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  cu boulder math building: Statistical Rethinking Richard McElreath, 2018-01-03 Statistical Rethinking: A Bayesian Course with Examples in R and Stan builds readers’ knowledge of and confidence in statistical modeling. Reflecting the need for even minor programming in today’s model-based statistics, the book pushes readers to perform step-by-step calculations that are usually automated. This unique computational approach ensures that readers understand enough of the details to make reasonable choices and interpretations in their own modeling work. The text presents generalized linear multilevel models from a Bayesian perspective, relying on a simple logical interpretation of Bayesian probability and maximum entropy. It covers from the basics of regression to multilevel models. The author also discusses measurement error, missing data, and Gaussian process models for spatial and network autocorrelation. By using complete R code examples throughout, this book provides a practical foundation for performing statistical inference. Designed for both PhD students and seasoned professionals in the natural and social sciences, it prepares them for more advanced or specialized statistical modeling. Web Resource The book is accompanied by an R package (rethinking) that is available on the author’s website and GitHub. The two core functions (map and map2stan) of this package allow a variety of statistical models to be constructed from standard model formulas.
  cu boulder math building: Ambitious Science Teaching Mark Windschitl, Jessica Thompson, Melissa Braaten, 2020-08-05 2018 Outstanding Academic Title, Choice Ambitious Science Teaching outlines a powerful framework for science teaching to ensure that instruction is rigorous and equitable for students from all backgrounds. The practices presented in the book are being used in schools and districts that seek to improve science teaching at scale, and a wide range of science subjects and grade levels are represented. The book is organized around four sets of core teaching practices: planning for engagement with big ideas; eliciting student thinking; supporting changes in students’ thinking; and drawing together evidence-based explanations. Discussion of each practice includes tools and routines that teachers can use to support students’ participation, transcripts of actual student-teacher dialogue and descriptions of teachers’ thinking as it unfolds, and examples of student work. The book also provides explicit guidance for “opportunity to learn” strategies that can help scaffold the participation of diverse students. Since the success of these practices depends so heavily on discourse among students, Ambitious Science Teaching includes chapters on productive classroom talk. Science-specific skills such as modeling and scientific argument are also covered. Drawing on the emerging research on core teaching practices and their extensive work with preservice and in-service teachers, Ambitious Science Teaching presents a coherent and aligned set of resources for educators striving to meet the considerable challenges that have been set for them.
  cu boulder math building: Talking about Leaving Revisited Elaine Seymour, Anne-Barrie Hunter, 2019-12-10 ​Talking about Leaving Revisited discusses findings from a five-year study that explores the extent, nature, and contributory causes of field-switching both from and among “STEM” majors, and what enables persistence to graduation. The book reflects on what has and has not changed since publication of Talking about Leaving: Why Undergraduates Leave the Sciences (Elaine Seymour & Nancy M. Hewitt, Westview Press, 1997). With the editors’ guidance, the authors of each chapter collaborate to address key questions, drawing on findings from each related study source: national and institutional data, interviews with faculty and students, structured observations and student assessments of teaching methods in STEM gateway courses. Pitched to a wide audience, engaging in style, and richly illustrated in the interviewees’ own words, this book affords the most comprehensive explanatory account to date of persistence, relocation and loss in undergraduate sciences. Comprehensively addresses the causes of loss from undergraduate STEM majors—an issue of ongoing national concern. Presents critical research relevant for nationwide STEM education reform efforts. Explores the reasons why talented undergraduates abandon STEM majors. Dispels popular causal myths about why students choose to leave STEM majors. This volume is based upon work supported by the Alfred P. Sloan Foundation Award No. 2012-6-05 and the National Science Foundation Award No. DUE 1224637.
  cu boulder math building: The 5 Elements of Effective Thinking Edward B. Burger, Michael Starbird, 2012-08-26 Offers real-life stories, items, and methods that allow for a deeper understanding of any issue, provide the power to use failure as a step toward success, and develop a habit of creating probing questions.
  cu boulder math building: 2018 International Building Code Illustrated Handbook International Code Council, Douglas W. Thornburg, Chris Kimball, William C. Bracken, 2018-07-13 The most comprehensive visual companion to the International Building Code®—fully updated for 2018 and applicable for 2021 provisions Thoroughly updated to address the provisions of the ICC’s 2018 and 2021 International Building Code®, this fully-illustrated guide makes it easy to understand and apply the most critical code provisions. Covering both fire- and life-safety and structural provisions, this practical resource contains hundreds of user-friendly diagrams designed to clarify the application and intent of the IBC. The 2018 International Building Code® Illustrated Handbook provides all the information needed to get construction jobs done right and achieve compliance. An invaluable companion to the 2018 and 2021 IBC, it is a must have resource for building officials, architects, engineers, contractors and all building construction professionals. Get complete application details on: •Scope and Administration •Definitions •Use and Occupancy Classification •Special Detailed Requirements Based on Use and Occupancy •General Building Heights and Areas •Types of Construction •Fire and Smoke Protection Features •Interior Finishes •Fire Protection Systems •Means of Egress •Accessibility •Interior Environment •Exterior Walls •Roof Assemblies and Rooftop Structures •Structural Design •Special inspections and tests •Soils and Foundations •Concrete •Masonry •Steel •Wood •Glass and Glazing •Gypsum Board and Plaster •Plastic •Plumbing •Elevators and Conveying Systems •Special Construction •Encroachments in the Public Right-of-Way •Safeguards During Construction
  cu boulder math building: Standards-based Mathematics Assessment in Middle School Thomas A. Romberg, 2004 This volume takes an in-depth look at the problems and practices involved in conducting formative assessments in middle school mathematics classrooms. In these chapters, researchers and teachers identify the challenges teachers faced as they attempted to implement new assessment procedures, moving from more traditional methods to an emphasis in the quality of student work. This authoritative book: Documents the shift from traditional ways of judging student performance (tests to measure what students know) to reform notions of mathematical literacy (documenting students' growth in understanding specific content domains); Discusses four key steps in the change process that helped teachers to accomplish the necessary shift in assessment practices. Includes two chapters written by teachers that describe their personal experiences with implementing these new practices in the classroom and outlines a professional development program that evolved as a consequence of the work done by the teachers and students discussed in this book.
  cu boulder math building: Combinatorics of Minuscule Representations R. M. Green, 2013-02-21 Uses the combinatorics and representation theory to construct and study important families of Lie algebras and Weyl groups.
  cu boulder math building: Building Gender Equity in the Academy Sandra Laursen, Ann E. Austin, 2020-11-24 Grounded in scholarship but written for busy institutional leaders, Building Gender Equity in the Academy is a handbook of actionable strategies for faculty and administrators working to improve the inclusion and visibility of women and others who are marginalized in the sciences and in academe more broadly.
  cu boulder math building: School, Family, and Community Partnerships Joyce L. Epstein, Mavis G. Sanders, Steven B. Sheldon, Beth S. Simon, Karen Clark Salinas, Natalie Rodriguez Jansorn, Frances L. Van Voorhis, Cecelia S. Martin, Brenda G. Thomas, Marsha D. Greenfeld, Darcy J. Hutchins, Kenyatta J. Williams, 2018-07-19 Strengthen programs of family and community engagement to promote equity and increase student success! When schools, families, and communities collaborate and share responsibility for students′ education, more students succeed in school. Based on 30 years of research and fieldwork, the fourth edition of the bestseller School, Family, and Community Partnerships: Your Handbook for Action, presents tools and guidelines to help develop more effective and more equitable programs of family and community engagement. Written by a team of well-known experts, it provides a theory and framework of six types of involvement for action; up-to-date research on school, family, and community collaboration; and new materials for professional development and on-going technical assistance. Readers also will find: Examples of best practices on the six types of involvement from preschools, and elementary, middle, and high schools Checklists, templates, and evaluations to plan goal-linked partnership programs and assess progress CD-ROM with slides and notes for two presentations: A new awareness session to orient colleagues on the major components of a research-based partnership program, and a full One-Day Team Training Workshop to prepare school teams to develop their partnership programs. As a foundational text, this handbook demonstrates a proven approach to implement and sustain inclusive, goal-linked programs of partnership. It shows how a good partnership program is an essential component of good school organization and school improvement for student success. This book will help every district and all schools strengthen and continually improve their programs of family and community engagement.
  cu boulder math building: Nonlinear Dynamics and Chaos Steven H. Strogatz, 2018-05-04 This textbook is aimed at newcomers to nonlinear dynamics and chaos, especially students taking a first course in the subject. The presentation stresses analytical methods, concrete examples, and geometric intuition. The theory is developed systematically, starting with first-order differential equations and their bifurcations, followed by phase plane analysis, limit cycles and their bifurcations, and culminating with the Lorenz equations, chaos, iterated maps, period doubling, renormalization, fractals, and strange attractors.
  cu boulder math building: To See the Earth Before the End of the World Ed Roberson, 2012-02-08 Winner of the Voelcker Award (PEN America) (2016) In To See the Earth Before the End of the World Ed Roberson presents us with 120 new poems, each speaking in his unique voice and seen through his unique eye. Earth and sky, neighborhood life and ancient myths, the art of seeing and the architecture of the imagination are all among the subjects of these poems. Recurring images and ideas construct a complex picture of our world, ourselves, and the manifold connections tying them together. The poems raise large questions about the natural world and our place in it, and they do not flinch from facing up to those questions. Roberson's poems range widely through different scales of time and space, invoking along the way history and myth, galaxies and garbage trucks, teapots and the history of photography, mating cranes and Chicago's political machine. This collection is composed of five sequences, each developing a particular constellation of images and ideas related to the vision of the whole. Various journeys become one journey—an epic journey, invoking epic themes. There are songs of creation, pictures of the sorrows of war, celebrations of human labor and human society, a respect for tools and domestic utensils that are well made, the deep background of the past tingeing the colors of the present, and the tragic tones of endings and laments, a pervading awareness of the tears in things. Most of all, there is the exhilaration of a grand, sweeping vision that enlarges our world.
  cu boulder math building: A Mathematical Introduction to Robotic Manipulation Richard M. Murray, 2017-12-14 A Mathematical Introduction to Robotic Manipulation presents a mathematical formulation of the kinematics, dynamics, and control of robot manipulators. It uses an elegant set of mathematical tools that emphasizes the geometry of robot motion and allows a large class of robotic manipulation problems to be analyzed within a unified framework. The foundation of the book is a derivation of robot kinematics using the product of the exponentials formula. The authors explore the kinematics of open-chain manipulators and multifingered robot hands, present an analysis of the dynamics and control of robot systems, discuss the specification and control of internal forces and internal motions, and address the implications of the nonholonomic nature of rolling contact are addressed, as well. The wealth of information, numerous examples, and exercises make A Mathematical Introduction to Robotic Manipulation valuable as both a reference for robotics researchers and a text for students in advanced robotics courses.
  cu boulder math building: A Primer of Subquasivariety Lattices Kira Adaricheva, Jennifer Hyndman, J. B. Nation, Joy N. Nishida, 2023-08-20 This book addresses Birkhoff and Mal'cev's problem of describing subquasivariety lattices. The text begins by developing the basics of atomic theories and implicational theories in languages that may, or may not, contain equality. Subquasivariety lattices are represented as lattices of closed algebraic subsets of a lattice with operators, which yields new restrictions on the equaclosure operator. As an application of this new approach, it is shown that completely distributive lattices with a dually compact least element are subquasivariety lattices. The book contains many examples to illustrate these principles, as well as open problems. Ultimately this new approach gives readers a set of tools to investigate classes of lattices that can be represented as subquasivariety lattices.
  cu boulder math building: Applied Linear Algebra Peter J. Olver, Chehrzad Shakiban, 2018-05-30 This textbook develops the essential tools of linear algebra, with the goal of imparting technique alongside contextual understanding. Applications go hand-in-hand with theory, each reinforcing and explaining the other. This approach encourages students to develop not only the technical proficiency needed to go on to further study, but an appreciation for when, why, and how the tools of linear algebra can be used across modern applied mathematics. Providing an extensive treatment of essential topics such as Gaussian elimination, inner products and norms, and eigenvalues and singular values, this text can be used for an in-depth first course, or an application-driven second course in linear algebra. In this second edition, applications have been updated and expanded to include numerical methods, dynamical systems, data analysis, and signal processing, while the pedagogical flow of the core material has been improved. Throughout, the text emphasizes the conceptual connections between each application and the underlying linear algebraic techniques, thereby enabling students not only to learn how to apply the mathematical tools in routine contexts, but also to understand what is required to adapt to unusual or emerging problems. No previous knowledge of linear algebra is needed to approach this text, with single-variable calculus as the only formal prerequisite. However, the reader will need to draw upon some mathematical maturity to engage in the increasing abstraction inherent to the subject. Once equipped with the main tools and concepts from this book, students will be prepared for further study in differential equations, numerical analysis, data science and statistics, and a broad range of applications. The first author’s text, Introduction to Partial Differential Equations, is an ideal companion volume, forming a natural extension of the linear mathematical methods developed here.
  cu boulder math building: Mastering Physics Pearson Prentice Hall, Richard Wolfson, 2006-06
  cu boulder math building: Understanding Mathematics and Science Matters Thomas A. Romberg, Thomas P. Carpenter, Fae Dremock, 2005-03-23 The research reported in this book provides reliable evidence on and knowledge about mathematics and science instruction that emphasizes student understanding--instruction consistent with the needs of students who will be citizens in an increasingly demanding technological world. The National Center for Improving Student Learning in Mathematics and Science--established in 1996 as a research center and funded by the U.S. Department of Education--was instrumental in developing instructional practices supportive of high student achievement in and understanding of mathematics and science concepts. NCISLA researchers worked with teachers, students, and administrators to construct learning environments that exemplify current research and theory about effective learning of mathematics and science. The careful programs of research conducted examined how instructional content and design, assessment, professional development, and organizational support can be designed, implemented, and orchestrated to support the learning of all students. This book presents a summary of the concepts, findings, and conclusions of the Center's research from 1996-2001. In the Introduction, the chapters in Understanding Mathematics and Science Matters are situated in terms of the reform movement in school mathematics and school science. Three thematically structured sections focus on, respectively, research directed toward what is involved when students learn mathematics and science with understanding; research on the role of teachers and the problems they face when attempting to teach their students mathematics and science with understanding; and a collaboration among some of the contributors to this volume to gather information about classroom assessment practices and organizational support for reform. The goal of this book is to help educational practitioners, policymakers, and the general public to see the validity of the reform recommendations, understand the recommended guidelines, and to use these to transform teaching and learning of mathematics and science in U.S. classrooms.
  cu boulder math building: Critical Sports Studies Nicholas Villanueva, Jr., 2019-12-05 Critical Sports Studies: A Document Reader provides students with a selection of essays that examine social problems in sport. Readers are challenged to critically consider various topics to better understand how the global phenomenon of sport can lead to challenges both on and off the field. The opening chapter introduces the study of sport in society as an academic discipline. Later chapters cover amateurism in sport, sports and politics, and the role of media in
  cu boulder math building: Mindset Mathematics Jo Boaler, Jen Munson, Cathy Williams, 2017-08-28 Engage students in mathematics using growth mindset techniques The most challenging parts of teaching mathematics are engaging students and helping them understand the connections between mathematics concepts. In this volume, you'll find a collection of low floor, high ceiling tasks that will help you do just that, by looking at the big ideas at the first-grade level through visualization, play, and investigation. During their work with tens of thousands of teachers, authors Jo Boaler, Jen Munson, and Cathy Williams heard the same message—that they want to incorporate more brain science into their math instruction, but they need guidance in the techniques that work best to get across the concepts they needed to teach. So the authors designed Mindset Mathematics around the principle of active student engagement, with tasks that reflect the latest brain science on learning. Open, creative, and visual math tasks have been shown to improve student test scores, and more importantly change their relationship with mathematics and start believing in their own potential. The tasks in Mindset Mathematics reflect the lessons from brain science that: There is no such thing as a math person - anyone can learn mathematics to high levels. Mistakes, struggle and challenge are the most important times for brain growth. Speed is unimportant in mathematics. Mathematics is a visual and beautiful subject, and our brains want to think visually about mathematics. With engaging questions, open-ended tasks, and four-color visuals that will help kids get excited about mathematics, Mindset Mathematics is organized around nine big ideas which emphasize the connections within the Common Core State Standards (CCSS) and can be used with any current curriculum.
  cu boulder math building: Talking About Leaving Elaine Seymour, 2000-08-01 This intriguing book explores the reasons that lead undergraduates of above-average ability to switch from science, mathematics, and engineering majors into nonscience majors. Based on a three-year, seven-campus study, the volume takes up the ongoing national debate about the quality of undergraduate education in these fields, offering explanations for net losses of students to non-science majors. Data show that approximately 40 percent of undergraduate students leave engineering programs, 50 percent leave the physical and biological sciences, and 60 percent leave mathematics. Concern about this waste of talent is heightened because these losses occur among the most highly qualified college entrants and are disproportionately greater among women and students of color, despite a serious national effort to improve their recruitment and retention. The authors' findings, culled from over 600 hours of ethnographic interviews and focus group discussions with undergraduates, explain the intended and unintended consequences of some traditional teaching practices and attitudes. Talking about Leaving is richly illustrated with students' accounts of their own experiences in the sciences. This is a landmark study-an essential source book for all those concerned with changing the ways that we teach science, mathematics, and engineering education, and with opening these fields to a more diverse student body.
  cu boulder math building: Modular Forms, a Computational Approach William A. Stein, 2007-02-13 This marvellous and highly original book fills a significant gap in the extensive literature on classical modular forms. This is not just yet another introductory text to this theory, though it could certainly be used as such in conjunction with more traditional treatments. Its novelty lies in its computational emphasis throughout: Stein not only defines what modular forms are, but shows in illuminating detail how one can compute everything about them in practice. This is illustrated throughout the book with examples from his own (entirely free) software package SAGE, which really bring the subject to life while not detracting in any way from its theoretical beauty. The author is the leading expert in computations with modular forms, and what he says on this subject is all tried and tested and based on his extensive experience. As well as being an invaluable companion to those learning the theory in a more traditional way, this book will be a great help to those who wish to use modular forms in applications, such as in the explicit solution of Diophantine equations. There is also a useful Appendix by Gunnells on extensions to more general modular forms, which has enough in it to inspire many PhD theses for years to come. While the book's main readership will be graduate students in number theory, it will also be accessible to advanced undergraduates and useful to both specialists and non-specialists in number theory. --John E. Cremona, University of Nottingham William Stein is an associate professor of mathematics at the University of Washington at Seattle. He earned a PhD in mathematics from UC Berkeley and has held positions at Harvard University and UC San Diego. His current research interests lie in modular forms, elliptic curves, and computational mathematics.
  cu boulder math building: Partial Differential Equations on Manifolds Robert Everist Greene, 1993
  cu boulder math building: Red Notice Bill Browder, 2015-02-03 Freezing Order, the follow-up to Red Notice, is available now! “[Red Notice] does for investing in Russia and the former Soviet Union what Liar’s Poker did for our understanding of Salomon Brothers, Wall Street, and the mortgage-backed securities business in the 1980s. Browder’s business saga meshes well with the story of corruption and murder in Vladimir Putin’s Russia, making Red Notice an early candidate for any list of the year’s best books” (Fortune). “Part John Grisham-like thriller, part business and political memoir.” —The New York Times This is a story about an accidental activist. Bill Browder started out his adult life as the Wall Street maverick whose instincts led him to Russia just after the breakup of the Soviet Union, where he made his fortune. Along the way he exposed corruption, and when he did, he barely escaped with his life. His Russian lawyer Sergei Magnitsky wasn’t so lucky: he ended up in jail, where he was tortured to death. That changed Browder forever. He saw the murderous heart of the Putin regime and has spent the last half decade on a campaign to expose it. Because of that, he became Putin’s number one enemy, especially after Browder succeeded in having a law passed in the United States—The Magnitsky Act—that punishes a list of Russians implicated in the lawyer’s murder. Putin famously retaliated with a law that bans Americans from adopting Russian orphans. A financial caper, a crime thriller, and a political crusade, Red Notice is the story of one man taking on overpowering odds to change the world, and also the story of how, without intending to, he found meaning in his life.
  cu boulder math building: Second Handbook of Research on Mathematics Teaching and Learning Frank K. Lester, 2007-02-01 The audience remains much the same as for the 1992 Handbook, namely, mathematics education researchers and other scholars conducting work in mathematics education. This group includes college and university faculty, graduate students, investigators in research and development centers, and staff members at federal, state, and local agencies that conduct and use research within the discipline of mathematics. The intent of the authors of this volume is to provide useful perspectives as well as pertinent information for conducting investigations that are informed by previous work. The Handbook should also be a useful textbook for graduate research seminars. In addition to the audience mentioned above, the present Handbook contains chapters that should be relevant to four other groups: teacher educators, curriculum developers, state and national policy makers, and test developers and others involved with assessment. Taken as a whole, the chapters reflects the mathematics education research community's willingness to accept the challenge of helping the public understand what mathematics education research is all about and what the relevance of their research fi ndings might be for those outside their immediate community.
  cu boulder math building: Improving How Universities Teach Science Carl Wieman, 2017-05-22 Too many universities remain wedded to outmoded ways of teaching science in spite of extensive research showing that there are much more effective methods. Too few departments ask whether what happens in their lecture halls is effective at helping students to learn and how they can encourage their faculty to teach better. But real change is possible, and Carl Wieman shows us how it can be brought about. Improving How Universities Teach Science draws on Wieman’s unparalleled experience to provide a blueprint for educators seeking sustainable improvements in science teaching. Wieman created the Science Education Initiative (SEI), a program implemented across thirteen science departments at the universities of Colorado and British Columbia, to support the widespread adoption of the best research-based approaches to science teaching. The program’s data show that in the most successful departments 90 percent of faculty adopted better methods. Wieman identifies what factors helped and hindered the adoption of good teaching methods. He also gives detailed, effective, and tested strategies for departments and institutions to measure and improve the quality of their teaching while limiting the demands on faculty time. Among all of the commentary addressing shortcomings in higher education, Wieman’s lessons on improving teaching and learning stand out. His analysis and solutions are not limited to just one lecture hall or course but deal with changing entire departments and universities. For those who want to improve how universities teach science to the next generation, Wieman’s work is a critical first step.
  cu boulder math building: Introduction to Physical Oceanography Robert H. Stewart, 2009-09 This book is written for college juniors and seniors and new graduate students in meteorology, ocean engineering, and oceanography. It begins with a brief overview of what is known about the ocean. This is followed by a description of the ocean basins, for the shape of the seas influences the physical processes in the water. Next, students will study the external forces, wind and heat, acting on the ocean, and the ocean's response. It also includes the equations describing dynamic response of the ocean. For example, the equations of motion, the influence of earth's rotation, and viscosity. Finally, students consider some particular examples: the deep circulation, the equatorial ocean and El NiE no, and the circulation of particular areas of the ocean. Contents: 1) A Voyage of Discovery. 2) The Historical Setting. 3) The Physical Setting. 4) Atmospheric Influences. 5) The Oceanic Heat Budget. 6) Temperature, Salinity and Density. 7) The Equations of Motion. 8) Equations of Motion with Viscosity. 9) Response of the Upper Ocean to Winds. 10) Geostrophic Currents. 11) Wind Driven Ocean Circulation. 12) Vorticity in the Ocean. 13) Deep Circulation in the Ocean. 14) Equatorial Processes. 15) Numerical Models. 16) Ocean Waves. 17) Coastal Processes and Tides.
  cu boulder math building: Dangerous Milo Yiannopoulos, 2017 The liberal media machine did everything they could to keep this book out of your hands. Now, finally, Dangerous, the most controversial book of the decade, is tearing down safe spaces everywhere.
  cu boulder math building: Glory Colorado! William Eugene Davis, 2007
  cu boulder math building: The Electronics of Radio David Rutledge, 1999-08-13 This fascinating book provides a stimulating introduction to analog electronics by analysing the design and construction of a radio transceiver. Essential theoretical background is given along with carefully designed laboratory and homework exercises. The author begins with a thorough description of basic electronic components and simple circuits and goes on to describe the key elements of radio electronics, including filters, amplifiers, oscillators, mixers, and antennas. Laboratory exercises lead the reader through the design, construction, and testing of a popular radio transceiver (the NorCal 40A). A diskette containing the widely known circuit simulation software, Puff, is included in the book. This was the first book to deal with elementary electronics in the context of radio. It can be used as a textbook for introductory analog electronics courses, for more advanced undergraduate classes on radio-frequency electronics, and will also be of great interest to electronics hobbyists and radio enthusiasts.
  cu boulder math building: Academic Libraries for Commuter Students Mariana Regalado, Maura A. Smale, 2018-05-21 With its emphasis on qualitative research, this book will help readers learn what commuter students really need from academic libraries.
  cu boulder math building: The Atomic West Bruce W. Hevly, John M. Findlay, 2011-12-01 The Manhattan Project—the World War II race to produce an atomic bomb—transformed the entire country in myriad ways, but it did not affect each region equally. Acting on an enduring perception of the American West as an “empty” place, the U.S. government located a disproportionate number of nuclear facilities—particularly the ones most likely to spread pollution—in western states. The Manhattan Project manufactured plutonium at Hanford, Washington; designed and assembled bombs at Los Alamos, New Mexico; and detonated the world’s first atomic bomb at Alamagordo, New Mexico, on June 16, 1945. In the years that followed the war, the U.S. Atomic Energy Commission selected additional western sites for its work. Many westerners initially welcomed the atom. Like federal officials, they, too, regarded their region as “empty,” or underdeveloped. Facilities to make, test, and base atomic weapons, sites to store nuclear waste, and even nuclear power plants were regarded as assets. By the 1960s and 1970s, however, regional attitudes began to change. At a variety of locales, ranging from Eskimo Alaska to Mormon Utah, westerners devoted themselves to resisting the atom and its effects on their environments and communities. Just as the atomic age had dawned in the American West, so its artificial sun began to set there. The Atomic West brings together contributions from several disciplines to explore the impact on the West of the development of atomic power from wartime secrecy and initial postwar enthusiasm to public doubts and protest in the 1970s and 1980s. An impressive example of the benefits of interdisciplinary studies on complex topics, The Atomic West advances our understanding of both regional history and the history of science, and does so with human communities as a significant focal point. The book will be of special interest to students and experts on the American West, environmental history, and the history of science and technology.
  cu boulder math building: Common Core Mathematics Standards and Implementing Digital Technologies Polly, Drew, 2013-05-31 Standards in the American education system are traditionally handled on a state-by-state basis, which can differ significantly from one region of the country to the next. Recently, initiatives proposed at the federal level have attempted to bridge this gap. Common Core Mathematics Standards and Implementing Digital Technologies provides a critical discussion of educational standards in mathematics and how communication technologies can support the implementation of common practices across state lines. Leaders in the fields of mathematics education and educational technology will find an examination of the Common Core State Standards in Mathematics through concrete examples, current research, and best practices for teaching all students regardless of grade level or regional location. This book is part of the Advances in Educational Technologies and Instructional Design series collection.
  cu boulder math building: Astronomy Jeffrey O. Bennett, Megan Donahue, Nicholas Schneider, Mark Voit, 2008-06-25
  cu boulder math building: Disrupting the Culture of Silence Kristine De Welde, Andi Stepnick, 2023-07-03 CHOICE 2015 Outstanding Academic TitleWhat do women academics classify as challenging, inequitable, or “hostile” work environments and experiences? How do these vary by women’s race/ethnicity, rank, sexual orientation, or other social locations?How do academic cultures and organizational structures work independently and in tandem to foster or challenge such work climates?What actions can institutions and individuals–independently and collectively–take toward equity in the academy?Despite tremendous progress toward gender equality and equity in institutions of higher education, deep patterns of discrimination against women in the academy persist. From the “chilly climate” to the “old boys’ club,” women academics must navigate structures and cultures that continue to marginalize, penalize, and undermine their success.This book is a “tool kit” for advancing greater gender equality and equity in higher education. It presents the latest research on issues of concern to them, and to anyone interested in a more equitable academy. It documents the challenging, sometimes hostile experiences of women academics through feminist analysis of qualitative and quantitative data, including narratives from women of different races and ethnicities across disciplines, ranks, and university types. The contributors’ research draws upon the experiences of women academics including those with under-examined identities such as lesbian, feminist, married or unmarried, and contingent faculty. And, it offers new perspectives on persistent issues such as family policies, pay and promotion inequalities, and disproportionate service burdens. The editors provide case studies of women who have encountered antagonistic workplaces, and offer action steps, best practices, and more than 100 online resources for individuals navigating similar situations. Beyond women in academe, this book is for their allies and for administrators interested in changing the climates, cultures, and policies that allow gender inequality to exist on their campuses, and to researchers/scholars investigating these phenomena. It aims to disrupt complacency amongst those who claim that things are “better” or “good enough” and to provide readers with strategies and resources to counter barriers created by culture, climate, or institutional structures.
  cu boulder math building: Experiments in International Benchmarking of US Research Fields Institute of Medicine, National Academy of Engineering, National Academy of Sciences, Committee on Science, Engineering, and Public Policy, 2000-02-28 How can the federal government gauge the overall health of scientific researchâ€as a whole and in its partsâ€and determine whether national funding adequately supports national research objectives? It is feasible to monitor US performance with field-by-field peer assessments. This might be done through the establishment of independent panels consisting of researchers who work in a field, individuals who work in closely related fields, and research users who follow the field closely. Some of these individuals should be outstanding foreign scientists in the field being examined. This technique of comparative international assessments is also known as international benchmarking. Experiments in International Benchmarking of U.S. Research Fields evaluates the feasibility and utility of the benchmarking technique. In order to do this, the report internationally benchmarks three fields: mathematics, immunology, and materials science and engineering, then summarizes the results of these experiments.
  cu boulder math building: The Perfect Loaf Maurizio Leo, 2022-11-08 JAMES BEARD AWARD WINNER • IACP AWARD WINNER • NEW YORK TIMES BESTSELLER • A dynamic, authoritative sourdough baking bible for those looking to build confidence in the craft with a wide range of foolproof recipes, from pan loaves to pizza to doughnuts, by the beloved blogger and resident bread baker at Food52 “Maurizio Leo has given all bread-heads, whether newbies or experienced bakers, the ideal gift.”—Peter Reinhart, author of The Bread Baker’s Apprentice and host of Pizza Quest ONE OF SAVEUR'S BEST COOKBOOKS OF THE YEAR Maurizio Leo’s blog The Perfect Loaf is the go-to destination on the internet for beginner sourdough bakers. He now brings his impeccably detailed techniques, foolproof recipes, and generous teaching style to a groundbreaking debut cookbook that delves into the absolute fundamentals of sourdough—plus the tools and confidence to explore beyond. Recipes cover flavorful, crowd-pleasing favorites: Essential freeform loaves: Simple Sourdough, Rosemary & Olive Oil, Extra-Sour Sourdough, Cranberry & Walnut, Demi Baguettes Pan loaves: Everyday Sandwich Bread, Naturally Leavened Brioche, German Whole Rye, Honey Whole Wheat Sandwich Bread Pizza and flatbread: Roman-Style Pan Pizza, Focaccia, Naan, Flour Tortillas, Pita Buns, rolls, and more: Soft Dinner Rolls, Potato Buns, Ciabatta Rolls, English Muffins, Bagels Sweets: Weekend Cinnamon Rolls, Italian Doughnuts, Summer Fruit Sourdough Crostata, Banana Bread, Cinnamon Babka Beginner bakers will have their hands held the entire way, with troubleshooting sections and numerous sidebars answering almost every question they may have—like how to store a sourdough starter long-term, how bakers’ percentages actually work, and a visual guide to common “bread fails” and how to remedy them. Seasoned bakers will relish deep dives into the science behind baking processes and expert information on how to build their “baker’s intuition” and level up by experimenting with hydration, ingredient ratios, freshly milled grains, and specialty flours. Whether you're new to bread baking or a pro, The Perfect Loaf will be your indispensable guide in the kitchen.
  cu boulder math building: Dialogue Across Difference Patricia Gurin, Biren (Ratnesh) A. Nagda, Ximena Zuniga, 2013-03-15 Due to continuing immigration and increasing racial and ethnic inclusiveness, higher education institutions in the United States are likely to grow ever more diverse in the 21st century. This shift holds both promise and peril: Increased inter-ethnic contact could lead to a more fruitful learning environment that encourages collaboration. On the other hand, social identity and on-campus diversity remain hotly contested issues that often raise intergroup tensions and inhibit discussion. How can we help diverse students learn from each other and gain the competencies they will need in an increasingly multicultural America? Dialogue Across Difference synthesizes three years’ worth of research from an innovative field experiment focused on improving intergroup understanding, relationships and collaboration. The result is a fascinating study of the potential of intergroup dialogue to improve relations across race and gender. First developed in the late 1980s, intergroup dialogues bring together an equal number of students from two different groups – such as people of color and white people, or women and men – to share their perspectives and learn from each other. To test the possible impact of such courses and to develop a standard of best practice, the authors of Dialogue Across Difference incorporated various theories of social psychology, higher education, communication studies and social work to design and implement a uniform curriculum in nine universities across the country. Unlike most studies on intergroup dialogue, this project employed random assignment to enroll more than 1,450 students in experimental and control groups, including in 26 dialogue courses and control groups on race and gender each. Students admitted to the dialogue courses learned about racial and gender inequalities through readings, role-play activities and personal reflections. The authors tracked students’ progress using a mixed-method approach, including longitudinal surveys, content analyses of student papers, interviews of students, and videotapes of sessions. The results are heartening: Over the course of a term, students who participated in intergroup dialogues developed more insight into how members of other groups perceive the world. They also became more thoughtful about the structural underpinnings of inequality, increased their motivation to bridge differences and intergroup empathy, and placed a greater value on diversity and collaborative action. The authors also note that the effects of such courses were evident on nearly all measures. While students did report an initial increase in negative emotions – a possible indication of the difficulty of openly addressing race and gender – that effect was no longer present a year after the course. Overall, the results are remarkably consistent and point to an optimistic conclusion: intergroup dialogue is more than mere talk. It fosters productive communication about and across differences in the service of greater collaboration for equity and justice. Ambitious and timely, Dialogue Across Difference presents a persuasive practical, theoretical and empirical account of the benefits of intergroup dialogue. The data and research presented in this volume offer a useful model for improving relations among different groups not just in the college setting but in the United States as well.
  cu boulder math building: Handbook of Research on Mathematics Teaching and Learning Douglas Grouws, 2006-11-01 Sponsored by the National Council of Teachers of Mathematics and written by leading experts in the field of mathematics education, the Handbook is specifically designed to make important, vital scholarship accessible to mathematics education professors, graduate students, educational researchers, staff development directors, curriculum supervisors, and teachers. The Handbook provides a framework for understanding the evolution of the mathematics education research field against the backdrop of well-established conceptual, historical, theoretical, and methodological perspectives. It is an indispensable working tool for everyone interested in pursuing research in mathematics education as the references for each of the Handbook's twenty-nine chapters are complete resources for both current and past work in that particular area.
  cu boulder math building: Building and Engineering News , 1923
  cu boulder math building: Fundamentals of Radar Imaging Margaret Cheney, Brett Borden, 2009-10-08 Provides mathematicians with the background they need to work in radar imaging. The focus is on showing the connection between the physics and the mathematics and on supplying an intuitive mathematical understanding of basic concepts. This book will be useful to graduate students and applied mathematicians working in radar imaging.
  cu boulder math building: Engineering World , 1919
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