Vectors And Tensors In Engineering And Physics: Second Edition

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9780813340807: Vectors And Tensors In Engineering And Physics: Second Edition
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Vectors and Tensors in Engineering and Physics develops the calculus of tensor fields and uses this mathematics to model the physical world. This new edition includes expanded derivations and solutions, and new applications. The book provides equations for predicting: the rotations of gyroscopes and other axisymmetric solids, derived from Euler's equations for the motion of rigid bodies; the temperature decays in quenched forgings, derived from the heat equation; the deformed shapes of twisted rods and bent beams, derived from the Navier equations of elasticity; the flow fields in cylindrical pipes, derived from the Navier-Stokes equations of fluid mechanics; the trajectories of celestial objects, derived from both Newton's and Einstein's theories of gravitation; the electromagnetic fields of stationary and moving charged particles, derived from Maxwell's equations; the stress in the skin when it is stretched, derived from the mechanics of curved membranes; the effects of motion and gravitation upon the times of clocks, derived from the special and general theories of relativity. The book also features over 100 illustrations, complete solutions to over 400 examples and problems, Cartesian components, general components, and components-free notations, lists of notations used by other authors, boxes to highlight key equations, historical notes, and an extensive bibliography.

About the Author:

D. A. Danielson received a B.S. degr ee in mathematics from the Massachusetts Institute of Technology and the M.S./Ph.D. degrees in appli ed mathematics from Harvard University. He has bee n a professor at the University of Virginia, the U niversity of California, San Diego, and the Naval Postgraduate School. His research interests curren tly include buckling/vibration of structures and o rbits of satellites.

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Descripción The Perseus Books Group, United States, 2003. Paperback. Estado de conservación: New. 2nd New edition of Revised edition. 226 x 152 mm. Language: English . Brand New Book ***** Print on Demand *****. Vectors and Tensors in Engineering and Physics develops the calculus of tensor fields and uses this mathematics to model the physical world. This new edition includes expanded derivations and solutions, and new applications. The book provides equations for predicting: the rotations of gyroscopes and other axisymmetric solids, derived from Euler s equations for the motion of rigid bodies; the temperature decays in quenched forgings, derived from the heat equation; the deformed shapes of twisted rods and bent beams, derived from the Navier equations of elasticity; the flow fields in cylindrical pipes, derived from the Navier-Stokes equations of fluid mechanics; the trajectories of celestial objects, derived from both Newton s and Einstein s theories of gravitation; the electromagnetic fields of stationary and moving charged particles, derived from Maxwell s equations; the stress in the skin when it is stretched, derived from the mechanics of curved membranes; the effects of motion and gravitation upon the times of clocks, derived from the special and general theories of relativity. The book also features over 100 illustrations, complete solutions to over 400 examples and problems, Cartesian components, general components, and components-free notations, lists of notations used by other authors, boxes to highlight key equations, historical notes, and an extensive bibliography. Nº de ref. de la librería APC9780813340807

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Danielson, Donald
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Descripción The Perseus Books Group, United States, 2003. Paperback. Estado de conservación: New. 2nd New edition of Revised edition. 226 x 152 mm. Language: English . Brand New Book ***** Print on Demand *****.Vectors and Tensors in Engineering and Physics develops the calculus of tensor fields and uses this mathematics to model the physical world. This new edition includes expanded derivations and solutions, and new applications. The book provides equations for predicting: the rotations of gyroscopes and other axisymmetric solids, derived from Euler s equations for the motion of rigid bodies; the temperature decays in quenched forgings, derived from the heat equation; the deformed shapes of twisted rods and bent beams, derived from the Navier equations of elasticity; the flow fields in cylindrical pipes, derived from the Navier-Stokes equations of fluid mechanics; the trajectories of celestial objects, derived from both Newton s and Einstein s theories of gravitation; the electromagnetic fields of stationary and moving charged particles, derived from Maxwell s equations; the stress in the skin when it is stretched, derived from the mechanics of curved membranes; the effects of motion and gravitation upon the times of clocks, derived from the special and general theories of relativity. The book also features over 100 illustrations, complete solutions to over 400 examples and problems, Cartesian components, general components, and components-free notations, lists of notations used by other authors, boxes to highlight key equations, historical notes, and an extensive bibliography. Nº de ref. de la librería APC9780813340807

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Descripción Westview Pr, 2003. Paperback. Estado de conservación: Brand New. 2nd reprint edition. 288 pages. 9.00x6.25x0.75 inches. In Stock. Nº de ref. de la librería __0813340802

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Descripción Westview Press, 2003. Estado de conservación: New. Brand New, Unread Copy in Perfect Condition. A+ Customer Service! Summary: Vectors and Tensors in Engineering and Physics develops the calculus of tensor fields and uses this mathematics to model the physical world. This new edition includes expanded derivations and solutio. Nº de ref. de la librería ABE_book_new_0813340802

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Descripción Westview Press. Paperback. Estado de conservación: New. Paperback. 288 pages. Dimensions: 8.9in. x 6.0in. x 0.8in.Vectors and Tensors in Engineering and Physics develops the calculus of tensor fields and uses this mathematics to model the physical world. This new edition includes expanded derivations and solutions, and new applications. The book provides equations for predicting: the rotations of gyroscopes and other axisymmetric solids, derived from Eulers equations for the motion of rigid bodies; the temperature decays in quenched forgings, derived from the heat equation; the deformed shapes of twisted rods and bent beams, derived from the Navier equations of elasticity; the flow fields in cylindrical pipes, derived from the Navier-Stokes equations of fluid mechanics; the trajectories of celestial objects, derived from both Newtons and Einsteins theories of gravitation; the electromagnetic fields of stationary and moving charged particles, derived from Maxwells equations; the stress in the skin when it is stretched, derived from the mechanics of curved membranes; the effects of motion and gravitation upon the times of clocks, derived from the special and general theories of relativity. The book also features over 100 illustrations, complete solutions to over 400 examples and problems, Cartesian components, general components, and components-free notations, lists of notations used by other authors, boxes to highlight key equations, historical notes, and an extensive bibliography. This item ships from multiple locations. Your book may arrive from Roseburg,OR, La Vergne,TN. Paperback. Nº de ref. de la librería 9780813340807

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