Michael von Spakovsky

Michael von Spakovsky

Virginia Polytechnic Institute and State University

H-index: 36

North America-United States

About Michael von Spakovsky

Michael von Spakovsky, With an exceptional h-index of 36 and a recent h-index of 18 (since 2020), a distinguished researcher at Virginia Polytechnic Institute and State University, specializes in the field of non-equilibrium and equilibrium thermodynamics, energy systems.

His recent articles reflect a diverse array of research interests and contributions to the field:

Experimental Evaluation of Innovative Thermal Energy Storage Options for a Non-airbreathing Hypersonic Vehicle's Internal Loads

Evaluation of Various Energy Storage Options for the Internal Thermal Loads of a Non-Airbreathing Hypersonic Vehicle

Modeling the effects of perturbations and steepest entropy ascent on the time evolution of entanglement

Predicting Ion Sequestration in Charged Polymers with the Steepest-Entropy-Ascent Quantum Thermodynamic Framework

Predicting Polymer Brush Behavior in Solvents Using the Steepest-Entropy-Ascent Quantum Thermodynamic Framework

Predicting non-equilibrium folding behavior of polymer chains using the steepest-entropy-ascent quantum thermodynamic framework

Predicting Coupled Electron and Phonon Transport Using Steepest-Entropy-Ascent Quantum Thermodynamics

Predicting defect stability and annealing kinetics in two-dimensional PtSe2 using steepest entropy ascent quantum thermodynamics

Michael von Spakovsky Information

University

Position

Robert E. Hord Jr. Professor in Mechanical Engineering

Citations(all)

5871

Citations(since 2020)

1450

Cited By

4930

hIndex(all)

36

hIndex(since 2020)

18

i10Index(all)

92

i10Index(since 2020)

38

Email

University Profile Page

Virginia Polytechnic Institute and State University

Google Scholar

View Google Scholar Profile

Michael von Spakovsky Skills & Research Interests

non-equilibrium and equilibrium thermodynamics

energy systems

Top articles of Michael von Spakovsky

Title

Journal

Author(s)

Publication Date

Experimental Evaluation of Innovative Thermal Energy Storage Options for a Non-airbreathing Hypersonic Vehicle's Internal Loads

John C Arbolino

Logan H Edwards

Michael R von Spakovsky

Pradeep Raj

2024

Evaluation of Various Energy Storage Options for the Internal Thermal Loads of a Non-Airbreathing Hypersonic Vehicle

Logan H Edwards

John C Arbolino

Michael R von Spakovsky

Pradeep Raj

2024

Modeling the effects of perturbations and steepest entropy ascent on the time evolution of entanglement

arXiv preprint arXiv:2404.05473

Cesar Damian

Robert Holladay

Adriana Saldana

Michael von Spakovsky

2024/4/8

Predicting Ion Sequestration in Charged Polymers with the Steepest-Entropy-Ascent Quantum Thermodynamic Framework

Nanomaterials

Jared McDonald

Michael R von Spakovsky

William T Reynolds

2024/3/1

Predicting Polymer Brush Behavior in Solvents Using the Steepest-Entropy-Ascent Quantum Thermodynamic Framework

The Journal of Physical Chemistry B

Jared McDonald

Michael R von Spakovsky

William T Reynolds Jr

2023/11/25

Predicting non-equilibrium folding behavior of polymer chains using the steepest-entropy-ascent quantum thermodynamic framework

The Journal of Chemical Physics

Jared McDonald

Michael R von Spakovsky

William T Reynolds

2023/3/14

Predicting Coupled Electron and Phonon Transport Using Steepest-Entropy-Ascent Quantum Thermodynamics

Available at SSRN 4621161

Jarod Worden

Michael von Spakovsky

Celine Hin

2023

Predicting defect stability and annealing kinetics in two-dimensional PtSe2 using steepest entropy ascent quantum thermodynamics

Journal of Physics: Condensed Matter

Aimen Younis

Fazel Baniasadi

Michael R von Spakovsky

William T Reynolds Jr

2022/12/15

Decoherence predictions in a superconducting quantum processor using the steepest-entropy-ascent quantum thermodynamics framework

Physical Review A

JA Montañez-Barrera

Michael R von Spakovsky

Cesar E Damian Ascencio

Sergio Cano-Andrade

2022/9/22

Method for generating randomly perturbed density operators subject to different sets of constraints

Quantum Information Processing

JA Montanez-Barrera

RT Holladay

GP Beretta

Michael R von Spakovsky

2022/9/17

Entropy-driven microstructure evolution predicted with the steepest-entropy-ascent quantum thermodynamic framework

Acta Materialia

Jared McDonald

Michael R von Spakovsky

William T Reynolds Jr

2022/9/15

A thermodynamic scaling law for electrically perturbed lipid membranes: Validation with steepest entropy ascent framework

Bioelectrochemistry

Ishan Goswami

Robert Bielitz

Scott S Verbridge

Michael R Von Spakovsky

2021/8/1

Multi-dimensional output-oriented power system resilience based on degraded functionality

Jaber Valinejad

Lamine Mili

C Natalie Van Der Wal

Michael Von Spakovsky

Yijun Xu

2021/7/26

Electro-chemo-mechanical model to investigate multi-pulse electric-field-driven integrin clustering

Bioelectrochemistry

Evan K Massaro

Ishan Goswami

Scott S Verbridge

Michael R von Spakovsky

2021/2/1

Theoretical Frameworks for Predicting the Chemical Kinetics of High-Temperature Flows: A Brief Review

Michael R von Spakovsky

Zachary Stockwell

2021

Entropy-Driven Microstructure Evolution Calculated with the Steepest-Entropy-Ascent Quantum Thermodynamic Framework

arXiv e-prints

Jared McDonald

Michael R von Spakovsky

William T Reynolds Jr

2021/8

Predicting the chemical kinetics of air at high temperatures using steepest-entropy-ascent quantum thermodynamics

Michael R von Spakovsky

Charles Schlosser

Joseph B Martin

Eswar Josyula

2020

Kinetic pathways of ordering and phase separation using classical solid state models within the steepest-entropy-ascent quantum thermodynamic framework

Acta Materialia

Ryo Yamada

Michael R von Spakovsky

William T Reynolds Jr

2020/1/1

Loss-of-entanglement prediction of a controlled-phase gate in the framework of steepest-entropy-ascent quantum thermodynamics

Physical Review A

JA Montanez-Barrera

Cesar E Damian-Ascencio

Michael R von Spakovsky

Sergio Cano-Andrade

2020/5/26

Stochastic multi-agent-based model to measure community resilience-part 2: Simulation results

arXiv preprint arXiv:2004.05185

Jaber Valinejad

Lamine Mili

Konstantinos Triantis

Michael von Spakovsky

C Natalie van der Wal

2020/4/2

See List of Professors in Michael von Spakovsky University(Virginia Polytechnic Institute and State University)