesis statement .
A research paper designed to present the results of empirical research tends to present a research question that it seeks to answer. It may also include a hypothesis —a prediction that will be confirmed or disproved by your research.
If you want to cite this source, you can copy and paste the citation or click the “Cite this Scribbr article” button to automatically add the citation to our free Citation Generator.
Caulfield, J. (2024, September 05). Writing a Research Paper Introduction | Step-by-Step Guide. Scribbr. Retrieved September 27, 2024, from https://www.scribbr.com/research-paper/research-paper-introduction/
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The primary objective of a research report is to communicate the results of a research study to a wider audience, including other researchers, policymakers, and practitioners. Research reports play a crucial role in advancing knowledge and understanding in various fields of study. They provide a detailed and accurate account of the research process and outcomes, and they serve as a reference source for future research.
The structure of a research report typically follows a standard format. The introduction sets the context and background for the research and outlines the research questions or objectives. The literature review provides an overview of existing research on the topic and identifies gaps in the literature that the research aims to address. The methodology section describes the research design and methods used to collect and analyze data. The results section presents the findings of the study, often using tables, charts, and graphs. The discussion section interprets and contextualizes the findings and compares them to previous research. Finally, the conclusion summarizes the key findings and implications of the research, highlighting any limitations and recommendations for future research.
A research report can take various forms, depending on the field of study and the research question. For example, it may be a quantitative or qualitative report, a literature review report, or a case study report. A research report should be clear, concise, and objective regardless of the form.
Research reports are essential for various reasons. First, they provide a detailed and accurate account of the research process and outcomes, which can inform policy and practice in various settings. Second, research reports contribute to the development of knowledge and understanding in a particular field or discipline. They provide a reference source for other researchers in the field, and they can inspire new research questions and directions. Finally, research reports are a crucial component of academic and professional careers. They demonstrate research skills, expertise, and contributions to the field.
Writing a research report can be a challenging task, but it is a crucial component of academic and professional research. An excellent research report should be clear, concise, and well-structured, with a focus on presenting accurate and objective findings. Here are some tips for writing an excellent research report:
A research report is a vital tool in disseminating research results to academic, professional, and public audiences. It provides a detailed analysis of the research problem, research questions, methodology, findings, and conclusions. Research reports are crucial in advancing knowledge and understanding in various fields of study, informing policy and practice, and contributing to academic and professional careers.
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In this article I will show you how to write a research paper using the four LEAP writing steps. The LEAP academic writing approach is a step-by-step method for turning research results into a published paper .
The LEAP writing approach has been the cornerstone of the 70 + research papers that I have authored and the 3700+ citations these paper have accumulated within 9 years since the completion of my PhD. I hope the LEAP approach will help you just as much as it has helped me to make an real, tangible impact with my research.
I designed the LEAP writing approach not only for merely writing the papers. My goal with the writing system was to show young scientists how to first think about research results and then how to efficiently write each section of the research paper.
In other words, you will see how to write a research paper by first analyzing the results and then building a logical, persuasive arguments. In this way, instead of being afraid of writing research paper, you will be able to rely on the paper writing process to help you with what is the most demanding task in getting published – thinking.
The four research paper writing steps according to the LEAP approach:
I will show each of these steps in detail. And you will be able to download the LEAP cheat sheet for using with every paper you write.
But before I tell you how to efficiently write a research paper, I want to show you what is the problem with the way scientists typically write a research paper and why the LEAP approach is more efficient.
Writing a research paper can be tough, especially for a young scientist. Your reasoning needs to be persuasive and thorough enough to convince readers of your arguments. The description has to be derived from research evidence, from prior art, and from your own judgment. This is a tough feat to accomplish.
The figure below shows the sequence of the different parts of a typical research paper. Depending on the scientific journal, some sections might be merged or nonexistent, but the general outline of a research paper will remain very similar.
Here is the problem: Most people make the mistake of writing in this same sequence.
While the structure of scientific articles is designed to help the reader follow the research, it does little to help the scientist write the paper. This is because the layout of research articles starts with the broad (introduction) and narrows down to the specifics (results). See in the figure below how the research paper is structured in terms of the breath of information that each section entails.
For a scientist, it is much easier to start writing a research paper with laying out the facts in the narrow sections (i.e. results), step back to describe them (i.e. write the discussion), and step back again to explain the broader picture in the introduction.
For example, it might feel intimidating to start writing a research paper by explaining your research’s global significance in the introduction, while it is easy to plot the figures in the results. When plotting the results, there is not much room for wiggle: the results are what they are.
Starting to write a research papers from the results is also more fun because you finally get to see and understand the complete picture of the research that you have worked on.
Most importantly, following the LEAP approach will help you first make sense of the results yourself and then clearly communicate them to the readers. That is because the sequence of writing allows you to slowly understand the meaning of the results and then develop arguments for presenting to your readers.
I have personally been able to write and submit a research article in three short days using this method.
You have worked long hours on a research project that has produced results and are no doubt curious to determine what they exactly mean. There is no better way to do this than by preparing figures, graphics and tables. This is what the first LEAP step is focused on – diving into the results.
Your first task is to try out different ways of visually demonstrating the research results. In many fields, the central items of a journal paper will be charts that are based on the data generated during research. In other fields, these might be conceptual diagrams, microscopy images, schematics and a number of other types of scientific graphics which should visually communicate the research study and its results to the readers. If you have reasonably small number of data points, data tables might be useful as well.
Now that you have your data charts, graphics and tables laid out in front of you – describe what you see in them. Seek to answer the question: What have I found? Your statements should progress in a logical sequence and be backed by the visual information. Since, at this point, you are simply explaining what everyone should be able to see for themselves, you can use a declarative tone: The figure X demonstrates that…
The core aspect of your research paper is not actually the results; it is the explanation of their meaning. In the second LEAP step, you will do some heavy lifting by guiding the readers through the results using logic backed by previous scientific research.
To define the central message of your research paper, imagine how you would explain your research to a colleague in 20 seconds . If you succeed in effectively communicating your paper’s message, a reader should be able to recount your findings in a similarly concise way even a year after reading it. This clarity will increase the chances that someone uses the knowledge you generated, which in turn raises the likelihood of citations to your research paper.
In the discussion section you have to demonstrate why your research paper is worthy of publishing. In other words, you must now answer the all-important So what? question . How well you do so will ultimately define the success of your research paper.
Here are three steps to get started with writing the discussion section:
Since some readers might just skim through your research paper and turn directly to the conclusions, it is a good idea to make conclusion a standalone piece. In the first few sentences of the conclusions, briefly summarize the methodology and try to avoid using abbreviations (if you do, explain what they mean).
After this introduction, summarize the findings from the discussion section. Either paragraph style or bullet-point style conclusions can be used. I prefer the bullet-point style because it clearly separates the different conclusions and provides an easy-to-digest overview for the casual browser. It also forces me to be more succinct.
The objective is a short, clear statement defining the paper’s research goals. It can be included either in the final paragraph of the introduction, or as a separate subsection after the introduction. Avoid writing long paragraphs with in-depth reasoning, references, and explanation of methodology since these belong in other sections. The paper’s objective can often be written in a single crisp sentence.
When writing the methodology section, aim for a depth of explanation that will allow readers to reproduce the study . This means that if you are using a novel method, you will have to describe it thoroughly. If, on the other hand, you applied a standardized method, or used an approach from another paper, it will be enough to briefly describe it with reference to the detailed original source.
Remember to also detail the research population, mention how you ensured representative sampling, and elaborate on what statistical methods you used to analyze the results.
Step 3 of the LEAP writing approach is designed to entice the casual browser into reading your research paper. This advertising can be done with an informative title, an intriguing abstract, as well as a thorough explanation of the underlying need for doing the research within the introduction.
The introduction section should leave no doubt in the mind of the reader that what you are doing is important and that this work could push scientific knowledge forward. To do this convincingly, you will need to have a good knowledge of what is state-of-the-art in your field. You also need be able to see the bigger picture in order to demonstrate the potential impacts of your research work.
Think of the introduction as a funnel, going from wide to narrow, as shown in the figure below:
The abstract acts as your paper’s elevator pitch and is therefore best written only after the main text is finished. In this one short paragraph you must convince someone to take on the time-consuming task of reading your whole research article. So, make the paper easy to read, intriguing, and self-explanatory; avoid jargon and abbreviations.
The title is the ultimate summary of a research paper. It must therefore entice someone looking for information to click on a link to it and continue reading the article. A title is also used for indexing purposes in scientific databases, so a representative and optimized title will play large role in determining if your research paper appears in search results at all.
Highlights are three to five short bullet-point style statements that convey the core findings of the research paper. Notice that the focus is on the findings, not on the process of getting there.
A graphical abstract placed next to the textual abstract visually summarizes the entire research paper in a single, easy-to-follow figure. I show how to create a graphical abstract in my book Research Data Visualization and Scientific Graphics.
Sometimes it seems that nuclear fusion will stop on the star closest to us (read: the sun will stop to shine) before a submitted manuscript is published in a scientific journal. The publication process routinely takes a long time, and after submitting the manuscript you have very little control over what happens. To increase the chances of a quick publication, you must do your homework before submitting the manuscript. In the fourth LEAP step, you make sure that your research paper is published in the most appropriate journal as quickly and painlessly as possible.
The best way to find a journal for your research paper is it to review which journals you used while preparing your manuscript. This source listing should provide some assurance that your own research paper, once published, will be among similar articles and, thus, among your field’s trusted sources.
After this initial selection of hand-full of scientific journals, consider the following six parameters for selecting the most appropriate journal for your research paper (read this article to review each step in detail):
No one can write a finished research paper on their first attempt. Before submitting, make sure to take a break from your work for a couple of days, or even weeks. Try not to think about the manuscript during this time. Once it has faded from your memory, it is time to return and edit. The pause will allow you to read the manuscript from a fresh perspective and make edits as necessary.
I have summarized the most useful research paper editing tools in this article.
Begin the cover letter by stating the paper’s title and the type of paper you are submitting (review paper, research paper, short communication). Next, concisely explain why your study was performed, what was done, and what the key findings are. State why the results are important and what impact they might have in the field. Make sure you mention how your approach and findings relate to the scope of the journal in order to show why the article would be of interest to the journal’s readers.
I wrote a separate article that explains what to include in a cover letter here. You can also download a cover letter template from the article.
Reviewers will often ask for new experiments, extended discussion, additional details on the experimental setup, and so forth. In principle, your primary winning tactic will be to agree with the reviewers and follow their suggestions whenever possible. After all, you must earn their blessing in order to get your paper published.
Be sure to answer each review query and stick to the point. In the response to the reviewers document write exactly where in the paper you have made any changes. In the paper itself, highlight the changes using a different color. This way the reviewers are less likely to re-read the entire article and suggest new edits.
In cases when you don’t agree with the reviewers, it makes sense to answer more thoroughly. Reviewers are scientifically minded people and so, with enough logical and supported argument, they will eventually be willing to see things your way.
Imagine that you are back in grad school and preparing to take an exam on the topic: “How to write a research paper”. As an exemplary student, you would, most naturally, create a cheat sheet summarizing the subject… Well, I did it for you.
This one-page summary of the LEAP research paper writing technique will remind you of the key research paper writing steps. Print it out and stick it to a wall in your office so that you can review it whenever you are writing a new research paper.
Now that we have gone through the four LEAP research paper writing steps, I hope you have a good idea of how to write a research paper. It can be an enjoyable process and once you get the hang of it, the four LEAP writing steps should even help you think about and interpret the research results. This process should enable you to write a well-structured, concise, and compelling research paper.
Have fund with writing your next research paper. I hope it will turn out great!
The LEAP writing approach is a blueprint for writing research papers. But to be efficient and write papers that get cited, you need more than that.
My name is Martins Zaumanis and in my interactive course Research Paper Writing Masterclass I will show you how to visualize your research results, frame a message that convinces your readers, and write each section of the paper. Step-by-step.
And of course – you will learn to respond the infamous Reviewer No.2.
Hey! My name is Martins Zaumanis and I am a materials scientist in Switzerland ( Google Scholar ). As the first person in my family with a PhD, I have first-hand experience of the challenges starting scientists face in academia. With this blog, I want to help young researchers succeed in academia. I call the blog “Peer Recognized”, because peer recognition is what lifts academic careers and pushes science forward.
Besides this blog, I have written the Peer Recognized book series and created the Peer Recognized Academy offering interactive online courses.
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Understanding research reports, financial analyst research reports, research report impact, conflicts of interest.
James Chen, CMT is an expert trader, investment adviser, and global market strategist.
A research report is a document prepared by an analyst or strategist who is a part of the investment research team in a stock brokerage or investment bank . A research report may focus on a specific stock or industry sector, a currency, commodity or fixed-income instrument, or on a geographic region or country. Research reports generally, but not always, have actionable recommendations such as investment ideas that investors can act upon.
Research reports are produced by a variety of sources, ranging from market research firms to in-house departments at large organizations. When applied to the investment industry, the term usually refers to sell-side research, or investment research produced by brokerage houses.
Such research is disseminated to the institutional and retail clients of the brokerage that produces it. Research produced by the buy-side, which includes pension funds, mutual funds, and portfolio managers , is usually for internal use only and is not distributed to external parties.
Financial analysts may produce research reports for the purpose of supporting a particular recommendation, such as whether to buy or sell a particular security or whether a client should consider a particular financial product. For example, an analyst may create a report in regards to a new offering being proposed by a company. The report could include relevant metrics regarding the company itself, such as the number of years they have been in operation as well as the names of key stakeholders , along with statistics regarding the current state of the market in which the company participates. Information regarding overall profitability and the intended use of the funds can also be included.
Enthusiasts of the Efficient Market Hypothesis (EMH) might insist that the value of professional analysts' research reports is suspect and that investors likely place too much confidence in the conclusions such analysts make. While a definitive conclusion about this topic is difficult to make because comparisons are not exact, some research papers do exist which claim empirical evidence supporting the value of such reports.
One such paper studied the market for India-based investments and analysts who cover them. The paper was published in the March 2014 edition of the International Research Journal of Business and Management. Its authors concluded that analyst recommendations do have an impact and are beneficial to investors at least in short-term decisions.
While some analysts are functionally unaffiliated, others may be directly or indirectly affiliated with the companies for which they produce reports. Unaffiliated analysts traditionally perform independent research to determine an appropriate recommendation and may have a limited concern regarding the outcome.
Affiliated analysts may feel best served by ensuring any research reports portray clients in a favorable light. Additionally, if an analyst is also an investor in the company on which the report is based, he may have a personal incentive to avoid topics that may result in a lowered valuation of the securities in which he has invested.
Researching the White Paper:
The process of researching and composing a white paper shares some similarities with the kind of research and writing one does for a high school or college research paper. What’s important for writers of white papers to grasp, however, is how much this genre differs from a research paper. First, the author of a white paper already recognizes that there is a problem to be solved, a decision to be made, and the job of the author is to provide readers with substantive information to help them make some kind of decision--which may include a decision to do more research because major gaps remain.
Thus, a white paper author would not “brainstorm” a topic. Instead, the white paper author would get busy figuring out how the problem is defined by those who are experiencing it as a problem. Typically that research begins in popular culture--social media, surveys, interviews, newspapers. Once the author has a handle on how the problem is being defined and experienced, its history and its impact, what people in the trenches believe might be the best or worst ways of addressing it, the author then will turn to academic scholarship as well as “grey” literature (more about that later). Unlike a school research paper, the author does not set out to argue for or against a particular position, and then devote the majority of effort to finding sources to support the selected position. Instead, the author sets out in good faith to do as much fact-finding as possible, and thus research is likely to present multiple, conflicting, and overlapping perspectives. When people research out of a genuine desire to understand and solve a problem, they listen to every source that may offer helpful information. They will thus have to do much more analysis, synthesis, and sorting of that information, which will often not fall neatly into a “pro” or “con” camp: Solution A may, for example, solve one part of the problem but exacerbate another part of the problem. Solution C may sound like what everyone wants, but what if it’s built on a set of data that have been criticized by another reliable source? And so it goes.
For example, if you are trying to write a white paper on the opioid crisis, you may focus on the value of providing free, sterilized needles--which do indeed reduce disease, and also provide an opportunity for the health care provider distributing them to offer addiction treatment to the user. However, the free needles are sometimes discarded on the ground, posing a danger to others; or they may be shared; or they may encourage more drug usage. All of those things can be true at once; a reader will want to know about all of these considerations in order to make an informed decision. That is the challenging job of the white paper author. The research you do for your white paper will require that you identify a specific problem, seek popular culture sources to help define the problem, its history, its significance and impact for people affected by it. You will then delve into academic and grey literature to learn about the way scholars and others with professional expertise answer these same questions. In this way, you will create creating a layered, complex portrait that provides readers with a substantive exploration useful for deliberating and decision-making. You will also likely need to find or create images, including tables, figures, illustrations or photographs, and you will document all of your sources.
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A research report is one big argument how and why you came up with your conclusions. To make it a convincing argument, a typical guiding structure has developed. In the different chapters, distinct issues need to be addressed to explain to the reader why your conclusions are valid. The governing principle for writing the report is full disclosure: to explain everything and ensure replicability by another researcher.
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Barros, L. O. (2016). The only academic phrasebook you’ll ever need. Createspace Independent Publishing Platform.
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© 2021 The Author(s), under exclusive license to Springer Fachmedien Wiesbaden GmbH, part of Springer Nature
Hunziker, S., Blankenagel, M. (2021). Writing up a Research Report. In: Research Design in Business and Management. Springer Gabler, Wiesbaden. https://doi.org/10.1007/978-3-658-34357-6_4
DOI : https://doi.org/10.1007/978-3-658-34357-6_4
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Research performance progress report (rppr).
The RPPR is used by recipients to submit progress reports to NIH on their grant awards. This page provides an overview of the annual RPPR, the final RPPR and the interim RPPR and provides resources to help you understand how to submit a progress report.
Progress reports document recipient accomplishments and compliance with terms of award. There are three types of RPPRs, all of which use the NIH RPPR Instruction Guide .
There is no RPPR form available for download. Submit RPPR data through the eRA Commons . The links for each type of RPPR are accessed through the Commons Status tab. The Interim RPPR link will also be accessed through the Commons Status tab. It will appear one day after the project segment end date, but before it has moved to closeout. The Final RPPR link will become available through the closeout module once the grant is eligible for closeout.
Only the project director/principal investigator (PD/PI) or their PD/PI delegate can initiate RPPRs. For multi-PD/PI grants only the Contact PI or the Contact PD/PI’s delegate can initiate the RPPR.
Signing Officials typically submit the annual RPPR, but may delegate preparation (Delegate Progress Report) to any PD/PI within the organization on behalf of the Contact PD/PI. Additionally, a Principal Investigator (PI) can delegate “Progress Report” to any eRA Commons user in their organization with the Assistant (ASST) role. This delegation provides the ASST with the ability to prepare Annual, Interim and Final RPPRs on behalf of the PI. However, only a Signing Official (SO) or PI (if delegated Submit by the SO) are allowed to submit the Annual, Interim, and Final RPPRs.
Follow the instructions in the RPPR User Guide to submit the RPPR, Interim RPPR or Final RPPR. The User Guide includes instructions for how to submit your RPPRs in the eRA Commons, how to complete the web-based forms, and what information is required. Instructions for completing the scientific portion of the report (see the elements below) may be found in Chapters 6 and 7.
The following resources may help with RPPR initiation and submission:
The RPPR requests various types of information, including:
Accomplishments
Participants and Other Collaborating Organizations
Changes/Problems (not required for Final or Interim RPPR)
Budgetary Information (not required for Final or Interim RPPR)
Illustration by Egan Jimenez, Office of Communications
A congressionally mandated study led by Princeton's Emily Carter has released a comprehensive roadmap for research and policies to enable large-scale recycling of carbon pollution into high-demand, useful products like fuels and construction materials.
The release follows a 2023 report by the same committee that found that a significant fraction of carbon emissions could be recycled, but cautioned that accomplishing the task faced substantial challenges. The new report adds to the potential uses and details ways to approach those challenges through both research and policy.
Fossil fuel use and industrial processes emit carbon dioxide gas, which traps heat in the atmosphere, changing weather patterns and disrupting ecosystems. The committee, established in 2021 and convened by the National Academies of Sciences, Engineering and Medicine, identified potential uses for carbon that could re-use up to about 10% of carbon dioxide emissions. These uses include durable products such as concrete or carbon fiber, or short-lived products such as jet fuels or pharmaceuticals.
Reusing carbon dioxide or permanently storing it are key strategies for reaching net-zero emissions (when carbon dioxide no longer accumulates in the atmosphere), said Carter , Princeton’s Gerhard R. Andlinger Professor in Energy and the Environment and senior strategic advisor and associate laboratory director at the Department of Energy’s Princeton Plasma Physics Laboratory.
Carter said the goal cannot be to eliminate the use of carbon, because the element plays a critical role in day-to-day life, from food to medicines. “We are never going to decarbonize civilization completely, because we need carbon,” said Carter, who also is a professor of mechanical and aerospace engineering . “The question is, how do we create a sustainable, circular carbon economy?”
Treating carbon as a waste product that can be reused could be an important part of the answer, she said.
The committee released its initial report in time to inform implementation of the Inflation Reduction Act and the Infrastructure Investment and Jobs Act, both of which included funding for sustainable energy solutions. A priority recommendation in the first report was to colocate new facilities for reusing carbon with the sources where carbon is stripped from various industrial processes. Colocation avoids the need to build out expensive pipelines with their attendant public safety concerns.
Carter noted that some projects funded through those acts so far have been fairly well colocated and that there is an opportunity for even better colocation for future projects.
The new report contains a detailed analysis of the potential markets for products made from waste carbon. In addition to construction materials and fuels emphasized in the first report, the new report identifies potential uses such as carbon fiber materials that could replace rebar in construction or replace titanium in high-tech applications.
The report also discusses economic assessments of these technologies, including capital and operational costs. For projects that move to the pilot phase, the committee laid out approaches to assess societal benefit: an environmental life-cycle analysis beginning with gathering raw materials through to the final operating impact; and a social life-cycle analysis, which projects the impacts on people and communities over the life of the project.
The report then dives into research needed in each of the key areas of carbon reuse as well as the possibility of recovering rare and valuable elements from coal waste.
“Coal waste is an environmental hazard, so if we can recycle it and use it, we are achieving dual benefits: cleaning up environmental sites and minimizing the need for future mining,” Carter said.
In addition to Carter, the committee included 17 other experts from universities, nonprofit organizations and industry. The committee staff was led by Elizabeth Zeitler, who is the associate director of the Board on Energy and Environmental Systems at the National Academies and who earned her Ph.D. in chemistry at Princeton in 2014. Carter, Zeitler and several committee members led a public briefing on the results in August.
“Congress and the Department of Energy came to us for advice on technologies and policy options for carbon products that could be part of a circular economy or could offer durable storage of carbon,” Zeitler said. “This report can help decision-makers, researchers and practitioners see the landscape and prospects for carbon utilization technologies.”
Overall, Carter said, reusing carbon not only results in useful products, but helps pay for the considerable expense of implementing carbon capture and sequestration technologies, which are part of most strategies for reducing emissions. “If you make money on a useful product, it’s a way of offsetting the cost of sequestration,” she said.
With the right public infrastructure investment, the United States could as much as double the amount of carbon dioxide emissions currently captured and stored worldwide within the next six years, according to an analysis by Princeton researchers.
Scientists and research based at Princeton University played a critical role in a new national report that investigates the technology, policy and societal dimensions of accelerating decarbonization in the United States.
The new “Net-Zero America” study maps out state-by-state, sector-by-sector, and decade-by-decade what it would take for the U.S. economy to be fully decarbonized, and provides a blueprint for action in the 2020s.
Climate scholars at the University see the new law's provisions as a game-changer in getting to net-zero emissions. The question: Can the U.S. now get there by 2050?
Increased electricity demand and economic growth are among the contributing factors to the rise in carbon emissions of 3.4 percent in the past year. Experts Judi Greenwald, Eric Larson and Michael Oppenheimer at Princeton's Andlinger Center for Energy and the Environment discussed the trend.
Biofuels derived from renewable sources can be produced in large quantities and address many problems related to fossil fuels, including greenhouse gas emissions, but only if they are made from certain sources, according to a new article by a team of scientists and policy experts that included several Princeton researchers.
Princeton University convened an international research team June 11-13 to begin a five-year effort, called Rapid Switch, to frame a realistic global response to climate change that accounts for massive economic development in countries, including India and China.
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Jim Covello, Goldman Sachs’s head of stock research, warned that building too much of what the world doesn’t need “typically ends badly.”
By Tripp Mickle
Tripp Mickle reported this article by visiting Goldman Sachs’s office in New York and attending its tech conference in San Francisco.
As Jim Covello’s car barreled up Highway 101 from San Jose to San Francisco this month, he counted the billboards about artificial intelligence. The nearly 40 signs he passed, including one that promoted something called Writer Enterprise AI and another for Speech AI, were fresh evidence, he thought, of an economic bubble.
“Not that long ago, they were all crypto,” Mr. Covello said of the billboards. “And now they’re all A.I.”
Mr. Covello, the head of stock research at Goldman Sachs, has become Wall Street’s leading A.I. skeptic. Three months ago, he jolted markets with a research paper that challenged whether businesses would see a sufficient return on what by some estimates could be $1 trillion in A.I. spending in the coming years. He said generative artificial intelligence, which can summarize text and write software code, made so many mistakes that it was questionable whether it would ever reliably solve complex problems.
The Goldman paper landed days after a partner at Sequoia Capital, a venture firm, raised similar questions in a blog post about A.I. Their skepticism marked a turning point for A.I.-related stocks, leading to a reassessment of Wall Street’s hottest trade.
Goldman’s basket of A.I. stocks, which is managed by a separate arm of the firm and includes Nvidia, Microsoft, Apple, Alphabet, Amazon, Meta and Oracle, has declined 7 percent from its peak on July 10, as investors and business leaders debate whether A.I. can justify its staggering costs.
The pause has come early in the A.I. arms race. The tech industry has a history of spending big to deliver technology transitions, as it did during the personal computer and internet revolutions. Those build-outs spanned five years or more before there was a reckoning.
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