Showing posts with label misconduct in scientific research. Show all posts
Showing posts with label misconduct in scientific research. Show all posts

Sunday, April 20, 2025

Albeit they possess the Might ...

Nonetheless, we have the will.

Last Tuesday evening (April 15), after arriving home, feeding the cats, and changing out of my work clothes, I opened Google News to discover Harvard's resistance to demands by  President Trump's administration. Columbia's capitulation was easy to retrieve and I quickly built the presentation which I posted that night. 

Driving in to work the next morning and commuting home that afternoon, I decided to send a donation to Harvard. Right now, the check is in an envelope with a cover letter and a printout of that blog post. I will drop it into a Postal Service branch along tomorrow's commute in and it will move to a USPS regional point after 11:30 AM. It took almost a week because my days begin at 4:30 AM and by 5:00 PM composing literature is difficult. Admittedly, the letter betrayed little erudition. Plain speaking is fundamental to technical communication, validating the importance of the narrative. After a few edits, the letter carried my message. 

Originally, the post launched with a bold blue Helvetica kicker: "TANSTAAFL: There ain't no such thing as a free lunch." After a couple of days of reading and reviewing, I edited that out because it was too much message without context and delivering those precepts and conclusions would have detracted from the impact of the post. Silence is golden. 

My point then (and now) is that university researchers always believed that government money came with no other requirements than honesty. After a submitted proposal is accepted, following the norms of research were all that was required. The political progressivism of academia was never challenged by the granting agencies which largely shared those assumptions--and when not, they still gave out the money, lest they deny a valid inquiry for an invalid motive. 

That began with Vannevar Bush.  "In Science, The Endless Frontier, his 1945 report to the president of the United States, Bush called for an expansion of government support for science, and he pressed for the creation of the National Science Foundation." -- (https://en.wikipedia.org/wiki/Vannevar_Bush) As an inventor, and then director of the Office of Scientific Research and Development during World War II, Bush articulated well the fact that the ultimate rewards of original research are often not predictable at the moment of creation. So, the government should fund "everything" (within reason; subject to peer review). 

But there is no such thing as a free lunch. Finally, the government came to collect its due and what it wanted was less, not more. There was now a political price to be paid. The social agenda of the party in power is now the norm and there is no peer review. Lysenkoism and Aryan Physics were someone else's problems and now they are ours. 

Edward Jenner's small pox vaccines (1796) were predicated on over 50 years of general scientific reporting from Constantinople and other Asian entrepĂ´ts. This was the Enlightenment, the Age of Reason. Experiment, publication, discussion, and debate brought material progress which included the steam engine. But there was no theory of thermodynamics--and no germ theory of disease. For over 100 years, the "animicules" revealed by Anton Leeuwenhoek's microscope were accepted as a consequence of disease, rather than the cause. Common knowledge credits Louis Pasteur, Joseph Lister, and others with the proofs, but ahead of them, in 1847, John Leonard Riddell of the New Orleans Medical College argued well. (NecessaryFacts here .) 

Does inoculation have unintended consequences? How could it not? Exploring those, understanding them, and building a theory that can be tested is a scientific project. 

"Cloudy Nights" is a discussion board for amateur astronomers. Chatting about the recent discovery of dimethyl sulfide in the atmosphere of an exoplanet, I pointed out that DNA can edit and repair itself. My current library here in my office includes Genetics for Dummies. I make no pretense. And that is just one reason why I am not the U.S. Secretary of Health & Human Services.

PREVIOUSLY ON NECESSARY FACTS

Sunday, June 9, 2024

Some Limitations of ChatGPT

University of Texas president Jay Hartzell declared this to be "The Year of AI." So, the assignment for my "Mental Spa Day" at work was to be introduced to ChatGPT. The first task was to compare Google with ChatGPT.  "Choose a topic to search in both Google and ChatGPT: How did the results differ? What were you looking for and which one gave you the information that you needed?" 

The two tools are different, of course, though Google does now claim to be supported by an AI Assistant. 

I asked if Gerard Kuiper ever met Beatrice Tinsely, if Otto Struve ever met Gerard Kuiper, and if Otto Struve ever met Beatrice Tinsley. ChatGPT delivered approximately the same reply in all three cases. In that, it completely missed the fact that Struve and Kuiper worked together at the University of Chicago before Kuiper took over the McDonald Observatory from Struve.

I then asked ChatGPT: Tell me about the pay warrants of the Texian Navy, a subject for which I did independent research. My work was presented as an article in The Numismatist and as a lecture at an ANA Convention (virtual via Zoom) 4 August 2020. That talk is available on YouTube here https://www.youtube.com/watch?v=EWGzivjlOUI

ChatGPT's answer was at once cursory and inventive. Contrary to its claims, the warrants did not specify the period of service or the vessel on which the sailor served. The warrants were issued solely on the authority of Commodore Edwin Ward Moore. They were repudiated by Pres. Sam Houston. ChatGPT's offering is echoic of a college student writing to fill space when they cannot answer the question.

ChatGPT replied:

[quote] The pay warrants of the Texian Navy were a form of financial compensation issued to sailors and officers serving in the navy of the Republic of Texas during the 19th century. The Texian Navy, also known as the Texas Navy, played a crucial role in the fight for Texan independence from Mexico and in protecting the fledgling republic's coastline.

As with any military or naval force, it was essential to ensure that sailors and officers were compensated for their service. The pay warrants served as a form of promissory note, guaranteeing payment for their work and dedication to the cause of Texan independence.

The pay warrants were typically issued by the government of the Republic of Texas, often by the Navy Department or other relevant authorities responsible for managing naval affairs. These warrants were written documents specifying the amount of money owed to the individual sailor or officer, as well as any relevant details such as the period of service and the vessel on which they served.

In many cases, pay warrants could be redeemed for cash or used to purchase goods and services, depending on the policies and resources available to the Republic of Texas at the time. However, it's worth noting that the financial situation of the Republic of Texas was often precarious, and there were instances where pay warrants could not be immediately honored due to budgetary constraints or other factors.

Despite these challenges, the Texian Navy played a crucial role in safeguarding Texan interests and maintaining maritime security during a tumultuous period in the region's history. The issuance of pay warrants was a tangible acknowledgment of the sacrifices made by sailors and officers who served in the navy, ensuring that they received the compensation they were owed for their service to the Republic of Texas. [close]

PREVIOUSLY ON NECESSARY FACTS

Misconduct in Science and Research

Why Evidence is Not Enough

Springer Closes Wall of Shame

Slow Down and Think

Monday, March 14, 2016

Convicted by a Hair: Laboratory Misconduct in the Courtroom

Science Magazine recently posted a self-quiz on forensics (see here). The results are important because so many of us know so little about what actually is, and is not, science. (I scored just over the median.) Most informative - and disturbing to me - were these two:

  • Twenty-six of 28 FBI hair analysts who were investigated provided testimony or submitted laboratory reports with “grossly exaggerated” data that often helped prosecutors.
  • Very small amounts of DNA can lead to false positives…. Analysts have picked up DNA transferred from one person to another by way of an object that both of them have touched, or from one piece of evidence to another when two items jostled against each other in an evidence bag.

On the upside, from that quiz, bite marks have been disallowed as evidence here in Texas. Unfortunately, tire tracks, shoe prints, lip prints, and repressed dreams were not part of that decision.

PREVIOUSLY ON NECESSARY FACTS
The Fallibility of Fingerprinting
Star of Wonder: Arguments over the Christmas Star
Austin Energy 2016 Regional Science Festival
Impossible Usually is Not

Saturday, March 8, 2014

Morality and Ethics

Ayn Rand called her theory of egoism "Objectivist ethics." In her essays, she wrote mostly about morality and very little about ethics. She took the English language as she found it. Despite the fact that she knew perhaps four languages (Russian, French, German, and English), Rand did not delve into linguistic analysis. In other languages, "ethics" and "morality" do not exist as separate words. In English, we commonly use the words interchangeably, just as we do for "weight" and "mass" or "speed" and "velocity." When we have technical discussions, the distinctions become important. 

On the "Galt's Gulch" discussion site of the Atlas Shrugged movie producers, the question was posed, "Is Morality Absolute?" (Read all 100+ posts here.)  My response was that morality is absolute, but moral choices are not, or they would not be choices. Rand was very clear on why a rational, volitional being needs morality. 
YOU MUST CHOOSE SOME WORK.
The work you choose depends on who you are.

Who you are also determines your work ethic.

Alone on his island, Robinson Crusoe could choose to fish, or plant, or hunt. But he had to choose. The fact of choice is a moral absolute. The content of the choice is not: it is contextual. In society, pursuing a specific career is a moral choice. Many options are available. The fact that you must choose something - even choosing to be a moocher - is a moral absolute. What you choose is not absolute, but contextual; and context determines what is objectively moral, regardless of the ethical implications. 

Ethics is social conduct. I look to the fact that ethology studies the behavior of animals without any presumption of "morality."   In academic philosophy, the confusion between ethics and morality prevented any rational discoveries. Generally, when considering egoism, academic philosophers ask if egoists can be moral. They assume altruism (as an absolute) and measure all conduct (ethics) against how nice you are to other people.  In Rand's doctrine, social conduct for an egoist begins with an assumption of benevolence towards others - and expectation of the same in return. Every day we all say "Thank you" to customers and suppliers. 

In that discussion in the Gulch, frequent poster khalling challenged me to explain the difference between objective and absolute. It was an important question, a point that often confuses admirers of Rand's novels and non-fiction, especially Atlas Shrugged. In that story, the Washington gangs and their coteries of looters and moochers deny the absolute: for them everything is relative, except their demands.  But Ayn Rand called her philosophy Objectivism, not Absolutism.  The objective is that which is empirically observable and rationally explicable.  The rational-empirical method depends on certain absolutes, and does discover absolute truths, but, largely, it is contextual, especially regarding human affairs. The standard of life is absolute; your choices for your happiness depend on your context. So does ethical conduct in society.

Completing a masters in social science, I took a graduate class in "Ethics in Physics." I found that technical societies for geologists, geographers, engineers of all kinds, have different statements of professional ethics. They all boil down to "be nice; do no harm." But they are all different in detail, and properly so. The work of a geographer is materially different than that of a geologist. 

RATIONAL-EMPIRICISM 
I also attended a seminar in the teaching of ethics to graduate students in counseling. As I recall, their statement of ethics runs 25 pages. Moreover, the point of the seminar was that to practice as a counselor - to practice ethically - you need to do more than attempt to apply the ethics document. Life is more complicated than that: the document is a guide. Ethical choices are highly contextual. 

I was working in transportation when a colleague suggested that I take a class in computer programming "so the people in data processing can't hand you a bunch of baloney." I took a class and liked it. I went to work as a programmer. On a project, no one wanted to write the user manual. Having published a few articles and two small books, I did the documentation. I became a technical writer. When the current recession started, I took a part-time job as a security guard. As the economy continued to slide, I needed a four-year degree to even apply for work as a technical writer, so I earned one in criminology. Those were all moral choices, but ethics had nothing to do with it. 

khalling wrote: "Ethics and Morality are blood brothers just like geometry and algebra can be expressed in similar ways." In fact, of course, blood brothers are genetically unrelated. Becoming blood brothers is more like a marriage ceremony. If you look at any modern textbook in geometry for mathematics majors, you will find no drawings. It is all algebra. I understand the point: proper ethical conduct in society depends on a correct morality of self-interest. As for the analogy to geometry and algebra, having re-read Introduction to the Objectivist Epistemology for a discussion on "Galt's Gulch", I now just started George Boole's Law of Thought - and I had a similar observation: reading Boole after Rand was like finding the algebra in geometry.

Friday, January 11, 2013

Four Books About Bad Science

When Science Goes Wrong: Twelve Tales from the Dark Side of Discovery by Simon LeVay (Plume Penguin, 2008).  LeVay lays out his facts in careful narratives.  In many cases, he interviewed the key actors, albeit some years after the events.  He marshals the pros and cons before stating his final conclusion.  The cases come from a several sciences, including volcanology, criminology, meteorology, microbiology, genetics, and nuclear physics. 

In 1993, geologists attended a conference in Columbia where the Galeras volcano had become active. They visited the calderon, climbing down into the crater. When it erupted, most of them were killed.  Among the survivors was the only scientist actually wearing the protective gear mandated by the National Science Foundation.  Some of the victims were in jeans and sneakers. 

The case from criminal forensics about Josiah Sutton of Houston, Texas, took DNA evidence past the confines of even the Innocence Project.  In this case, the so-called gold standard of physical criminalistics proved to be fool’s gold.  The police lab had committed a series of mistakes, some perhaps accidental and careless, others apparently purposefully fraudulent.  The victim wrongly identified two men as her attackers.  When the DNA samples matched neither man, the prosecutor insisted on their guilt, and posited the existence of a third unidentified attacker.  This is a common ploy with prosecutors who refuse to admit their mistake. 

Embargoed Science by Vincent Kierman (University of Illinois Press, 2006).  Major academic journals such as Nature, Science, the New England Journal of Medicine, and a hundred or so others, have a policy of announcing important publications by sending press releases to major mainstream media on the condition that the reporters not publish until the journal does.  The result is loud bursts of astounding science stories breaking on our awareness ... which then fade … until the next time.  The true costs include the loss of reflection and review, as contradictory findings roll out over the years without in-depth comparison and contrast.  Another cost is the loss of independence both of the news media which will not pursue a story beyond the press release; and also among the scientists who are constrained to divulge only what they publish in peer-reviewed journals. 

Yes, We Have No Neutrons: An Eye-Opening Tour Through the Twists and Turns of Bad Science by A. K. Dewdney (John Wiley & Sons, 1997).  Dewdney took over from Martin Gardner in Scientific American, and this book is a modernization of Gardner’s Fads and Fallacies in the Name of Science.  The stories here about N-rays, intelligence quotients, Freudian psychotherapy, cold fusion, Biosphere 2, and SETI (the Search for Extraterrestrial Intelligence) are exemplar warnings to avoid the known dangers of confirmation bias, arrogance, and ambition. 

Dewdney offers the model of the sorcerer and the apprentice for his narrative analogy.  It is the familiar story from Goethe as delivered by Disney.  We all make mistakes, even sorcerers.  It is when the apprentice presumes beyond his true abilities that disasters unfold.  In these stories, disasters come from scientists who should be sorcerers acting like mere apprentices, forgetful of the full canon of the scientific method, from the creation of testable hypotheses to publication and peer review. 
Yes, We Have No Neutrons does not address fraudulent science, but mistaken science. The appropriate persona, therefore is not the con artist, but the bumbler: the apprentice if you will.” (Page 2) “What is bad science? To begin with, whatever it means, bad science must be distinguished from fraudulent science.  Apprentices, by definition, honestly believe that they are sorcerers. Fraudulent scientists (and would-be scientists) know that they are cheating when they fudge experiments, steal ideas, or make false claims. They are more like evil magicians than apprentices. …  Bad science happens when someone strays in a fatal way from the scientific method.” (Page 17).
Dewdney takes the reader through three doors to explore the castle of science.  First, he differentiates technology from science.  “Technology consists of objects that have specific purpose. Science consists of methods and results.”  This is important because in the mass media the equipment of science – antennae, computers, reactors, satellites, etc. – stand for science.  Dewdney points out, however, that these are not essentially different from other examples of our material culture such as bicycles, dental floss, lawn mowers, refrigerators, and telephones. 

Indeed, I add here that in the book Biopunk: DIY Scientists Hack the Software of Life by Marcus Wohlsen (reviewed on Necessary Facts here), the author points out for 100 years, scientists from Pasteur to Salk worked without apparatus that we have in our kitchens. The same applies to our garage and basement workshops.  The point is that the mass media presentations of the gizmos and gadgets confuse technology with science, which Dewdney carefully delineates.  Science is a method.

However, Dewdney falls into the analytic-synthetic dichotomy. His second door delineates deductive from inductive science.  He does not unify the two, though, indeed, they must both identify the same reality.  Behind the third door is the getting and testing of ideas.  Scientists observe, ask questions, formulate hypothesis and perform experiments.  The goal of the experiment is to challenge and pass the theory.  This is where most of the fallen sorcerers reveal themselves to be mere apprentices.  Sigmund Freud built his wonderful theories from six case studies and no statistical samples or blind tests. 

Junk Science: How Politicians, Corporations, and Other Hucksters Betray Us by Dan Agin, Ph.D., (Thomas Dunne St. Martin’s Press, 2006) repeats many of the known stories of Piltdown Man, eugenics, phrenology, and Lysenko.  As a working biologist, he also offers cases that are less well known to the general public, such as Emil Abderhalden’s “defense enzymes.”  Agin also writes about the recent cases (1997-2004) of Marion Brach, Friedhelm Herrmann, and Roland Mertelsmann who conspired to publish at least 37 and perhaps 100 papers for which the experiments and data were entirely fabricated.

“There are two prevalent myths concerning scientific fraud.
The first myth states that most scientific experiments are replicated by other laboratories, that science is self-correcting because the discovery of fraud involving the fabrication of data is inevitable.
 The second myth is that scientific papers involving fabrication of data are extremely rare, with only a few fraudulent papers published in any one year." (Page 39)
In fact, given the huge body of published papers, even a small percentage of fraudulent cases – perhaps only 0.04% according to the arithmetic of published cases from the Office of Research Integrity of the U.S. Department of Health and Human Services – means that from the 5,600 significant scientific journals come 400 fraudulent papers each year.  However, by the metrics of criminologist Liqun Cao, (see previous posts on this blog) the number might be closer to 200,000 given that the intentional harms might be small: rounding up or rounding down, dropping inconvenient data, etc.  The median guess might be the most accurate. “In one survey published by American Scientist in 1993, between 6 and 9 percent of scientist respondents said that they were personally aware of results that had been plagiarized or fabricated within their facilities.” (Page 40)

The downside is that Dr. Agin has his own political views which color his diagnosis and remedies.  Corporations can be evil in selling us what we demand – such as junk foods and the fad diets to counter their effects, to say nothing of cigarettes – but the government is only unresponsive when politicians give in to the “wrong” pressure groups, such as Christians who were opposed to embryonic stem cell research.  Agin accepts all of the claims of anthropogenic global warming. He agrees with its fundamental reality. He falls in with the inevitable consequence that governments must do something immediately, no matter how severe. 

Dan Agin’s politics aside, the book is nonetheless an outstanding expose of many instances of bad science, much of it going on right now.

Monday, December 31, 2012

20% of Scientists are Crooks

At university in both "Introduction to Criminology" and the "Senior Seminar in Criminolgy", our professor, Liqun Cao,  liked to cite an easy claim of “twenty percent.”  For instance: 20% of goods on the market have no clear title.  The exact numbers did not matter and neither did the specific study or survey.  The teaching point was that criminality is not unusual.  Heinous crimes are rare.  Daily harms are all too frequent – and we all engage in one or another of them whether speeding or padding expense accounts.  So, too, in science is it important to realize that fraud and misconduct in research are not rare.
  
Book cover FALSE PROPHETS by Alexander KohnFalse Prophets: Fraud and Error in Science and Medicine by Alexander Kohn (Oxford: Basil Blackwell: 1986), is a classic work that remains important. It sets a baseline for understanding fraud and misconduct in research.  Kohn repeats famous cases such as Margaret Mead, Robert Millikan, and Trofim D. Lysenko.  He also tells of N-rays, the Allison Effect, the Davis and Barnes Effect,, and polywater. From there, Kohn focuses on his special interest, clinical research.  The book closes with chapters on broad and deep issues in ethics and science. Kohn offers no solutions.  He does say that whistleblowers should not be fired. He also quotes a university ethicist who cautions scientists not to engage in any research activity that they would not commit as laity.  That is largely unsatisfactory, especially as this philosopher (Prof. Michael Riese, then of the University of Guelph) calls ethics “a shared illusion of the human race.” I believe that a more objective standard is required.

Marshall Thomsen of Eastern Michigan University has been teaching “Ethical Issues in Physics” for over twenty years.  A search of “ethics physics” and similar items will return citations to Dr. Thomsen’s work at websites from the Illinois Institute of Technology, the University of Illinois, the University of Massachusetts, and Physics Today, among many more. When I had the class, he was on sabbatical and our professor was Patrick Koehn.  The class also has been taught by Prof. Mary Elizabeth Kubitskey. Dr. Kubitskey’s master’s thesis was Teaching Ethics in a High School Physics Class.

The Office of Research Integrity of the US Department of Health and Human Services investigates and acts on cases of fraud in research when federal grant money is involved.  You can find Case Summaries, ethics tutorials, an interactive video “The Lab”, and much more here.

What remedies are available when private money rather than public funds are at stake?  I believe that revocation of the university degree can be appropriate.  See my paper here.

Sunday, March 4, 2012

Science Fairs and Science Frauds

Last month, I volunteered to judge the exhibits in “Behavioral and Social Sciences” at the Austin Energy Regional Science Festival.  After the judging, I spent an hour walking the hall, looking at other exhibits and talking with the entrants.  Overall, I was impressed.  Woody Allen quipped that 85% of success is showing up and every exhibit was worthy of some positive acknowledgement.  Largely, these were winners at school science fairs; and competition gets tougher the further up the pyramid you go.  Of course, the bell curve applies: most exhibits were honest C+ efforts, midrange examples of high schools science.  What else could they be?  Some were outstanding; a few were tagged for us by the sponsor panel as being ineligible for award. 

Ineligibility is defined as failure to make the minimum benchmarks.  The rules and guidelines are provided on the local website – and they are the universal Intel International Science Fair rules and guidelines.  The materials for the judges are available to the exhibitors as well.  Among the many materials simple searching will uncover is a blog from Scientific American on what not to say at a science fair.  (“How to Answer the Five Most Common Questions from a Science Fair Judge,” by Dr. Maille Lyons, here.)

There was one exception.   And it bears on the “mass mediated hyper-reality of crime”  when television shows such as the CSI franchise inform us of what we tell them we believe.  “Criminal Eyewitness Identification” was a reasonable effort for a high school science fair project.  Having left the required log book and final paper (with reprint file) in the car after the first TV interview should have disqualified the entry for an award, but did not.  There was no “green warning tag” from the oversight committee.  The exhibitor was personable, even charming, conversant, and not at all nerdy, and garnered another television interview literally on the heels of the judges.  We judges noted the lack of data and methodology.  The poster display identified two different hypotheses being tested at the same time.  We even heard one of the Five Wrong Answers: “My cousin did it last year.”  The exhibitor seemed to believe that any criminal conviction is a correct conviction; and that convictions fail because witnesses cannot agree on identification of the perpetrator.  Like most of the others in the hall, this was a nice effort by an early high school student; and it could open the door to refinement, improvement, and well-earned recognition.  The judges could not give a place award; but the television cameras – shepherded in by the sponsor committee – were all the recognition required.  This was mass media, not science. 

We know that science collides with mass media in the courtroom.  It is an old story.  Tainting Evidence: Inside the Scandals at the FBI Crime Lab by John E. Kelly and Phillip K. Wearne (Free Press, 1999; 2002) is at once a shocking exposĂ© and a tiresome rant.  Any large, old organization will have bad experiences.  The FBI is not alone in wanting to be perceived as the paragon of best practices.  We all think well of ourselves.  Moreover, the authors rely heavily on public documents which are evidence of internal controls and corrections.  The authors claim that too little is done too late; and that real champions of justice is Frederick Whitehurst, whose insistences led to retaliations by a bureaucracy that could not admit its errors.  And the evidence is damning.  In case after case, the FBI crime lab worked backwards, starting with the prosecution’s claims and finding evidence to support them.  Compounding the falsehoods, FBI agents – the lab was run mostly by field agents, not professional scientists – committed perjury, when testifying under oath. 

Tainting Evidence examines the Oklahoma City Bombing, the O. J. Simpson case, the first World Trade Center bombing, the Unabomber and Ruby Ridge, among other cases.  Of special interest to me was the case of former Green Beret doctor Jeffrey Robert MacDonald whose guilt was proclaimed by Robert Bidinotto, an investigative writer in his book, Criminal Justice? The Legal System versus Individual Responsibility.  I know Bob Bidinotto from Objectivist blogs where we disagreed on basic issues of criminology.  He believes that MacDonald talked himself into murdering his wife and daughters and only denied it to escape responsibility for his actions.  The evidence – or lack of it – suggests otherwise: and an innocent man has spent 15 years in prison while the perpetrators are among us.

That said, Kelly and Wearne imply, also that the people we think are guilty – Timothy McVeigh, Theodore Kaczynski, O. J. Simpson, Nidal Ayyad, and others – may only have been railroaded or left holding the bag.  It is a bit of a stretch.  But it does not excuse the documented errors, oversights, omissions, fabrications, and denials.  If the FBI lab failed in these high-visibility cases where all available resources were marshaled, what then of the day-to-day work?  When the laboratory begins with the conclusions needed by the prosecution, science has been excluded from the process.
Online Universities is a resource for students interested in going to college via the Internet. "OnlineUniversities.com's goal is to assist students in finding the best online university that fits your needs and demands as a student."  They have a blog for February 27, 2012, “The 10 Greatest Cases of Fraud in University Research” (link here). 
A hundred years ago, criminologists sought to use biology to identify criminals, not in the pursuit of evidence, but in the prevention of crime by culling the population of genetic defectives.  The eugenics movement attracted Theodore Roosevelt, Margaret Sanger, Oliver Wendell Holmes, and millions of others, many of them highly placed public officials.  Based on the work of Cesare Lombroso (among others), the theory was that physical measurements of body parts could reveal ratios and proportions indicative of criminality.  Today, we seek it in genes, but it remains pseudo-science, what Richard Feynman called “Cargo Cult Science” i.e., the outward forms without the inner substance.

ALSO ON NECESSARY FACTS
Science Fair Science Fraud (2013)
Teaching Ethics to Student Engineers

Four Books about Bad Science
Misconduct in Scientific Research
Fantastic Voyages: Teaching Science with Science Fiction
Monsters from the Id (Science as Mankind's Last Hope)