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great mechanical engineers in history: Creativity for Engineers Balbir S. Dhillon, 2006 7. Creativity measurement and analysis. 7.1. Introduction. 7.2. Metrics for determining innovative companies' performance. 7.3. A formula for predicting creative ideas. 7.4. Fault tree analysis (FTA). 7.5. Control charts. 7.6. Cause and effect diagram. 7.7. Probability tree analysis. 7.8. Creativity improvement with parallel redundancy. 7.9. Time-dependent creativity analysis with Markov method -- 8. Creativity climate. 8.1. Introduction. 8.2. Variables influencing peoples' perception of the working climate, examples of changes in the total environment influencing innovation, and key reasons for organizations to foster creativity and innovation. 8.3. Organization's creative culture attributes. 8.4. Creative climate dimensions and creative work environment determinents. 8.5. Steps for fostering creative environment in companies and guidelines for managing team members that foster creative work climate. 8.6. Tips for facilitating in a cold organizational climate with respect to creativity. 8.7. Workplace creativity climate assessment checklist -- 9. Creativity barriers. 9.1. Introduction. 9.2. Reasons for resistance to change in organizations and the types of organizations finding creativity most difficult. 9.3. Obstacles to innovation in large organizations and their overcoming steps. 9.4. Management barriers to creativity and reasons for prevention of innovation in mass-produced products. 9.5. Ways for managers to kill creativity and ways used by technical managers to block creative ideas. 9.6. Stumbling blocks and building blocks to creativity. 9.7. Types of barriers to an individual's creative thinking and suggestions for overcoming them. 9.8. Creativity inhibitors an engineer may encounter while inquiring into and solving the problem. 9.9. Barriers to creativity in textile industry -- 10. Creativity in quality management, software development process, rail transit stations, and specific organizations. 10.1. Introduction. 10.2. Creativity in quality management. 10.3. Creativity in software development process. 10.4. Creativity in rail transit stations. 10.5. Creativity in specific organizations -- 11. Creativity testing, recording, and patents. 11.1. Introduction. 11.2. Creativity testing. 11.3. Creativity recording. 11.4. Patents |
great mechanical engineers in history: A History of Mechanical Engineering Aubrey Frederic Burstall, 1963 |
great mechanical engineers in history: A History of the American Society of Mechanical Engineers from 1880 to 1915 Frederick Remsen Hutton, 1915 |
great mechanical engineers in history: Industrial Biography Samuel Smiles, 1864 |
great mechanical engineers in history: History of Strength of Materials Stephen Timoshenko, 1983-01-01 Strength of materials is that branch of engineering concerned with the deformation and disruption of solids when forces other than changes in position or equilibrium are acting upon them. The development of our understanding of the strength of materials has enabled engineers to establish the forces which can safely be imposed on structure or components, or to choose materials appropriate to the necessary dimensions of structures and components which have to withstand given loads without suffering effects deleterious to their proper functioning. This excellent historical survey of the strength of materials with many references to the theories of elasticity and structures is based on an extensive series of lectures delivered by the author at Stanford University, Palo Alto, California. Timoshenko explores the early roots of the discipline from the great monuments and pyramids of ancient Egypt through the temples, roads, and fortifications of ancient Greece and Rome. The author fixes the formal beginning of the modern science of the strength of materials with the publications of Galileo's book, Two Sciences, and traces the rise and development as well as industrial and commercial applications of the fledgling science from the seventeenth century through the twentieth century. Timoshenko fleshes out the bare bones of mathematical theory with lucid demonstrations of important equations and brief biographies of highly influential mathematicians, including: Euler, Lagrange, Navier, Thomas Young, Saint-Venant, Franz Neumann, Maxwell, Kelvin, Rayleigh, Klein, Prandtl, and many others. These theories, equations, and biographies are further enhanced by clear discussions of the development of engineering and engineering education in Italy, France, Germany, England, and elsewhere. 245 figures. |
great mechanical engineers in history: The Miner's Friend; Or, an Engine to Raise Water by Fire, Described Thomas Savery, 2022-10-27 This work has been selected by scholars as being culturally important, and is part of the knowledge base of civilization as we know it. This work is in the public domain in the United States of America, and possibly other nations. Within the United States, you may freely copy and distribute this work, as no entity (individual or corporate) has a copyright on the body of the work. Scholars believe, and we concur, that this work is important enough to be preserved, reproduced, and made generally available to the public. We appreciate your support of the preservation process, and thank you for being an important part of keeping this knowledge alive and relevant. |
great mechanical engineers in history: Engineer This 2 Carol McBride, Francisco L. Gonzales, 2018-04 Turn trash into invention and sharpen your engineering eye with these 10 hands-on engineering projects. Using recycled and easy-to-find materials, engineer your own hydro rocket, propeller boat, Ferris wheel, and other completely functional machines. Explore amazing scientific concepts, such as potential, kinetic, and electrical energy; principles of flight; weights and balances; pulleys and levers; laws of motion; and more. Each project includes step-by-step instructions, full-color photos, exciting facts, safety tips, and extended engineering and science activities for further discovery. |
great mechanical engineers in history: Engineers Matthew Wells, 2010-03-04 Describes and illustrates engineering design and what conditions, events, cultural influences and personalities have brought it to its present state. For professional and student architects and engineers. |
great mechanical engineers in history: Landmarks in Mechanical Engineering , 1997 Machines, devices, and systems that have touched our lives, both intimately and for the public good, are often unheralded inventions that we take for granted or never even see. Fortunately, they claim landmark recognition by the American Society of Mechanical Engineers, which now makes these engineering marvels accessible to teachers and students, travelers, researchers, and the curious. The 135 historic mechanical engineering landmarks in this book represent the accomplishments of mechanical engineers over the past 250 years - from the steam engine of Thomas Newcomen (1712), which launched the Industrial Revolution, to the Saturn V rocket (1967). This roster of landmarks tells a magnificent story of people and places and of innovation and discovery. |
great mechanical engineers in history: The Making of History's Greatest Star Map Michael Perryman, 2010-03-20 From prehistoric times, mankind has looked up at the night sky, and puzzled at the changing positions of the stars. How far away they are is a question that has confounded scientists for centuries. Over the last few hundred years, many scientific careers – and considerable resources – have been devoted to measuring their positions and motions with ever increasing accuracy. And in the last two decades of the 20th century, the European Space Agency developed and launched the Hipparcos satellite, around which this account revolves, to carry out these exacting measurements from space. What has prompted these remarkable developments? Why have governments been persuaded to fund them? What are scientists learning from astronomy's equivalent of the Human Genome Project? This book traces the subject's history, explains why such enormous efforts are considered worthwhile, and interweaves these with a first-hand insight into the Hipparcos project, and how big science is conducted at an international level. The involvement of amateur astronomers, and the Hipparcos contributions to climate research, ‘death stars' passing close to the Sun, and the search for extra-solar planets and even intelligent life itself, are some of the surprising facets of this unusual space mission. |
great mechanical engineers in history: Transactions of the American Society of Mechanical Engineers American Society of Mechanical Engineers, 1919 Vols. 2, 4-11, 62-68 include the Society's Membership list; v. 55-80 include the Journal of applied mechanics (also issued separately) as contributions from the Society's Applied Mechanics Division. |
great mechanical engineers in history: Rules of Thumb for Mechanical Engineers J. Edward Pope, 1996-12-09 Save time with this collection of straightforward, common-sense techniques that provide quick, accurate solutions to your engineering problems. Rules of Thumb for Mechanical Engineers assembles hundreds of shortcuts, calculations, practical how-to methods, and concise background reviews into one convenient volume. Whether you're concerned with design, selection, or performance, you'll find fast, accurate answers here - all without wading through pages of theory. Experts from all engineering disciplines have packed this book's sixteen chapters with design criteria and practical tips. You'll find easy-to-read descriptions on fluids, heat transfer, thermodynamics, seals, pumps, and compressors, drivers, gears, and bearings, as well as piping and pressure vessels. Also covers tribology, vibrations, materials, stress and fatigue, instrumentation, and engineering economics.* Save time with this collection of straightforward, common-sense techniques that provide quick, accurate solutions to your engineering problems. * Hundreds of shortcuts, calculations and practical how-to methods in one convenient volume. * Fast, accurate answers to design, selection, or performance issues. |
great mechanical engineers in history: Ancient Engineers' Inventions Cesare Rossi, Flavio Russo, Ferruccio Russo, 2009-03-13 We live in an age in which one can easily think that our generation has invented and discovered almost everything; but the truth is quite the opposite. Progress cannot be considered as sudden unexpected spurts of individual brains: such a genius, the inventor of everything, has never existed in the history of humanity. What did exist was a limitless procession of experiments made by men who did not waver when faced with defeat, but were inspired by the rare successes that have led to our modern comfortable reality. And that continue to do so with the same enthusiasm. The study of the History of Engineering is valuable for many reasons, not the least of which is the fact that it can help us to understand the genius of the scientists, engineers and craftsmen who existed centuries and millenniums before us; who solved problems using the devices of their era, making machinery and equipment whose concept is of such a surprising modernity that we must rethink our image of the past. |
great mechanical engineers in history: The Engines of Our Ingenuity John H. Lienhard, 2003-04-10 This book explores the nature of creativity in engineering and technology, and how it relates to creativity in art or science. Lienhard has for ten years done a twice-weekly radio show, carried on about 35 NPR stations, consisting of 3-minute essays on technology. He uses the substance of selected segments of his radio program to create a continuous narrative presenting his insights on technological creativity. This book has the same title as his radio program, to further draw the attention of his one million listeners. |
great mechanical engineers in history: Biographical Dictionary of the History of Technology Lance Day, Ian McNeil, 2002-09-11 This Biographical Dictionary seeks to put the world of technology in the context of those who have made the most important contribution to it. For the first time information has been gathered on the people who have made the most significant advances in technology. From ancient times to the present day, the major inventors, discoverers and entrepreneurs from around the world are profiled, and their contribution to society explained and assessed. Structure The Dictionary presents descriptive and analytical biographies of its subjects in alphabetical order for ease of reference. Each entry provides detailed information on the individual's life, work and relevance to their particular field. * in the first part of the entry, the information will include the dates and places of the subject's birth and death, together with their nationality and their field of activity * in the main body of the entry there follows an account of their principal achievements and their significance in the history of technology, along with full details of appointments and honours * finally an annotated bibliography will direct the reader to the subject's principal writings and publications and to the most important secondary works which the reader can consult for further information. Special Features: * The first work in existence to examine technologists in detail * Contains over 1,500 entries giving detailed information * Extensive cross-references enable the reader to compare subjects and build up a picture of technological advance^ * Figures drawn from fields such as Aeronautics, Telecommunications, Architecture, Photography and Textiles |
great mechanical engineers in history: Changing the Face of Engineering John Brooks Slaughter, Yu Tao, Willie Pearson Jr., 2015-12-15 How can academic institutions, corporations, and policymakers foster African American participation and advancement in engineering? For much of America’s history, African Americans were discouraged or aggressively prevented from becoming scientists and engineers. Those who did enter STEM fields found that their inventions and discoveries were often neither recognized nor valued. Even today, particularly in the field of engineering, the participation of African American men and women is shockingly low, and some evidence indicates that the situation might be getting worse. In Changing the Face of Engineering, twenty-four eminent scholars address the underrepresentation of African Americans in engineering from a wide variety of disciplinary and professional perspectives while proposing workable classroom solutions and public policy initiatives. They combine robust statistical analyses with personal narratives of African American engineers and STEM instructors who, by taking evidenced-based approaches, have found success in graduating African American engineers. Changing the Face of Engineering argues that the continued underrepresentation of African Americans in engineering impairs the ability of the United States to compete successfully in the global marketplace. This volume will be of interest to STEM scholars and students, as well as policymakers, corporations, and higher education institutions. |
great mechanical engineers in history: To Engineer is Human Henry Petroski, 2018-10-16 “Though ours is an age of high technology, the essence of what engineering is and what engineers do is not common knowledge. Even the most elementary of principles upon which great bridges, jumbo jets, or super computers are built are alien concepts to many. This is so in part because engineering as a human endeavor is not yet integrated into our culture and intellectual tradition. And while educators are currently wrestling with the problem of introducing technology into conventional academic curricula, thus better preparing today’s students for life in a world increasingly technological, there is as yet no consensus as to how technological literacy can best be achieved. I believe, and I argue in this essay, that the ideas of engineering are in fact in our bones and part of our human nature and experience. Furthermore, I believe that an understanding and an appreciation of engineers and engineering can be gotten without an engineering or technical education. Thus I hope that the technologically uninitiated will come to read what I have written as an introduction to technology. Indeed, this book is my answer to the questions 'What is engineering?' and 'What do engineers do?' - Henry Petroski, To Engineer is Human |
great mechanical engineers in history: The Mechanical Engineer William Henry Fowler, 1911 |
great mechanical engineers in history: Engineering Rules JoAnne Yates, Craig N. Murphy, 2019-06-11 The first global history of voluntary consensus standard setting. Finalist, Hagley Prize in Business History, The Hagley Museum and Library / The Business History Conference Private, voluntary standards shape almost everything we use, from screw threads to shipping containers to e-readers. They have been critical to every major change in the world economy for more than a century, including the rise of global manufacturing and the ubiquity of the internet. In Engineering Rules, JoAnne Yates and Craig N. Murphy trace the standard-setting system's evolution through time, revealing a process with an astonishingly pervasive, if rarely noticed, impact on all of our lives. This type of standard setting was established in the 1880s, when engineers aimed to prove their status as professionals by creating useful standards that would be widely adopted by manufacturers while satisfying corporate customers. Yates and Murphy explain how these engineers' processes provided a timely way to set desirable standards that would have taken much longer to emerge from the market and that governments were rarely willing to set. By the 1920s, the standardizers began to think of themselves as critical to global prosperity and world peace. After World War II, standardizers transcended Cold War divisions to create standards that made the global economy possible. Finally, Yates and Murphy reveal how, since 1990, a new generation of standardizers has focused on supporting the internet and web while applying the same standard-setting process to regulate the potential social and environmental harms of the increasingly global economy. Drawing on archival materials from three continents, Yates and Murphy describe the positive ideals that sparked the standardization movement, the ways its leaders tried to realize those ideals, and the challenges the movement faces today. Engineering Rules is a riveting global history of the people, processes, and organizations that created and maintain this nearly invisible infrastructure of today's economy, which is just as important as the state or the global market. |
great mechanical engineers in history: Standard Handbook for Mechanical Engineers , 1923 |
great mechanical engineers in history: Journal of the American Society of Mechanical Engineers , 1908 |
great mechanical engineers in history: Chronicles of Mechanical Engineering in the United States Thomas H. Fehring, Terry S. Reynolds, 2021-06 One of the leading contributors of historical articles to ME over the past fifty years was Fritz Hirschfeld. In preparation for the United States' bicentennial year in 1976, the editors of Mechanical Engineering contracted with engineer-historian Hirschfeld for a series of articles on the county's early engineering history. Just a few years later, as the Society was nearing its centennial in 1880, the editors again turned to Hirschfeld and asked him to write a series of articles about the founding of ASME and important early mechanical engineers. Hirschfeld's articles, collected here, provide the foundation for the early portion of this volume. Building upon Hirschfeld's foundation, we selected a wide assortment of other articles about aspects of mechanical engineering history in the United States from the Revolutionary War until recent times. We largely limited our selections to those articles published in Mechanical Engineering magazine during the last fifty years (i.e., 1971-2021). Even for this period, the volume does not include all such articles due to limitations in length and editorial judgments. For instance, some articles duplicated coverage of specific events or innovations. In such cases we picked what we deemed the best, or most comprehensive of overlapping articles. We also decided to focus this volume on the history of mechanical engineering in America. We thus excluded articles on historical developments largely occurring outside the United States. At some future time, we may harvest both pre-1971 ME articles and unselected post-1971 articles, as well as articles focusing on non-American mechanical engineering achievements, for a separate collection or collections. Of the more than seventy articles collected in this volume, well over ninety per cent were drawn from issues of ME published during the past fifty years. Five pieces, however, were drawn from outside that chronological limit or from other sources. We have, for example, included a 1933 biographical article from ME about American engineer George H. Corliss. Corliss's innovations in the design and manufacture of steam engines and related devices helped establish the United States as a major player in the manufacture of prime movers. Corliss was considered by his contemporaries to be such a significant figure in mechanical engineering circles in the United States that we elected to include him. He was, after all, asked to serve as the first president of ASME-an offer which he declined. A second exception is another biographical article, one on Edwin Reynolds, a significant steam engine designer. It was authored by Thomas Fehring, one of the editors of this volume. Reynolds worked for a time for the Corliss Steam Engine Company, as did other notable American engineers such as Erasmus Darwin Leavitt (second president of ASME) and Alexander L. Holley (one of the founders of the Society), before moving to Allis-Chalmers. Reynolds made significant improvements in steam engine design. He was president of ASME in 1902-03, and three of his steam engines have been designated as Historic Mechanical Engineering Landmarks by the Society. |
great mechanical engineers in history: Journal of the American Society of Mechanical Engineers American Society of Mechanical Engineers, 1916 |
great mechanical engineers in history: A History of the City of Buffalo and Niagara Falls John Devoy, 2022-08-03 This volume is the result of an earnest and conscientious effort to present in concise form a full history of Buffalo, Niagara Falls, and adjacent territory in Erie Conuty, containing an account of every event of importance from earliest times to the first years of the twentieth century. The compiler of this fantastic book has aimed to make the history complete and valuable as a book of reference. |
great mechanical engineers in history: Triggering the Memories Dr. L. Jordan Jackson, 2012-05-21 The author depicts a broad journey search for her ancestors that led her search to Argentina, West Africa, America's slave, Jamaica, and the United States Indian Choctaw Indians Reservation and the signing of Emancipation Proclamation. It reveals a story about how her father's parents left Argentina to come to the United States to make a better life but were horribly treated because of their enthnicity, with acute present-day racism taking on a pathological dimension, and where her father took on a life of crime in order to survive as a child in a racist society but turned his life around for the sake of his children. This book gives details of the life of her mother's family escape from slavery to jamaica and their struggles after their return as free men back to America. Her life is told as she grew up on one street in Greenville, Mississippi, where she attended a segregated school, graduated, and left the state of Mississippi to find nothing more than racism at many levels of life. This is a story that is published as nonfiction because of the secrecy that lies in the heart of white America and because of its depressive mentality when it comes to persons of color, free or bound. Throughout the book, the author expresses her joy and disappointments while negotiating through a racist education system while earning degrees in higher education as well as in the workplace of the Unites States. She emphasized her perseverance as a university student, elementary education schoolteacher, principal, and college and university professor in higher education, where she found that life comes in all phases, grounded in human triumph without integrity for many. |
great mechanical engineers in history: Aerospace Engineer Aprille Ericsson Laura Hamilton Waxman, 2015-01-01 Have you ever built a cool science project? In middle school, Aprille Ericsson won second place in a science fair. She knew she wanted to keep creating amazing science projects. As an adult, she became an engineer and works at NASA building spacecraft. Ericsson was one of the few girls in her middle school who loved math and science. Years later, she became the first woman to receive a PhD in mechanical engineering from Howard University. At NASA, she's helped build spacecraft that can map the moon, monitor climate change, or even bring soil and rocks back from Mars. Learn how Ericsson's passion for science has helped her pave the way for future engineers. |
great mechanical engineers in history: Journal of the Transvaal Institute of Mechanical Engineers South African Institution of Engineers, 1916 |
great mechanical engineers in history: Illustrated Sourcebook of Mechanical Components Robert O. Parmley, 2000-05-18 With illustrations, this book offers a compendium of the most frequently used mechanical components, represented graphically. It provides the most commonly used design formulas as well as additional structural data, and is useful for an engineer. |
great mechanical engineers in history: Cassell's Illustrated History of England , 1857 |
great mechanical engineers in history: John Cassell's Illustrated History of England John Frederick Smith, 1863 |
great mechanical engineers in history: The Engineer , 1858 |
great mechanical engineers in history: A Short History of the Steam Engine H. W . Dickinson, 2022-01-26 First published in 1938, this volume details the steam engine as the most dynamic factor in the Industrial Revolution, freeing humanity from their age-long dependence upon the power of water, wind, and animals, or of their own muscles. Itself the offspring of coal and iron, it made possible the sinking of deeper mines and the casting and forging of greater quantities of iron, from which machines were constructed to be powered by steam in the factories of the rapidly growing industrial areas. Soon the mass-produced goods from these mills were transported by steam locomotives and steamships all over the world. This was the Age of Steam. Even today, steam turbines still drive the dynamos of our electric power stations, whether fuelled by coal, oil or nuclear energy. Much has been written about the steam engine, but this book, first produced by the late Dr. H.W. Dickinson just before the second World War, is still the best short account. It describes developments from the pioneering efforts of Savery and Newcomen, through the achievements of Watt and Trevethick, down to Parsons and modern times. |
great mechanical engineers in history: The Ancient Engineers L. Sprague De Camp, 1990 Describes methods used by early irrigators, architects, and military engineers to build and maintain structures to serve their ruler's wants. |
great mechanical engineers in history: The Locomotive, Railway Carriage & Wagon Review , 1923 |
great mechanical engineers in history: Locomotive Railway Carriage and Wagon Review , 1923 |
great mechanical engineers in history: Journal of the South African Institution of Mechanical Engineers , 1951-08 |
great mechanical engineers in history: John Cassell's illustrated history of England. The text, to the reign of Edward i by J.F. Smith; and from that period by W. Howitt Cassell, ltd, 1865 |
great mechanical engineers in history: Proceedings of the American Society of Mechanical Engineers American Society of Mechanical Engineers, 1908 |
great mechanical engineers in history: Mechanical Engineering American Society of Mechanical Engineers, 1920 History of the American society of mechanical engineers. Preliminary report of the committee on Society history, issued from time to time, beginning with v. 30, Feb. 1908. |
great mechanical engineers in history: The Biographical Encyclopædia of Pennsylvania, of the Nineteenth Century , 1874 |
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