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Titlebook: Relativistic Geodesy; Foundations and Appl Dirk Puetzfeld,Claus Lämmerzahl Book 2019 Springer Nature Switzerland AG 2019 Future space navig

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发表于 2025-3-21 16:43:04 | 显示全部楼层 |阅读模式
书目名称Relativistic Geodesy
副标题Foundations and Appl
编辑Dirk Puetzfeld,Claus Lämmerzahl
视频video
概述Up-to-date introduction and overview of current research.Balanced mix of theoretical and observational contributions?.Highlights the impact of choices at a fundamental theoretical level on the interpr
丛书名称Fundamental Theories of Physics
图书封面Titlebook: Relativistic Geodesy; Foundations and Appl Dirk Puetzfeld,Claus Lämmerzahl Book 2019 Springer Nature Switzerland AG 2019 Future space navig
描述.Due to steadily improving experimental accuracy, relativistic concepts – based on Einstein’s theory of Special and General Relativity – are playing an increasingly important role in modern geodesy. This book offers an introduction to the emerging field of relativistic geodesy, and covers topics ranging from the description of clocks and test bodies, to time and frequency measurements, to current and future observations. ..Emphasis is placed on geodetically relevant definitions and fundamental methods in the context of Einstein’s theory (e.g. the role of observers, use of clocks, definition of reference systems and the geoid, use of relativistic approximation schemes). Further, the applications discussed range from chronometric and gradiometric determinations of the gravitational field, to the latest (satellite) experiments. The impact of choices made at a fundamental theoretical level on the interpretation of measurements and the planning of future experiments is also highlighted. Providing an up-to-the-minute status report on the respective topics discussed, the book will not only benefit experts, but will also serve as a guide for students with a background in either geodesy or
出版日期Book 2019
关键词Future space navigation systems; Chronometric geodesy; Frame dragging; Post-Newtonain geodesy; Relativis
版次1
doihttps://doi.org/10.1007/978-3-030-11500-5
isbn_ebook978-3-030-11500-5Series ISSN 0168-1222 Series E-ISSN 2365-6425
issn_series 0168-1222
copyrightSpringer Nature Switzerland AG 2019
The information of publication is updating

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发表于 2025-3-21 21:55:11 | 显示全部楼层
Chronometric Geodesy: Methods and Applications,redshift effect discovered by Einstein must be taken into account when comparing the frequencies of distant clocks. However, instead of using our knowledge of the Earth’s gravitational field to predict frequency shifts between distant clocks, one can revert the problem and ask if the measurement of
发表于 2025-3-22 01:06:47 | 显示全部楼层
Measuring the Gravitational Field in General Relativity: From Deviation Equations and the Gravitatir, which represents the gravitational field in Einstein’s theory of General Relativity, can be obtained by means of two different methods. The first method relies on the measuring the accelerations of a suitably prepared set of test bodies relative to the observer. The second method utilizes a set o
发表于 2025-3-22 06:41:55 | 显示全部楼层
General Relativistic Gravity Gradiometry,, which is theoretically obtained via the projection of the spacetime curvature tensor upon the nonrotating orthonormal tetrad frame of a geodesic observer. The behavior of the measured components of the curvature tensor under Lorentz boosts is briefly described in connection with the existence of c
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Anholonomity in Pre-and Relativistic Geodesy,functions like (pseudo) orthonormal reference systems are differentiable forms being not classical functions. These differentiable forms are the basis of Elie Cartan’s “exterior calculus”. Geodetic examples are extensively reviewed in the context of the pre-and relativistic Geodesy.
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Use of Geodesy and Geophysics Measurements to Probe the Gravitational Interaction,ral Relativity as such is a classical theory and is therefore incomplete since it does not include any quantum effects. Moreover, most physicists agree that GR and the Standard Model are only effective field theories that are low-energy approximation of a more fundamental and more general theory tha
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Can Spacetime Curvature be Used in Future Navigation Systems?,freely falling test particles. To this end, we present a method to compute the metric from a given curvature tensor. We use Petrov’s classification to handle the structure and properties of the curvature tensor, and Cartan’s structure equations in an orthonormal tetrad to investigate the differentia
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