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Dive into the research topics where Joseph A. Nuth is active.

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Featured researches published by Joseph A. Nuth.


Icarus | 1986

Analytical electron microscopy of MgSiO smokes: A comparison with infrared and XRD studies

Frans J. M. Rietmeijer; Joseph A. Nuth; Ian D.R. Mackinnon

Abstract Experimentally obtained MgSiO smokes were studied by analytical electron microscopy using the same samples that had been previously characterized by repeated infrared spectroscopy. Analytical electron microscopy shows that unannealed smokes contain some degree of microcrystallinity which increases with increased annealing for up to 30 hr. An SiO2 polymorph (tridymite) and MgO may form contemporaneously as a result of growth of forsterite (Mg2SiO4) microcrystallites in the initially nonstoichiometric smokes. After 4 hr annealing, forsterite and tridymite react to enstatite (MgSiO3). We suggest that infrared spectroscopy and X-ray diffraction analysis should be complemented by detailed analytical electron microscopy to detect budding crystallinity in vapor phase condensates.


Archive | 2012

Why Isn't the Earth Completely Covered in Water?

Joseph A. Nuth; Frans J. M. Rietmeijer; Cassandra L. Marnocha

If protoplanets formed from 10 to 20 kilometer diameter planetesimals in a runaway accretion process prior to their oligarchic growth into the terrestrial planets, it is only logical to ask where these planetesimals may have formed in order to assess the initial composition of the Earth. We have used Weidenschillings model for the formation of comets (1997) to calculate an efficiency factor for the formation of planetesimals from the solar nebula, then used this factor to calculate the feeding zones that contribute to material contained within 10, 15 and 20 kilometer diameter planetesimals at 1 A.U. as a function of nebular mass. We find that for all reasonable nebular masses, these planetesimals contain a minimum of 3% water as ice by mass. The fraction of ice increases as the planetesimals increase in size and as the nebular mass decreases, since both factors increase the feeding zones from which solids in the final planetesimals are drawn. Is there really a problem with the current accretion scenario that makes the Earth too dry, or is it possible that the nascent Earth lost significant quantities of water in the final stages of accretion?


Archive | 2012

Nanoparticles That Are Out of This World

Frans J. M. Rietmeijer; Joseph A. Nuth


Archive | 2014

NASA's Asteroid Redirect Mission: The Boulder Capture Option

Paul A. Abell; Joseph A. Nuth; Daniel D. Mazanek; Raymond G. Merrill; David M. Reeves; Bo J. Naasz


Microgravity Science and Technology | 1993

STARDUST: A simulation experiment of cosmic dust analogues production in microgravity conditions

Frank T. Ferguson; Lembit U. Lilleleht; Joseph A. Nuth; J. R. Stephens; E. Bussoletti; L. Carotenuto; L. Colangeli; P. Dellaversana; F. Mele; V. Mennella


Archive | 2016

Asteroid Redirect Mission %28ARM%29 Formulation Assessment and Support Team %28FAST%29 Final Report

Daniel D. Mazanek; David M. Reeves; Paul A. Abell; Erik Asphaug; Neyda M. Abreu; James F. Bell; William F. Bottke; D. T. Britt; Humberto Campins; Paul Chodas; Carolyn M. Ernst; Marc Douglas Fries; Leslie Gertsch; Daniel P. Glavin; Christine M. Hartzell; Amanda R. Hendrix; Joseph A. Nuth; Daniel J. Scheeres; Joel C. Sercel; Driss Takir; Kris Zacny


Archive | 2011

Making Amorphous Ferromagnesiosilica and Metastable Magnesioferrite and Fayalite

Frans J. M. Rietmeijer; Aurora Pun; Joseph A. Nuth


Archive | 2010

Experiemental Study of the Mechanisms of Formation of Nanosulfides in Comet Wild 2

Neyda M. Abreu; Frans J. M. Rietmeijer; Joseph A. Nuth


Archive | 2010

Laboratory-created Chondritic Matix: TEM Study of Nanophase Fe-Sulfides and Magnetite Embedded in Fe-rich Amorphous Silicates

Neyda M. Abreu; Joseph A. Nuth


Archive | 2009

Fischer-Tropsch-Type Production of Organic Materials in the Solar Nebula: Studies Using Graphite Catalysts and Measuring the Trapping of Noble Gases

Joseph A. Nuth; Frank T. Ferguson; Christopher Lucas; Yuki Kimura; Charles M. Hohenberg

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Aurora Pun

University of New Mexico

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Neyda M. Abreu

Pennsylvania State University

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O. Muñoz

Spanish National Research Council

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Frank T. Ferguson

The Catholic University of America

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Amanda R. Hendrix

Planetary Science Institute

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