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Symmetry and Spectroscopy: An Introduction to Vibrational and Electronic Spectroscopy
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Thyroid Eye Disease: Understanding Graves\' Ophthalmopathy
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Kalman Filtering: Theory and Practice Using MATLAB
This book provides readers with a solid introduction to the theoretical and practical aspects of Kalman filtering It has been updated with the latest developments in the implementation and application of Kalman filtering, including adaptations for nonlinear filtering, more robust smoothing methods, and developing applications in navigation. All software is provided in MATLAB, giving readers the opportunity to discover how the Kalman filter works in action and to consider the practical arithmetic needed to preserve the accuracy of results..
Price: $83.45
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Orbital Mechanics: For Engineering Students (Aerospace Engineering)
Orbital mechanics is a cornerstone subject for aerospace engineering students However, with its basis in classical physics and mechanics, it can be a difficult and weighty subject. Howard Curtis - Professor of Aerospace Engineering at Embry-Riddle University, the US's #1 rated undergraduate aerospace school - focuses on what students at undergraduate and taught masters level really need to know in this hugely valuable text. Fully supported by the analytical features and computer based tools required by today's students, it brings a fresh, modern, accessible approach to teaching and learning orbital mechanics. A truly essential new resource. * A complete, stand-alone text for this core aerospace engineering subject * Richly-detailed, up-to-date curriculum coverage; clearly and logically developed to meet the needs of students * Highly illustrated and fully supported with downloadable MATLAB algorithms for project and practical work; with fully worked examples throughout, Q&A material, extensive homework exercises and an Instructor's Manual..
Price: $69.99
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Orbital Mechanics
One of the major challenges of modern space mission design is the orbital mechanics -- determining how to get a spacecraft to its destination using a limited amount of propellant. Recent missions such as Voyager and Galileo required gravity assist maneuvers at several planets to accomplish their objectives. Today's students of aerospace engineering face the challenge of calculating these types of complex spacecraft trajectories. This classroom-tested textbook takes its title from an elective course which has been taught to senior undergraduates and first-year graduate students for the past 22 years. The subject of orbital mechanics is developed starting from the first principles, using Newton's laws of motion and the law of gravitation to prove Kepler's empirical laws of planetary motion. Unlike many texts the authors also use first principles to derive other important results including Kepler's equation, Lambert's time-of-flight equation, the rocket equation, the Hill-Clohessy-Wiltshire equations of relative motion, Gauss' equations for the variation of the elements, and the Gauss and Laplace methods of orbit determination. The subject of orbit transfer receives special attention. Optimal orbit transfers such as the Hohmann transfer, minimum-fuel transfers using more than two impulses, and non-coplanar orbital transfer are discussed. Patched-conic interplanetary trajectories including gravity-assist maneuvers are the subject of an entire chapter and are particularly relevant to modern space missions..
Price: $67.97
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Frontier Orbitals and Organic Chemical Reactions
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Gemini Steps to the Moon
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Problems in Molecular Orbital Theory
This supplementary problems book, to be used in conjunction with a molecular orbital theory textbook at the senior, first-year graduate level in chemistry courses, is written by leading authorities in molecular orbital theory research and teaching. The text will be useful for courses in advanced inorganic, physical organic, and group theory. Because many different compounds are presented, the instructor can develop a "personalized course" by selecting problems from a variety of research interests. Carefully worked out solutions, including a large number of informal diagrams, are provided for all questions and problems. In addition to its practical use for courses, this textbook will also be of interest to individual chemists who want to upgrade their knowledge of molecular orbital theory..
Price: $38.41
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Statistical Orbit Determination
This book presents fundmentals of orbit determination--from weighted least squares approaches (Gauss) to today's high-speed computer algorithms that provide accuracy within a few centimeters. Numerous examples and problems are provided to enhance readers' understanding of the material. *Covers such topics as coordinate and time systems, square root filters, process noise techniques, and the use of fictitious parameters for absorbing un-modeled and incorrectly modeled forces acting on a satellite. *Examples and exercises serve to illustrate the principles throughout each chapter. *Detailed solutions to end-of-chapter exercises available to instructors..
Price: $77.56
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Valency and Bonding: A Natural Bond Orbital Donor-Acceptor Perspective
This textbook develops the foundations of Lewis- and Pauling-like localized structural and hybridization concepts to present the first modernized overview of chemical valency and bonding theory. Directly based on current computational technology, it serves as both a general textbook exposition of modern Lewis, hybridization, and resonance concepts and a comprehensive compilation of NBO-based bonding descriptors--for prototype molecular and supramolecular organic and inorganic species..
Price: $104.00
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