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Leslie Glasser

Showing results (1-10 of 32) with videos related to

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Acta Crystallographica Section B, Structural Science, Crystal Engineering and Materials|August 25, 2020
The effective volumes of waters of crystallization: general organic solidsLeslie Glasser
Inorganic Chemistry|August 14, 2014
Thermodynamic consistencies and anomalies among end-member silicate garnetsLeslie Glasser
Inorganic Chemistry|July 25, 2017
Systematic Thermodynamics of Layered Perovskites: Ruddlesden-Popper PhasesLeslie Glasser
Acta Crystallographica Section B, Structural Science, Crystal Engineering and Materials|August 25, 2020
The effective volumes of waters of crystallization: non-ionic pharmaceutical systemsLeslie Glasser
Inorganic Chemistry|September 26, 2019
Apatite Thermochemistry: The Simple Salt ApproximationLeslie Glasser
Inorganic Chemistry|March 6, 2010
Volume-based thermoelasticity: compressibility of inorganic solidsLeslie Glasser
Inorganic Chemistry|January 8, 2013
Single-ion values for ionic solids of both formation enthalpies, Δ(f)H(298)(ion), and Gibbs formation energies, Δ(f)G(298)(ion)Leslie Glasser
Inorganic Chemistry|May 22, 2013
Ambient heat capacities and entropies of ionic solids: a unique view using the Debye equationLeslie Glasser
Inorganic Chemistry|October 10, 2009
Systematic thermodynamics of Magneli-phase and other transition metal oxidesLeslie Glasser
Inorganic Chemistry|January 17, 2012
Solid-state energetics and electrostatics: Madelung constants and Madelung energiesLeslie Glasser
Pageof 4

Showing results (1-10 of 32) with videos related to

Sort By:
Pageof 4
Acta Crystallographica Section B, Structural Science, Crystal Engineering and Materials|August 25, 2020
The effective volumes of waters of crystallization: general organic solidsLeslie Glasser
Inorganic Chemistry|August 14, 2014
Thermodynamic consistencies and anomalies among end-member silicate garnetsLeslie Glasser
Inorganic Chemistry|July 25, 2017
Systematic Thermodynamics of Layered Perovskites: Ruddlesden-Popper PhasesLeslie Glasser
Acta Crystallographica Section B, Structural Science, Crystal Engineering and Materials|August 25, 2020
The effective volumes of waters of crystallization: non-ionic pharmaceutical systemsLeslie Glasser
Inorganic Chemistry|September 26, 2019
Apatite Thermochemistry: The Simple Salt ApproximationLeslie Glasser
Inorganic Chemistry|March 6, 2010
Volume-based thermoelasticity: compressibility of inorganic solidsLeslie Glasser
Inorganic Chemistry|January 8, 2013
Single-ion values for ionic solids of both formation enthalpies, Δ(f)H(298)(ion), and Gibbs formation energies, Δ(f)G(298)(ion)Leslie Glasser
Inorganic Chemistry|May 22, 2013
Ambient heat capacities and entropies of ionic solids: a unique view using the Debye equationLeslie Glasser
Inorganic Chemistry|October 10, 2009
Systematic thermodynamics of Magneli-phase and other transition metal oxidesLeslie Glasser
Inorganic Chemistry|January 17, 2012
Solid-state energetics and electrostatics: Madelung constants and Madelung energiesLeslie Glasser
Pageof 4