OBLIQUE ELECTROMAGNETIC REFLECTION FROM LAYERED LUNAR MODELS BASED ON DATA FROM APOLLO 11 AND APOLLO 12 + SEISMIC VELOCITY MODELS OF THE LUNAR NEAR SURFACE AND THEIR IMPLICATIONS (Pamphlet)
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OBLIQUE ELECTROMAGNETIC REFLECTION FROM LAYERED LUNAR MODELS BASED ON DATA FROM APOLLO 11 AND APOLLO 12 + SEISMIC VELOCITY MODELS OF THE LUNAR NEAR SURFACE AND THEIR IMPLICATIONS (Pamphlet)

by Jiracek, G.R. & Ward, S.H. + Watkins, Joel S

Geophysics Space Science Scientific Paper
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Delve into oblique electromagnetic reflection from layered lunar models informed by Apollo 11 and 12 data. The pamphlet also covers seismic velocity models of the lunar near surface, exploring their implications for lunar structure and geology based on mission findings.

About This Book

This work by G.R. Jiracek, S.H. Ward, and Joel S. Watkins presents an analysis of oblique electromagnetic reflection using layered lunar models. The models are constructed based on data collected from Apollo 11 and Apollo 12 missions, providing insights into lunar subsurface properties.

The study integrates electromagnetic techniques to interpret reflection patterns, offering a detailed examination of how these patterns relate to the Moon's layered composition.

Additionally, the pamphlet addresses seismic velocity models of the lunar near surface. These models are developed to assess variations in seismic wave propagation close to the lunar surface.

The implications of these seismic models are discussed, highlighting their relevance to broader understandings of lunar geology and mission data interpretation.

Presented in pamphlet format, this research combines electromagnetic and seismic approaches for a comprehensive view of lunar near-surface characteristics.

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