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26, 2002 , 8:00 AM Nearly every applicant for a tenure-track faculty job is expected to include a research plan.
Just as rare are programs designed to help doctoral students and postdocs learn how to create a research plan.Which is too bad: Writing an effective research plan is tricky Writing a Research Plan Science AAAS.Which is too bad: Writing an effective research plan is tricky.
And until now, there was little advice to be found.Okay, so that isn't exactly true: It isn't hard to find advice.
Opinions, after all, are not in short supply in the academy.What is hard is finding advice you can rely on.Why? Because we talked to a lot of people.
We interviewed and corresponded with faculty and research scientists who have served on hiring committees.
All of our sources have experience; some of our sources have a lot of experience.We considered everything, filtered out the muck, and distilled it all down to a general strategy and a few simple principles, with a few variations on the theme thrown in for good measure.Our aim is to do some of your homework for you, to make sure that you'll never have to read more than you have time for.Furthermore, we'll keep talking to people about this topic, and we'll incorporate new responses into this document as we receive them.As a consequence this piece, like the other tools in the tool kit, will remain fresh and useful when other resources have become dated and useless.
What's the purpose of a research plan? It depends on who's asking the question, and who’s answering it.From your immediate point of view, the purpose of a research plan is to help get you hired.The research plan, however, serves another, very important function: It contributes to your development as a scientist.Your research plan is a map for your career as a research science professional.
As will become apparent later in this document, one of the functions of a research plan is to demonstrate your intellectual vision and aspirations.It's also an opportunity to begin to demonstrate the creative and independent thinking required of a successful scientist.Not yet on the job market? Just starting out as a postdoc? A research plan isn't just for demonstrating; it's also for honing and refining.Writing a research plan casts your gaze forward and prompts you to begin planning for when you have your own laboratory.
And if you've already started to think about your own lab, it will help you to refine your plans.So take a stab at writing a research plan, even if you don't expect to be on the job market for a while.Think of it as a rough draft, a fantasy trip for your career.In that case what matters is, what is the committee looking for? The answer: relief from anxiety.Hiring committees desperately want to avoid making a serious mistake by investing institutional and intellectual capital in the wrong person.The aim of your research plan, then, as of the rest of your application, is to assure the hiring committee that life with you will be pain-free.How do you do this? Provide the committee a compelling, reassuring, believable image of what their life will be like when you are working down the hall.Tell them a story--a believable, credible story--about what your lab will be like 5 years from now: well-funded, vibrant, productive, pursuing a valuable, ambitious but realistic research agenda that meshes well with the department's mission and with the other research going on in the department.
Please don't misunderstand: You shouldn't tell them this ("in 5 years my lab will be vibrant, productive, and well-funded ."); rather, you need to lead them to believe it by describing a research agenda that persuades them that you will succeed.There are two parts to this: You have to tell a good story, and you have to make them believe it.If the story isn't compelling you won't get hired, and if they can't quite imagine it becoming reality, you won't get hired.How do I tell a good story? First, choose an important subject.
If the research you plan is not compelling, no rhetorical skill will make it compelling to a committee of smart scientists.If the research you propose is not manifestly, obviously important, if you don't know why it's important, or if you can't convey its importance effectively, convincing the committee to hire you won't be easy.Note that there are two issues here: believing in the importance of your own work, and persuading others that your work is important.If you don't think the work you'll be doing is important, your best bet is to change fields.The goal of science may be to uncover truth, but uncovering objective truth is a very difficult thing to do, and doing it requires passion.
If you aren't passionate about your work, your best bet is to find work about which you can be passionate.It isn't easy to change gears midcourse, but getting yourself into an important area of research will be well worth the effort in the long term--to your hirability, to your fundability, to your tenurability, and also to your career satisfaction.Passion for your work is a necessary, but insufficient, condition for capturing the attention of hiring committees.After all, some people are passionate about, um, peculiar things.
To convince the committee to hire you, you must convince them that your passion is justified and that they will benefit from investing in your passion--that is, that your work is important.
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Curing cancer is not a suitable goal for one individual's research plan--exciting, yes, but much too big to be believable.Inhibiting tumor growth? That's better, says one of our respondents--especially when that general goal is supported by more specific strategies." That kind of research can travel down several different mechanistic routes," this respondent says, "i Citations, references, quotations, and the title page are usually excluded from the SS, albeit this has to be custom programed and not all journals do this. MW recalls one paper where an author provided 21 single spaced pages rebutting 37 distinct points raised by three reviewers following review of the second version of .
" That kind of research can travel down several different mechanistic routes," this respondent says, "i.
, angiogenesis, breakdown of extracellular matrix, gene activation, induction of molecules involved--it can use different models--implanting tumors, using different tumor models, in vivo, in vitro, etc." The combination of a manifestly important goal with manifestly interesting, feasible approaches is the foundation of the research plan 7 days ago - Buy custom essay recreation studies high quality premium proofreading single spaced 121 pages / 33275 words; An open letter to mit applicants mit admissions; Best website to order a custom recreation studies essay chicago undergrad. (yrs 3-4) business 149 pages / 40975 words; Sample college ." The combination of a manifestly important goal with manifestly interesting, feasible approaches is the foundation of the research plan.Being specific is not the same thing as including loads of detail.
Being specific means including only as much detail as the job requires--not more.
"Vague generalities are the sign of a vague mind," says one source."This means that the proposal must walk the fine line of enough detail to show the reader that the candidate knows what they are talking about, but not too much detail that it confuses or bores the search committee." Keep it short and focus on the major themes."Brevity and clarity are the most important elements," wrote another respondent, expressing a sentiment shared by everyone."Superfluous details are not just unnecessary, they are often the hallmark of a poor plan.The specific aims must be clear and succinct." Identify your goals, state why those goals are important, define your approach to achieving those goals, and indicate the kinds of evidence that will validate your approach."If you were sitting for 4 hours reading such proposals, what would you look for? Clear and to the point wins every time in this arena." Effective communication requires anticipating readers' needs, giving them exactly the information they need just when they need it.Constructing a research plan along these lines strengthens your application in three ways: You avoid alienating the committee by boring them; you tell the committee precisely what you intend to do; and you show that you have a subtle mind and a deep knowledge of your field.Can't do this yet? No hurry--consider spending another year as a postdoc, and study hard.Writes one respondent: "If the proposal confuses the reader in almost any way, it is simply tossed out.I strongly recommend that the candidate have colleagues pre-review the proposal and make sure the English is clear and ideas explained so that a variety of people in the general area can understand what is being proposed and the importance of the work." If your writing skills are weak, it might be time to strengthen them.And by all means have several people--preferably senior colleagues who have served on hiring committees--critique your research plan.
But there were two parts to this, remember? You not only have to tell a good story--you also have to make it seem real, to make them expect it to come true.How do I make my research plan seem real? Have a solid, well-considered, realistic plan.If you want to get a job at an institution that takes its research seriously, you'll have to convince your future colleagues that you've gotten past the young, impressionable phase, where every idea glitters with promise despite the fact that it isn't feasible and isn't likely to work.Show the committee that, although your high ideals remain intact, your years of graduate and postdoctoral study have helped you to know the difference between good ideas and good intentions.In the words of one scholar, "You can tell a 'building castles in the sky' research plan.
They are not built on solid data and go to the very bottom of the pool.Preliminary data offer the most convincing argument for the viability of your research plan.If you have them, use them--positive results will be of interest and persuasive to hiring committee members.
The nature of your preliminary data and findings will vary--some will have much to share, others might be forced to share very preliminary data.Nothing grounds your hopes and dreams in the real world like good, solid data.Your plan might sound exciting, but will it work? It's one thing to make it sound good; if you can show that you've already taken the first, tentative but successful steps of that long journey, reaching your destination will seem a lot less like a pipe dream.One of my sources was unequivocal on this point: "Does the research question build on the preliminary data the person has generated? No preliminary data equals no research question." Which also equals no job offer at that institution.
It is important to remember that just as institutions vary widely in their practices, so too do the expectations of hiring committees.Do your homework: Learn about the culture of the department and the experiences of previous faculty hires.If you want to succeed as a scientist you have to be resourceful.And the focus must be on the science--on the problem you aim to solve--not on the scientist or a particular approach.No matter how knowledgeable you are, no matter how well considered your research plan, you can't predict the future.And if you haven't done the work yet, you don't know how it will turn out.That means that any one approach you specify might not work, even if it seems compelling.So if you want to convince the committee that you will succeed, give them not one, but two, or even three, compelling approaches, all of which have a good chance of success.
How do I demonstrate my independence? Different institutions expect you to be at different stages of your career.Think of it as a continuum: At one end sit well-established researchers with strong research records, many first-author (or last-author) publications, and their own research funding.
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At the other end sit rosy-cheeked, freshly minted Ph.s full of enthusiasm, promise, and ideas, but with little yet to show for it.
Most candidates for entry-level tenure-track faculty jobs at institutions that require research (that is, most of the people who write research plans for job applications) are somewhere in the middle .Most candidates for entry-level tenure-track faculty jobs at institutions that require research (that is, most of the people who write research plans for job applications) are somewhere in the middle.
You probably won't get hired anywhere if you aren't well prepared to start a productive research program at a scale appropriate for the institution.But these days some institutions and departments are looking for more than that 2 Mar 2007 - The scientific community has long considered single-investigator research grants, such as the RO1 offered by the National Institutes of Health (NIH), the Holy States, NIH has just announced a new award--dubbed the New Innovator Award --that is intended for newly independent biomedical scientists..But these days some institutions and departments are looking for more than that.Increasingly, especially in the biomedical field, universities are hiring established researchers, even at the "entry" (assistant professor) level.How is this possible? These days some pretenure-track scientists are setting up their own research programs.
Increasingly, senior postdocs are being promoted to research associate or research faculty positions during what the GrantDoctor calls the "postpostdoc" phase of their research career.In that position, they write research grants in their own names and their host institutions sponsor them.Very often these folks have an R01 before they begin applying for a tenure-track job.The key objective if you’re applying to one of these institutions is securing research grants: If you have a grant in your own name, you'll be a strong candidate; if you don't have your own grant, you are less competitive.It's a cynical cop out on the institution’s part, really, taking a pass on the difficult job of evaluating talent and capitulating to the reality of big-time biomedical research: It's all about the cash.
Still, increasingly it's a fact of life.But how do you know if the institution to which you hope to apply is one of these? Ask.Those scientists and institutions--the ones sitting at the experienced far end of the continuum--are exceptional.Indeed, second-tier research institutions tend to expect the most experience; Harvard and Johns Hopkins do not expect you to have your own research grant.Most hiring committees aren't looking for completely independent work; they're looking for original, creative ideas, together with a record of accomplishment.
Few people applying for tenure-track jobs have had the opportunity to start their own research programs.After all, traditionally that's what assistant professorships are all about, and most institutions still think that way.It helps to be somewhere in the middle of that continuum, but most committees are still looking more for promise than for guarantees.Demonstrate your promise by displaying your potential and actual independence.Show the committee that you have the deep thinking and talent to operate independent of your adviser.
How do you demonstrate your independence when you have never been given the chance to work independently? Likely as not, all your data were collected in someone else's lab, as a part of someone else's research agenda.How, then, do you distinguish your research from your adviser's research? On paper.It's an apparent Catch-22: You need to show that your ideas are fresh, new, and yours, and you have to show they're grounded in work you've already done, usually in someone else's lab.It's a tough sell, but most of your competitors are in the same boat.So how do you do it? One respondent said it beautifully: "The best plans usually build on the prior experience of the applicant but are not direct extensions of their postdoctoral work.
" I'm going to type that phrase again, it's so important: The best plans usually build on the prior experience of the applicant but are not direct extensions of their postdoctoral work.Unless you're one of the select few applicants with lots of experience leading your own lab, that's the key to your rhetorical strategy.That's the outline of the story you must tell: "I did this work as a grad student/postdoc and it was important and it was great.Now, as a faculty member, I want to do something a little bit different, but the work I'm proposing takes full advantage of the knowledge and skills I gained during the training phase of my career." It's different enough to be original, but similar enough that your years of training aren't wasted.
Another respondent wrote, "Most candidates (95%) stick to extensions of what they are most familiar with, but the key is, have they figured out some rather creative new directions for the research and have they done a good job convincing us that they can do it based on what is already known?" "Once we have a short list of candidates," writes yet another source, "the research proposals are looked at more carefully for imaginative ideas that differ from the candidates’ Ph." Get the message? With your adviser's cooperation.One key to doing this successfully is to make sure your boss tells the same story.
It is hoped that you have a good, open relationship with your adviser; if you do, go in and chat and coordinate your strategies.Decide what turf is his or hers, what turf is yours, and what story you intend to tell in your research plan and his or her letter of recommendation.But make sure they don't match too precisely.Is this sort of coordination unethical? Hardly.There's no deception here, no attempt to pull the wool over the committee's eyes.
On the contrary, it's clarity you're seeking: in your relationship with your adviser and with the hiring committee.Be careful, however: This is tricky ethical territory.The ideas you're claiming must be yours.Don't just take your adviser's ideas and package them as your own, even if your adviser signs off on the plan.If your relationship with your adviser isn't so chummy, you still want to do these same things; you just want to do it more carefully.
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If you still have time, set up your own lab in the corner of your adviser's.If you aren't applying for jobs right now, there's still time.Talk to your adviser about carving out your own research niche within the larger research effort, where you do work motivated by your own original ideas, something related but oblique to what your adviser is doing in the rest of the lab Help me write my biomedical sciences term paper original Business Undergraduate APA 10 days.Talk to your adviser about carving out your own research niche within the larger research effort, where you do work motivated by your own original ideas, something related but oblique to what your adviser is doing in the rest of the lab.
Is the research plan more important in the screening phase or late in the game? In general, research plans are weighed more heavily later in the game, with more readily comprehensible evidence (especially pedigree, letters of recommendation, impact factor of journals, etc.
) being weighed more heavily in the early rounds.
However, your research plan must be designed to serve more than one purpose.It must withstand intense scrutiny in the later rounds of the job search, and it must make a good first impression.One person I spoke to said that a research plan should be "about three pages of 1 elrubius.es/paper/write-my-custom-british-literature-paper-business-single-spaced-vancouver.One person I spoke to said that a research plan should be "about three pages of 1." Another source prefers "three semi-independent (but related) sub-proposals not more than about three to four pages (single-spaced) each with a half page of important and relevant references.There is some variation from one discipline to the next (the first of these recommendations came from a medical school, the second from a department of chemistry), but there are few if any standards even within a field.This shows how much of a crapshoot getting hired can be: Because you usually don't know in advance how long a document the hiring committee is looking for, there's little chance of the same candidate, no matter how qualified, getting offers from both of these institutions.My recommendation? Call the chair of the hiring committee (or send e-mail) and ask for advice.
If no advice is forthcoming, aim for five pages, 12-point Times New Roman, 1.Some will think it's a bit too long, others a bit too short, but no one will throw it out because of its length.Remember that we said that a research plan needs to help you through initial screening and withstand careful scrutiny in the later stages.How do you make a good first impression? Keep it short.
5-spaced pages, unless you've gotten different advice from the hiring committee chair.The idea is to present, up front, in half a page or so, the information that the committee is most likely to be looking for in the early, screening phase of the search: clearly stated research goals, the most compelling motivation, and the general approach you intend to take.Keep the number of fonts to a minimum, but make sure the various sections and ideas are set off by plenty of white space, well-chosen section headings, etc.
Bulleted lists are good; page-long paragraphs, bad.And for gosh’s sake, use your spell checker.A good figure, displayed prominently and captioned carefully, is worth, say, a couple hundred words."Clear figures and illustrations," writes a respondent, "that can give the reader (skimmer!) a quick (and clear) idea of the proposed research is a must.
" If committee members can get the gist of what you’re saying from a figure without wading through your impenetrable prose, your odds of getting interviewed shoot up.A research plan should tell how great the science is, not how great you are.Selling yourself is the job of your curriculum vitae and letters of recommendation."Focus on contributions to scientific knowledge, not research experience and expertise," writes one respondent.
Surprisingly, a lot of people mess this up.In her list of fatal errors, one respondent wrote: "Poorly covering or misstating the literature, grammatical or spelling errors, and, near the top of the list, writing research plans that ask for too much effort on the part of the reader--they should be clear and concise.You want the value of your research to speak for itself--avoid exaggerated claims of its importance.
"Over hyping," writes a source, "is very dangerous." How do I make my plan withstand careful scrutiny? Most of this has already been said: Avoid mistakes.Motivate your work (why Think it through and present a workable strategy.Demonstrate your awareness of other work being done in the field.One respondent said, "I have seen applications rejected because they appear to have been produced in a vacuum without reference to other scientists." Should I include a research hypothesis? There is some disagreement here among respondents.One respondent listed a hypothesis among the essential features of a research plan.
Others preferred a broad-brushed approach: "Is the research question a good question? Is it big enough, but with answerable individual questions so that the question generates a research path that could be followed for some time?" Including a hypothesis is unlikely to hurt you (assuming it's done effectively), and it'll keep you in the running at institutions where a hypothesis is required.
Other advice Present more than one good idea.Even the best idea might fail to pan out, so you need to have a backup.Furthermore, presenting more than one idea will help convince the committee that you aren't a one-trick pony.Your research plan should be coherent, with a theme common to all your work, but not so close that they seem to be shades of the same idea.Customize your research plan to the institution you're applying for.
It's pretty obvious, but you wouldn't send the same research plan to Johns Hopkins University and to Swarthmore College.And speaking of Swarthmore: Research plans sent to predominantly undergraduate institutions should be carefully designed to coexist with substantial teaching loads and to benefit from the participation of undergraduate students.
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2, 2007 , 10:00 AM Independence is a lofty goal.It’s what every parent wants for their child and every citizen wants for their nation.
It is also what most scientists aspire to after years of training and working for other people Intelligence conclusion essay artificial Croydon Uniting Church.It is also what most scientists aspire to after years of training and working for other people.
But the practical challenges of achieving independence in a scientific research setting are formidable.First, you have to secure a position, lab space, and sufficient funds to buy equipment and hire people, during a time of constricted budgets and increased competition https://xlphp.org/paper.php 2017-12-15 daily 0.9 https://xlphp.org/research-paper.php 2017-12-15 daily 0.9 2017-12-15 daily 0.9 https://xlphp.org/thesis/best-website-to-write-a-chemical-engineering-thesis-single-spaced-sophomore-us-letter-size-professional 2017-12-15 daily 0.9 .First, you have to secure a position, lab space, and sufficient funds to buy equipment and hire people, during a time of constricted budgets and increased competition.And once the first round of resources is in hand, you have to be skillfully employed in a coherent scientific effort even as you seek another round of resources.The effort requires a mix of scientific, technical, project management, and interpersonal skills need to order a human nutrition thesis Academic double spaced A4 (British/European).
The effort requires a mix of scientific, technical, project management, and interpersonal skills.
More intangibly, the path to independence requires flexibility, persistence, and self-confidence.Then again, not everyone aspires to scientific independence.Earning your wings One prerequisite to independence is an academic position that provides the space, freedom, and employment stability necessary to engage in independent research and to build a research team.Although academic positions generally come with start-up packages, setting up a lab from scratch is expensive and it's soon necessary to go hunting for more funding.The scientific community has long considered single-investigator research grants, such as the RO1 offered by the National Institutes of Health (NIH), the Holy Grail of science funding--but that goal often remains elusive, particularly for young investigators.The success rate for RO1 grants, for example, remains disappointingly low.Of 22,148 applications reviewed in 2006, only 3610 (or 16.Over the 25-year period between 1978 and 2002, the median age of doctoral biomedical researchers receiving their first independent research grants from the NIH rose from 37 to 42.Recognizing this as a threat to the development of the next generation of researchers, NIH decided to turn the problem on its head.Last year, it announced the K99/R00 Pathway to Independence (PI) award, a new mechanism designed to increase the share of federally-funded awards received by younger investigators and to create institutional incentives to help postdocs become independent investigators.After 2 years of funding at $90,000 per year, grantees can apply for an additional 3 years of funding for up to $250,000 per year.And since the grants cover full overhead costs, they provide a strong incentive for universities to create positions for these grantees.
and Ireland have made similar efforts to expand the number of transitional awards for early-career scientists.Back in the United States, NIH has just announced a "new" award--dubbed the "New Innovator Award"--that is intended for newly independent biomedical scientists.The number of "New Innovator" awards is likely to be tiny, however.
Michael Hochella More than science But money isn't everything.Becoming a successful scientist requires getting the work done.What differentiates those trainees who go on to become independent investigators from those who continue to work for others? Although there is little hard data, the common assumption is that only the best and the brightest go on to independence.But there is more to it than intellect and scientific skill.To become successful as independent investigators, young scientists must possess--or acquire--a battery of nonscientific skills.
Traditionally, individuals were left to pick these up on their own, but they may now take advantage of many excellent programs that focus on teaching them the skills of successful grant applications and scientific management.One of the most ambitious and comprehensive of these efforts is a program in lab management supported by the Howard Hughes Medical Institute (HHMI) and the Burroughs Wellcome Fund in the U.A successful PI must know how to bring a team together and nurture each individual, says Peter J.
Bruns, Vice President for Grants and Special Programs at the HHMI, who was on the faculty of Cornell University in Ithaca, New York, for more than 30 years.His advice to budding lab managers: "When you look at successful mentors, you’ll find that they recognize the human needs of their people.They listen to their problems, work-related or not.They help them succeed as people," Bruns says.
Many scientists believe that personality plays a crucial role in achieving independence as well.
"The scientific abilities of independent investigators versus the nonindependent ones are essentially the same," says Michael F., a professor of mineralogy and geochemistry at Virginia Polytechnic Institute and State University in Blacksburg, Virginia."In my experience, the difference may lie in both the level of ambition and basic personality," says Hochella, whose career mentoring doctoral and postdoctoral trainees has spanned more than 2 decades.Additional Resource: Do you have what it takes? The foundations of personality are part nature and part nurture.
With effort, people can make some changes around the edges but most core character traits endure.How we are hard-wired may make us more or less likely to become independent researchers.According to some of the experienced lab managers interviewed for this article, at the top of the list of traits required for independent research are persistence, self-confidence, and flexibility.Persistence Independent research isn’t the path for the scientist who is motivated by quick rewards, Hochella says.Research independence requires tenacity, drive, and the willingness to hang in for the long haul.
"Young scientists who wish to become independent need to be able to see the rewards down the line, set their minds on it, and go for it," says Hochella.
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"They remain calm, take things one step at a time, and know that if they pass all the individual hurdles, they will have a good chance of making it." Michael Thoennessen Michael Thoennessen, a professor and associate director of the National Superconducting Cyclotron Laboratory (NCSL) at Michigan State University in East Lansing believes that mentors can help young scientists by modeling the costs and rewards of persistence."He can convey to the mentee that he loves his job, although it involves intense work, long hours, and is sometimes loaded with administrative tasks," he says essay descriptive essay on a. I propose to consider the question, Can …. A cyborg (short for. cybernetic organism ) is a being with both organic and biomechatronic body parts. Enjoy proficient essay writing and custom writing services provided by professional academic writers intelligence conclusion essay artificial ."He can convey to the mentee that he loves his job, although it involves intense work, long hours, and is sometimes loaded with administrative tasks," he says.
Experience in the PI's basic tasks can also give aspiring scientists a leg up while they're still in training.
Lower, an assistant professor of earth and environmental sciences at Ohio State University in Columbus is a one of Hochella’s prot g s who has gone on to secure his own grants from the National Science Foundation (NSF) and the Department of Energy."As a graduate student, my adviser allowed me to play a big role in the writing of NSF grants.He also allowed me to review the panel reviews" of the grant proposals he helped write, says Lower.Aside from learning the nuts and bolts, those experiences helped him recognize the importance of persistence and humility, he says.
Confidence "Those who succeed are well-grounded people who have seen success and believe they can do it too.They are not the type of people who worry too much or are easily intimidated," says Hochella.Adam Rich, an assistant professor of biological sciences at the State University of New York, Brockport, believes that “confidence” doesn't quite describe the essential quality; more like fearlessness, he suggests."I was willing to develop new or novel protocols to get an experimental question answered.I was basically willing to try anything, and therefore, wasn’t afraid to push techniques beyond where they were supposed to work," says Rich.
Mentors can help trainees become more self-confident by engaging them in meaningful discussions and treating them as peers rather than "down-the-pecking-order" students and postdocs, says Thoennessen."Trainees gain confidence when they realize the people they respect in the field don’t have all the answers," he says.Flexibility "The ability to handle ambiguity and uncertainty with some equanimity, even to embrace it, is really critical," says Thoennessen.This requires a willingness to learn new roles, even or especially when it means moving beyond one’s comfort level or skill set, he says."I enjoy the process of science and can be happy working on a variety of different projects," says Rich.
He took his prior work and expertise in the area of gastrointestinal motility and applied it to a new animal model, the zebra fish, to show that he could do what he proposed to do and then added a new hook to get it funded."When considering projects, I always keep two things in mind: what work will be fun to do and what work is fundable," says Rich.Working smart One of the most universal keys to adapting to an independent position is learning to get more done in less time.Between teaching, research, grant writing, mentoring, and committee work, new faculty members have a lot more to do than they did when they were grad students and postdocs, so they can't afford to waste time--and that means working smart as well as hard."I recall Professor Hochella saying, 'You can make discoveries by spending a month in the lab or a day in the library,' " he says.
Lower first put that lesson into practice when he spent a good part of his first summer of grad school in the library."At the end of the summer, I had figured out what was missing from my area of research.I knew where I could carve a niche," he says.He's been applying the lesson ever since.Different strokes Not everyone is interested in pursuing independent research.
"There are many young scientists who don’t have a burning ambition or an inherent need to lead.They are content with following, knowing that they are just as capable," says Hochella." "Today, many students don’t want to be clones of their professors," says Bruns.He hopes that the graduate school community will recognize the need to prepare some equally talented graduate students for jobs other than doing "big research in big groups.
" Indeed, in a time of increasingly collaborative science, perhaps it's the concept of independence itself that needs revising.A seminal report from the National Research Council (NRC) published in 2005, called Bridges to Independence: Fostering the Independence of New Investigators in Biomedical Research, suggests that the traditional definition of an independent researcher--as an individual, usually in a tenure-track position, who has received his or her first RO1 research project grant (or equivalent) as a principal investigator--is too narrow.Rather, an independent researcher is "one who enjoys independence of thought--the freedom to define the problem of interest or to choose or develop the best strategies to address the problem." Encompassed in the broader term is the notion that researchers need not be in tenure or even self-sustaining to be independent.
They can achieve independence by making distinct contributions to the research enterprise even if they're not in charge of the lab.
The problem is that there aren't many alternatives to PI-ship for established academic scientists.Although some non-PI jobs may be found within universities--running core facilities, for example--these kinds of jobs are relatively few.Far more common is that older scientists stuck in postdocs with little job security, even a decade or more past their Ph.But these are not jobs that anyone aspires to.So early-career scientists who aren't eager to head up their own research enterprise should consider opportunities to teach or to find work outside academia--at government labs or in private industry--where they can do good work without having to build and support a laboratory and a team.The kind of teamwork described in that NRC report is far more common in industry than it is in academia.In one of the all-time most popular career advice books, What Color Is Your Parachute (first published in 1970 and updated many times since), author Richard Nelson Bolles says, "The key to a happy and fulfilling future is knowing yourself.This self-knowledge is the most important component of finding the right career.
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