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Calorimetric study of high-pressure polymorphs of MnSiO
3
Masaki Akaogi,
Alexandra Navrotsky
Molecular Sciences, School of (SMS)
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:
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Article
›
peer-review
16
Scopus citations
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3
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Earth & Environmental Sciences
garnet
58%
clinopyroxene
54%
transition
39%
stishovite
27%
enthalpy
27%
entropy
24%
thermal expansion
10%
volume change
10%
phase equilibrium
9%
calorimetry
9%
compressibility
9%
pyroxene
9%
atmospheric pressure
8%
olivine
8%
transform
7%
material
3%
Engineering & Materials Science
Garnets
100%
Polymorphism
79%
Enthalpy
27%
Entropy
22%
Olivine
14%
Calorimetry
11%
Phase equilibria
10%
Compressibility
10%
Atmospheric pressure
10%
Thermal expansion
9%
Temperature
3%
Chemical Compounds
Entropy
51%
Enthalpy
49%
Compressibility
24%
Phase Equilibrium
24%
Pressure
24%
Volume
24%
Thermal Expansion
22%
Disproportionation
21%
Calorimetry
19%
Tetragonal Space Group
18%