
Diffusion and Thermal Transport in Bulk and Nano-Materials
Helmut Mehrer(Editor)
Trans Tech Publications Ltd (Publisher)
Published on 1. November 2018
138 pages
978-3-0357-3460-7 (ISBN)
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Description
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This volume is dedicated to the memory of Professor Dr. Nicolaas Augustinus Stolwijk whose works were related with study of a wide spectrum of diffusion processes in metals, intermetallic compounds, semiconductors, solar grade silicon, polymer electrolytes and in minerals.
More details
Series
Language
English
Place of publication
Zurich-Durnten
Switzerland
Target group
Professional and scholarly
Illustrations
Illustrations, unspecified
File size
22,07 MB
ISBN-13
978-3-0357-3460-7 (9783035734607)
DOI
10.4028/b-Z4XJul
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
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Book
01/2019
Trans Tech Publications Ltd
€153.51
Shipment within 10-20 days

Software
01/2019
Trans Tech Publications Ltd
€165.22
Shipment within 10-20 days
Person
Ed. Prof. Helmut Mehrer
Content
Preface
Charge Transport in Energy Storage and Conversion Devices
The Thermal Conductivity of Magnesite, Dolomite and Calcite as Determined by Molecular Dynamics Simulation
Monte Carlo Simulation of Correlation Effects in a Random SC Alloy via Interstitialcy Mechanisms
Diffusion and Equilibration of Site-Preferences Following Transmutation of Tracer Atoms
Diffusion and its Application in NiMnGa Alloys
Transport-Optimized Nanoporous Materials for Mass Separation and Conversion as Designed by Microscopic Diffusion Measurement
Charge Transport in Energy Storage and Conversion Devices
The Thermal Conductivity of Magnesite, Dolomite and Calcite as Determined by Molecular Dynamics Simulation
Monte Carlo Simulation of Correlation Effects in a Random SC Alloy via Interstitialcy Mechanisms
Diffusion and Equilibration of Site-Preferences Following Transmutation of Tracer Atoms
Diffusion and its Application in NiMnGa Alloys
Transport-Optimized Nanoporous Materials for Mass Separation and Conversion as Designed by Microscopic Diffusion Measurement
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