A Problem-Solving Workbook on Ionospheric and Space Physics
A Problem-Solving Workbook on Ionospheric and Space Physics
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- More about A Problem-Solving Workbook on Ionospheric and Space Physics
A Problem-Solving Workbook on Ionospheric and Space Physics is a textbook that contains a set of problems and exercises accompanied with complete solutions that explore and elucidate the most relevant concepts in ionospheric and space physics. It uses a problem-based approach to convey core concepts and includes multi-part questions to facilitate step-by-step understanding. The book covers topics such as remote sensing, Chapman theory, GPS TEC measurements, radar pulse compression, and more, and serves as a gateway for advanced students and early-career researchers towards actual research-level problems in the field.
Format: Paperback / softback
Length: 256 pages
Publication date: 09 January 2023
Publisher: John Wiley and Sons Ltd
A comprehensive Problem-Solving Workbook on Ionospheric and Space Physics is designed to empower students with a deep understanding and mastery of fundamental and advanced concepts related to space, atmosphere, and ionospheric physics. This unique textbook offers a rich collection of problems and exercises accompanied by comprehensive solutions, enabling readers to explore and comprehend the most crucial aspects of ionospheric and space physics.
The author has meticulously chosen problems that are both interesting in topic and challenging in nature, serving as excellent examples of the physical and mathematical reasoning employed in these fields. The text adopts a problem-based approach, presenting core concepts of ionospheric and space physics in a manner that is easily understandable and relatable. Each problem is accompanied by multi-part questions that guide readers through a step-by-step understanding of the subject matter.
A brief introduction precedes each problem, providing context and setting the stage for the subsequent discussion. Within the workbook, readers can expect to delve into a wide range of topics, including:
Remote sensing of ionospheric plasmas from the ground, including techniques such as ionospheric slab thickness measurement, reflectometry, and doppler effects in electromagnetic wave reflection/refraction.
Chapman theory of ionospheric layer formation, encompassing magnetic fields generated by the equatorial electrojet current, as well as the fundamentals of GPS total electron content (TEC) measurements.
Barker codes and radar pulse compression, exploring the use of these codes in radar scans and the compression of radar pulses.
Inversion of ionosonde trace data using Abel methods, as well as the analysis of phase and group velocities of acoustic-gravity waves.
Deconvolution in radar scans, discussing the application of this technique in separating target signals from clutter and background noise.
Sporadic-E layers and Kelvin-Helmholtz instability due to wind shear, examining the formation and dynamics of these layers in the ionosphere.
Brunt-Vaisala frequency, a fundamental parameter in atmospheric physics that describes the frequency of oscillation of the atmosphere.
The inclusion of a diverse range of topics ensures that readers gain a comprehensive understanding of ionospheric and space physics, equipping them with the necessary skills to apply their knowledge in real-world scenarios.
Thanks to the thoughtful selection of material, A Problem-Solving Workbook on Ionospheric and Space Physics serves as an invaluable resource for students, researchers, and professionals in the field. It provides a solid foundation for further exploration and advancement in these dynamic and interdisciplinary domains.
Weight: 370g
Dimension: 229 x 152 x 14 (mm)
ISBN-13: 9781119628880
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