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Related papers: Soil Test Apparatus for Lunar Surfaces

200 papers

This manuscript analyzes lunar lander soil erosion models and trajectory models to calculate how much damage will occur to spacecraft orbiting in the vicinity of the Moon. The soil erosion models have considerable uncertainty due to gaps in…

Earth and Planetary Astrophysics · Physics 2023-05-23 Philip T. Metzger , James G. Mantovani

Shear strength and cohesion of granular materials are important geotechnical properties that play a crucial role in the stability and behavior of lunar and Martian regolith, as well as their terrestrial analog materials. To characterize and…

Space Physics · Physics 2024-03-19 B. Dotson , D. Sanchez Valencia , C. Millwater , P. Easter , J. Long-Fox , D. Britt , P. Metzger

In the last decade, the role of shearing loads has been increasingly suspected to play a determinant impact in the formation of deep pressure ulcers. In vivo observations of such deformations are complex to obtain. Previous studies only…

Medical Physics · Physics 2021-11-16 Alessio Trebbi , Antoine Perrier , Mathieu Bailet , Yohan Payan

Permanently Shadowed Regions (PSRs) near the lunar poles are of interest for future exploration due to their potential to contain water ice and preserve geological records. Their complex, uneven terrain favors the use of legged robots,…

The Earth, Mars, Sun, Jupiter system allows for a sensitive test of the strong equivalence principle (SEP) which is qualitatively different from that provided by Lunar Laser Ranging. Using analytic and numerical methods we demonstrate that…

General Relativity and Quantum Cosmology · Physics 2008-11-26 John D. Anderson , Mark Gross , Kenneth L. Nordtvedt , Slava G. Turyshev

The increasing development of the solar energy industry in many countries has led to a rising frequency of human and robot presence in this area. To ensure occupational safety, various protective equipment, including rubber material, is…

Instrumentation and Detectors · Physics 2023-06-21 Anh Duy Hoang Ngoc , Cong Toai Truong , Minh Tri Nguyen , An Nguyen Danh , Van Tu Duong , Huy Hung Nguyen , Tan Tien Nguyen

In this paper, we assess the scientific promise and technology feasibility of distributed instruments for planetary science. A distributed instrument is an instrument designed to collect spatially and temporally correlated data from…

The determination of the mechanical properties of soils containing particles larger than the allowable size of standard laboratory equipments is complex. It is indeed necessary to remove the coarsest fraction to carry out the tests. This…

The Lunar Cherenkov technique is a promising method for UHE neutrino and cosmic ray detection which aims to detect nanosecond radio pulses produced during particle interactions in the Lunar regolith. For low frequency experiments, such as…

Instrumentation and Methods for Astrophysics · Physics 2015-06-16 Rebecca McFadden , Olaf Scholten , Maaijke Mevius

It has been recently recognized that the surface of sub-km asteroids in contact with the space environment is not fine-grained regolith but consists of centimeter to meter-scale rocks. Here we aim to understand how the rocky morphology of…

Earth and Planetary Astrophysics · Physics 2023-01-20 O. Ruesch , V. T. Bickel

The first Indian lunar mission Chandrayaan-1 was launched on 22 October 2008. The Sub-keV Atom Reflecting Analyzer (SARA) instrument onboard Chandrayaan-1 consists of an energetic neutral atom (ENA) imaging mass analyzer called CENA…

NASA has developed a "Figure of Merit" method to grade the fidelity of lunar simulants for scientific and engineering purposes. Here we extend the method to grade asteroid simulants, both regolith and cobble variety, and we apply the method…

Widespread Pb (lead) contamination of urban soil significantly impacts food safety and public health and hinders city greening efforts. However, most existing technologies for measuring Pb are labor-intensive and costly. In this study, we…

Emerging Technologies · Computer Science 2025-12-19 Yixuan Gao , Tanvir Ahmed , Mikhail Mohammed , Zhongqi Cheng , Rajalakshmi Nandakumar

We describe a surface force apparatus designed to probe the rheology of a nanoconfined medium under large shear amplitudes (up to 500 $\mu$m). The instrument can be operated in closed-loop, controlling either the applied normal load or the…

Soft Condensed Matter · Physics 2011-11-09 Lionel Bureau

Lunar laser ranging (LLR) has made major contributions to our understanding of the Moon's internal structure and the dynamics of the Earth-Moon system. Because of the recent improvements of the ground-based laser ranging facilities, the…

The physical state of the lunar soil in the permanently shadowed craters of the moon is inferred from experimental investigation. The permanently shadowed craters do not undergo the same thermal cycling experienced by other parts of the…

Earth and Planetary Astrophysics · Physics 2023-06-01 Jacob N. Gamsky , Philip T. Metzger

We review the recurrence intervals as a function of ground motion amplitude at several terrestrial locations, and make the first interplanetary comparison with measurements on the Moon, Mars, Venus and Titan. This empirical approach gives…

Earth and Planetary Astrophysics · Physics 2017-12-06 Ralph Lorenz , Mark Panning

This study uses the Pearson's chi-square test to analyze the VNIR reflectance spectra of seven asteroids and look for spectral matches among approximately 11,000 laboratory spectra of meteoritic, terrestrial, synthetic, Apollo, and Luna…

Earth and Planetary Astrophysics · Physics 2024-12-02 Latika Joshi , Ines Belkhodja , Livneh Naaman , Thomas Burbine , Brian Burt

Experiments were performed to study how rocket exhaust blows soil in lunar and Martian conditions. Jets of gas were blown downwardly at various granular materials while a camera recorded the formation of scour holes as the material was…

Instrumentation and Methods for Astrophysics · Physics 2024-06-25 Philip T. Metzger