Microscopic to Macroscopic : : Atomic Environments to Mineral Thermodynamics / / ed. by Susan Kieffer, Alexandra Navrotsky.
Volume 14 of Reviews in Mineralogy covers a short course about the relations among the microscopic structure of minerals and their macroscopic thermodynamic properties. Understanding the micro-to-macro relations provides a rigorous theoretical foundation for formulation of energy relations. With suc...
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Place / Publishing House: | Berlin ;, Boston : : De Gruyter, , [2018] ©1985 |
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Microscopic to Macroscopic : Atomic Environments to Mineral Thermodynamics / ed. by Susan Kieffer, Alexandra Navrotsky. Berlin ; Boston : De Gruyter, [2018] ©1985 1 online resource (X, 428 p.) text txt rdacontent computer c rdamedia online resource cr rdacarrier text file PDF rda Reviews in Mineralogy & Geochemistry , 1529-6466 ; 14 Frontmatter -- REVIEWS in MINERALOGY -- FOREWORD -- TABLE OF CONTENTS -- Chapter 1. SCIENTIFIC PERSPECTIVE -- Chapter 2. VIBRATIONAL SPECTROSCOPY in the MINERAL SCIENCES -- Chapter 3. HEAT CAPACITY and ENTROPY: SYSTEMATIC RELATIONS to LATTICE VIBRATIONS -- Chapter 4. LATTICE DYNAMICS, PHASE TRANSITIONS and SOFT MODES -- Chapter 5. SYMMETRY ASPECTS of ORDER-DISORDER and the APPLICATION of LANDAU THEORY -- Chapter 6. ORDER-DISORDER TRANSFORMATIONS in MINERAL SOLID SOLUTIONS -- Chapter 7. CRYSTAL CHEMICAL CONSTRAINTS on the THERMOCHEMISTRY of MINERALS -- Chapter 8. THERMODYNAMIC DATA from CRYSTAL FIELD SPECTRA -- Chapter 9. COMPARATIVE CRYSTAL CHEMISTRY and the POLYHEDRAL APPROACH -- Chapter 10. MINERAL STRUCTURE ENERGETICS and MODELING USING the IONIC APPROACH -- Chapter 11. THERMODYNAMICS of PHASE TRANSITIONS -- APPENDIX A. The Continuum Approach: Debye Model, Velocity- Density Systematics and Entropy-Volume Correlation -- APPENDIX B. Interatomic Model for Entropy Change with Coordination Change -- ACKNOWLEDGEMENTS -- REFERENCES restricted access http://purl.org/coar/access_right/c_16ec online access with authorization star Volume 14 of Reviews in Mineralogy covers a short course about the relations among the microscopic structure of minerals and their macroscopic thermodynamic properties. Understanding the micro-to-macro relations provides a rigorous theoretical foundation for formulation of energy relations. With such a foundation, measured parameters can be understood, and extrapolation and prediction of thermodynamic properties beyond the range of measurement can be done with more confidence than if only empirical relations are used.The purpose of this course is to consider the microscopic factors that influence the free energy of minerals: atomic environments, bonding, and crystal structure. These factors influence the structural energy and the detailed nature of the lattice vibrations which are an important source of entropy and enthalpy at temperatures greater than 0 K. The same factors determine the relative energy of different phases, and thereby; the relative stability of different minerals. Configurational entropy terms arising from disorder also contribute to the energy and entropy. In transition metal compounds there are additional energy and entropy terms arising from the electronic configurations, leading to additional stabilizations, magnetic ordering, and, incidentally, color.Organized by Sue Kieffer and Alex Navrotsky, the course was presented by the ten authors of this book on the campus of Washington College in Chestertown, Maryland. This was the second of MSA's short courses to be given in conjunction with meetings of the American Geophysical Union. Issued also in print. Mode of access: Internet via World Wide Web. In English. Description based on online resource; title from PDF title page (publisher's Web site, viewed 28. Feb 2023) Aufsatzsammlung. Mineralogie. Phase. Thermodynamik. SCIENCE / Earth Sciences / Mineralogy. bisacsh Burnham, Charles W., contributor. ctb https://id.loc.gov/vocabulary/relators/ctb Burns, Roger G., contributor. ctb https://id.loc.gov/vocabulary/relators/ctb Carpenter, Michael A., contributor. ctb https://id.loc.gov/vocabulary/relators/ctb Ghose, Subrata, contributor. ctb https://id.loc.gov/vocabulary/relators/ctb Hazen, Robert M., contributor. ctb https://id.loc.gov/vocabulary/relators/ctb Jeanloz, Raymond, contributor. ctb https://id.loc.gov/vocabulary/relators/ctb Kieffer, Susan Werner, contributor. ctb https://id.loc.gov/vocabulary/relators/ctb Kieffer, Susan, editor. edt http://id.loc.gov/vocabulary/relators/edt McConnell, J. Desmond C., contributor. ctb https://id.loc.gov/vocabulary/relators/ctb McMillan, Paul, contributor. ctb https://id.loc.gov/vocabulary/relators/ctb Navrotsky, Alexandra, contributor. ctb https://id.loc.gov/vocabulary/relators/ctb Navrotsky, Alexandra, editor. edt http://id.loc.gov/vocabulary/relators/edt Ribbe, Paul H., contributor. ctb https://id.loc.gov/vocabulary/relators/ctb Title is part of eBook package: De Gruyter DGBA Physical Sciences <1990 9783110637243 ZDB-23-GPS print 9780939950188 https://doi.org/10.1515/9781501508868 https://www.degruyter.com/isbn/9781501508868 Cover https://www.degruyter.com/document/cover/isbn/9781501508868/original |
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English |
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Burnham, Charles W., Burnham, Charles W., Burns, Roger G., Burns, Roger G., Carpenter, Michael A., Carpenter, Michael A., Ghose, Subrata, Ghose, Subrata, Hazen, Robert M., Hazen, Robert M., Jeanloz, Raymond, Jeanloz, Raymond, Kieffer, Susan Werner, Kieffer, Susan Werner, Kieffer, Susan, Kieffer, Susan, McConnell, J. Desmond C., McConnell, J. Desmond C., McMillan, Paul, McMillan, Paul, Navrotsky, Alexandra, Navrotsky, Alexandra, Navrotsky, Alexandra, Navrotsky, Alexandra, Ribbe, Paul H., Ribbe, Paul H., |
author_facet |
Burnham, Charles W., Burnham, Charles W., Burns, Roger G., Burns, Roger G., Carpenter, Michael A., Carpenter, Michael A., Ghose, Subrata, Ghose, Subrata, Hazen, Robert M., Hazen, Robert M., Jeanloz, Raymond, Jeanloz, Raymond, Kieffer, Susan Werner, Kieffer, Susan Werner, Kieffer, Susan, Kieffer, Susan, McConnell, J. Desmond C., McConnell, J. Desmond C., McMillan, Paul, McMillan, Paul, Navrotsky, Alexandra, Navrotsky, Alexandra, Navrotsky, Alexandra, Navrotsky, Alexandra, Ribbe, Paul H., Ribbe, Paul H., |
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MitwirkendeR MitwirkendeR MitwirkendeR MitwirkendeR MitwirkendeR MitwirkendeR MitwirkendeR MitwirkendeR MitwirkendeR MitwirkendeR MitwirkendeR MitwirkendeR MitwirkendeR MitwirkendeR HerausgeberIn HerausgeberIn MitwirkendeR MitwirkendeR MitwirkendeR MitwirkendeR MitwirkendeR MitwirkendeR HerausgeberIn HerausgeberIn MitwirkendeR MitwirkendeR |
author_sort |
Burnham, Charles W., |
title |
Microscopic to Macroscopic : Atomic Environments to Mineral Thermodynamics / |
spellingShingle |
Microscopic to Macroscopic : Atomic Environments to Mineral Thermodynamics / Reviews in Mineralogy & Geochemistry , Frontmatter -- REVIEWS in MINERALOGY -- FOREWORD -- TABLE OF CONTENTS -- Chapter 1. SCIENTIFIC PERSPECTIVE -- Chapter 2. VIBRATIONAL SPECTROSCOPY in the MINERAL SCIENCES -- Chapter 3. HEAT CAPACITY and ENTROPY: SYSTEMATIC RELATIONS to LATTICE VIBRATIONS -- Chapter 4. LATTICE DYNAMICS, PHASE TRANSITIONS and SOFT MODES -- Chapter 5. SYMMETRY ASPECTS of ORDER-DISORDER and the APPLICATION of LANDAU THEORY -- Chapter 6. ORDER-DISORDER TRANSFORMATIONS in MINERAL SOLID SOLUTIONS -- Chapter 7. CRYSTAL CHEMICAL CONSTRAINTS on the THERMOCHEMISTRY of MINERALS -- Chapter 8. THERMODYNAMIC DATA from CRYSTAL FIELD SPECTRA -- Chapter 9. COMPARATIVE CRYSTAL CHEMISTRY and the POLYHEDRAL APPROACH -- Chapter 10. MINERAL STRUCTURE ENERGETICS and MODELING USING the IONIC APPROACH -- Chapter 11. THERMODYNAMICS of PHASE TRANSITIONS -- APPENDIX A. The Continuum Approach: Debye Model, Velocity- Density Systematics and Entropy-Volume Correlation -- APPENDIX B. Interatomic Model for Entropy Change with Coordination Change -- ACKNOWLEDGEMENTS -- REFERENCES |
title_sub |
Atomic Environments to Mineral Thermodynamics / |
title_full |
Microscopic to Macroscopic : Atomic Environments to Mineral Thermodynamics / ed. by Susan Kieffer, Alexandra Navrotsky. |
title_fullStr |
Microscopic to Macroscopic : Atomic Environments to Mineral Thermodynamics / ed. by Susan Kieffer, Alexandra Navrotsky. |
title_full_unstemmed |
Microscopic to Macroscopic : Atomic Environments to Mineral Thermodynamics / ed. by Susan Kieffer, Alexandra Navrotsky. |
title_auth |
Microscopic to Macroscopic : Atomic Environments to Mineral Thermodynamics / |
title_alt |
Frontmatter -- REVIEWS in MINERALOGY -- FOREWORD -- TABLE OF CONTENTS -- Chapter 1. SCIENTIFIC PERSPECTIVE -- Chapter 2. VIBRATIONAL SPECTROSCOPY in the MINERAL SCIENCES -- Chapter 3. HEAT CAPACITY and ENTROPY: SYSTEMATIC RELATIONS to LATTICE VIBRATIONS -- Chapter 4. LATTICE DYNAMICS, PHASE TRANSITIONS and SOFT MODES -- Chapter 5. SYMMETRY ASPECTS of ORDER-DISORDER and the APPLICATION of LANDAU THEORY -- Chapter 6. ORDER-DISORDER TRANSFORMATIONS in MINERAL SOLID SOLUTIONS -- Chapter 7. CRYSTAL CHEMICAL CONSTRAINTS on the THERMOCHEMISTRY of MINERALS -- Chapter 8. THERMODYNAMIC DATA from CRYSTAL FIELD SPECTRA -- Chapter 9. COMPARATIVE CRYSTAL CHEMISTRY and the POLYHEDRAL APPROACH -- Chapter 10. MINERAL STRUCTURE ENERGETICS and MODELING USING the IONIC APPROACH -- Chapter 11. THERMODYNAMICS of PHASE TRANSITIONS -- APPENDIX A. The Continuum Approach: Debye Model, Velocity- Density Systematics and Entropy-Volume Correlation -- APPENDIX B. Interatomic Model for Entropy Change with Coordination Change -- ACKNOWLEDGEMENTS -- REFERENCES |
title_new |
Microscopic to Macroscopic : |
title_sort |
microscopic to macroscopic : atomic environments to mineral thermodynamics / |
series |
Reviews in Mineralogy & Geochemistry , |
series2 |
Reviews in Mineralogy & Geochemistry , |
publisher |
De Gruyter, |
publishDate |
2018 |
physical |
1 online resource (X, 428 p.) Issued also in print. |
contents |
Frontmatter -- REVIEWS in MINERALOGY -- FOREWORD -- TABLE OF CONTENTS -- Chapter 1. SCIENTIFIC PERSPECTIVE -- Chapter 2. VIBRATIONAL SPECTROSCOPY in the MINERAL SCIENCES -- Chapter 3. HEAT CAPACITY and ENTROPY: SYSTEMATIC RELATIONS to LATTICE VIBRATIONS -- Chapter 4. LATTICE DYNAMICS, PHASE TRANSITIONS and SOFT MODES -- Chapter 5. SYMMETRY ASPECTS of ORDER-DISORDER and the APPLICATION of LANDAU THEORY -- Chapter 6. ORDER-DISORDER TRANSFORMATIONS in MINERAL SOLID SOLUTIONS -- Chapter 7. CRYSTAL CHEMICAL CONSTRAINTS on the THERMOCHEMISTRY of MINERALS -- Chapter 8. THERMODYNAMIC DATA from CRYSTAL FIELD SPECTRA -- Chapter 9. COMPARATIVE CRYSTAL CHEMISTRY and the POLYHEDRAL APPROACH -- Chapter 10. MINERAL STRUCTURE ENERGETICS and MODELING USING the IONIC APPROACH -- Chapter 11. THERMODYNAMICS of PHASE TRANSITIONS -- APPENDIX A. The Continuum Approach: Debye Model, Velocity- Density Systematics and Entropy-Volume Correlation -- APPENDIX B. Interatomic Model for Entropy Change with Coordination Change -- ACKNOWLEDGEMENTS -- REFERENCES |
isbn |
9781501508868 9783110637243 9780939950188 |
issn |
1529-6466 ; |
url |
https://doi.org/10.1515/9781501508868 https://www.degruyter.com/isbn/9781501508868 https://www.degruyter.com/document/cover/isbn/9781501508868/original |
illustrated |
Not Illustrated |
doi_str_mv |
10.1515/9781501508868 |
oclc_num |
1083594820 |
work_keys_str_mv |
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Title is part of eBook package: De Gruyter DGBA Physical Sciences <1990 |
is_hierarchy_title |
Microscopic to Macroscopic : Atomic Environments to Mineral Thermodynamics / |
container_title |
Title is part of eBook package: De Gruyter DGBA Physical Sciences <1990 |
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In transition metal compounds there are additional energy and entropy terms arising from the electronic configurations, leading to additional stabilizations, magnetic ordering, and, incidentally, color.Organized by Sue Kieffer and Alex Navrotsky, the course was presented by the ten authors of this book on the campus of Washington College in Chestertown, Maryland. This was the second of MSA's short courses to be given in conjunction with meetings of the American Geophysical Union.</subfield></datafield><datafield tag="530" ind1=" " ind2=" "><subfield code="a">Issued also in print.</subfield></datafield><datafield tag="538" ind1=" " ind2=" "><subfield code="a">Mode of access: Internet via World Wide Web.</subfield></datafield><datafield tag="546" ind1=" " ind2=" "><subfield code="a">In English.</subfield></datafield><datafield tag="588" ind1="0" ind2=" "><subfield code="a">Description based on online resource; title from PDF title page (publisher's Web site, viewed 28. 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