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Now in an expanded paperback edition, Innocence Project attorney M. Chris Fabricant presents an insider’s journey into the heart of a broken, racist system of justice and the role junk science plays in maintaining the status quo. "Fierce and absorbing . . . Fabricant chronicles the battles he and his colleagues have fought to unravel a century of fraudulent experts and the bad court decisions that allowed them to thrive." —Washington Post From CSI to Forensic Files to the celebrated reputation of the FBI crime lab, forensic scientists have long been mythologized in American popular culture as infallible crime solvers. Juries put their faith in "expert witnesses" and innocent people have been executed as a result. Innocent people are still on death row today, condemned by junk science. In 2012, the Innocence Project began searching for prisoners convicted by junk science, and three men, each convicted of capital murder, became M. Chris Fabricant's clients. Junk Science and the American Criminal Justice System chronicles the fights to overturn their wrongful convictions and to end the use of the "science" that destroyed their lives. Weaving together courtroom battles from Mississippi to Texas to New York City and beyond, Fabricant takes the reader on a journey into the heart of a broken, racist system of justice and the role forensic science plays in maintaining the status quo. At turns gripping, enraging, illuminating, and moving, Junk Science is a meticulously researched insider's perspective of the American criminal justice system. Previously untold stories of wrongful executions, corrupt prosecutors, and quackery masquerading as science animate Fabricant’s true crime narrative. The paperback edition features a brand-new index as well as an updated introduction and final chapter chronicling the Innocence Project’s continued fight against junk science in courtrooms across America.
This edited volume brings closer two contemporary science education research areas: Nature of Science (NOS) and Social Justice (SJ). It starts a dialogue on the characteristics of NOS for SJ with the purpose of advancing the existing discussion and creating new avenues for research. Using a variety of approaches and perspectives, the authors of the different chapters engage in a dialogue on the construct of NOS for SJ, its characteristics, as well as ways of addressing it in science classrooms. Issues addressed are related to why a school science aiming at SJ should address NOS; what NOS-related content, skills and attitudes form the basis when aiming at SJ; and how school science can address NOS for SJ. Through a set of theoretical and empirical chapters, the authors suggest answers, but they also pose new questions on what NOS for SJ can mean, and what issues need to be taken into consideration in future research and practice. Chapter “Nature of Science for Social Justice: Why, What and How?” is available open access under a Creative Commons Attribution 4.0 International License via link.springer.com
How might science education reflect the values of a socially just and democratic society? How do urban youth living in poverty construct science in their lives in ways that are enriching, empowering, and transformative? Using a combination of in-depth case studies and rigorous theory, this volume: Offers a series of teaching stories that describes youth’s practices of science, providing valuable insight to help teachers work with inner-city youth.Explores the importance of inclusiveness, membership rules, and the purposes and goals of good science, including utility, pragmatism, and doing good for others.Shows how science connects to the lives of youth both in and out of school. Builds on and critiques current reform initiatives in science education.Features stories taken from six years of teaching and research in after-school science programs with children and youth in homeless shelters.Illustrates how the children’s unique situations framed their constructions of science in compelling and challenging ways.
Forensic science is a subject of wide fascination. What happens at a crime scene? How does DNA profiling work? How can it help solve crimes that happened 20 years ago? In forensic science, a criminal case can often hinge on a piece of evidence such as a hair, a blood trace, half a footprint, or a tyre mark. Complex scientific findings must be considered carefully and dispassionately, and communicated with clarity, simplicity, and precision. High profile cases such as the Stephen Lawrence enquiry and the Madeleine McCann case have attracted enormous media attention and enhanced general interest in this area in recent years. In this Very Short Introduction, Jim Fraser introduces the concept of forensic science and explains how it is used in the investigation of crime. He begins at the crime scene itself, explaining the principles and processes of crime scene management, and drawing on his own personal experience of high profile cases including, the murder of Rachel Nickell and the unsolved murder of Jill Dando. Fraser explores how forensic scientists work; from the reconstruction of events to laboratory examinations. He considers the techniques they use, such as fingerprinting, and goes on to highlight the immense impact DNA profiling has had. Providing examples from forensic science cases in the UK, US, and other countries, he considers the techniques and challenges faced around the world. This new edition has been fully updated to take into account developments in areas such as DNA analysis and drug analysis, and the growing field of digital forensics. Topical areas explored include the growing significance of cognitive bias in forensic science, and recent research that raises doubts about the validity of some forensic techniques. ABOUT THE SERIES: The Very Short Introductions series from Oxford University Press contains hundreds of titles in almost every subject area. These pocket-sized books are the perfect way to get ahead in a new subject quickly. Our expert authors combine facts, analysis, perspective, new ideas, and enthusiasm to make interesting and challenging topics highly readable.
Uniting forensics, law, and social science in meaningful and relevant ways, Forensic Science and the Administration of Justice, by Kevin J. Strom and Matthew J. Hickman, is structured around current research on how forensic evidence is being used and how it is impacting the justice system. This unique book—written by nationally known scholars in the field—includes five sections that explore the demand for forensic services, the quality of forensic services, the utility of forensic services, post-conviction forensic issues, and the future role of forensic science in the administration of justice. The authors offer policy-relevant directions for both the criminal justice and forensic fields and demonstrate how the role of the crime laboratory in the American justice system is evolving in concert with technological advances as well as changing demands and competing pressures for laboratory resources.
Kelsen, Hans. What is Justice? Justice, Law and Politics in the Mirror of Science. Berkeley: University of California Press, 1957. [vi], 397 pp. Reprinted 2000 by The Lawbook Exchange, Ltd. ISBN 1-58477-101-1. Cloth. New. $95. * Through the lens of science, Kelsen proposes a dynamic theory of natural law, examines Platonic and Aristotelian doctrines of justice, the idea of justice as found in the holy scriptures, and defines justice as "...that social order under whose protection the search for truth can prosper. 'My' justice, then, is the justice of freedom, the justice of peace, the justice of democracy-the justice of tolerance." (p. 24).
Examines the impact of DNA technology on issues of ethics, civil liberties, privacy, and security.
When environmental health problems arise in a community, policymakers must be able to reconcile the first-hand experience of local residents with recommendations by scientists. In this highly original look at environmental health policymaking, Jason Corburn shows the ways that local knowledge can be combined with professional techniques to achieve better solutions for environmental health problems. He traces the efforts of a low-income community in Brooklyn to deal with environmental health problems in its midst and offers a framework for understanding "street science"—decision making that draws on community knowledge and contributes to environmental justice. Like many other low-income urban communities, the Greenpoint/Williamsburg neighborhood of Brooklyn suffers more than its share of environmental problems, with a concentration of polluting facilities and elevated levels of localized air pollutants. Corburn looks at four instances of street science in Greenpoint/Williamsburg, where community members and professionals combined forces to address the risks from subsistence fishing from the polluted East River, the asthma epidemic in the Latino community, childhood lead poisoning, and local sources of air pollution. These episodes highlight both the successes and the limits of street science and demonstrate ways residents can establish their own credibility when working with scientists. Street science, Corburn argues, does not devalue science; it revalues other kinds of information and democratizes the inquiry and decision making processes.
This title presents the history of forensics. Vivid text details how early studies of toxic chemicals and firearm analysis led to modern scientific crime solving techniques. It also puts a spotlight on the brilliant scientists who made these advances possible. Useful sidebars, rich images, and a glossary help readers understand the science and its importance. Maps and diagrams provide context for critical discoveries in the field. Aligned to Common Core Standards and correlated to state standards. Essential Library is an imprint of Abdo Publishing, a division of ABDO.
We've been told, again and again, that life is unfair. But what if we're wrong simply to resign ourselves to this situation? Drawing on the evidence from our evolutionary history and the emergent science of human nature, this title shows that we have an innate sense of fairness.