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The κ-spectrum of stationary states. The stationary states of systems... | Download Scientific Diagram
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Entropy | Free Full-Text | Thermodynamic Definitions of Temperature and Kappa and Introduction of the Entropy Defect
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PDF) Revisiting the Black Brane Thermodynamic in Asymptotically Lifshitz Spacetime in $\kappa$-Horndeski Gravity | Henrique Boschi - Academia.edu
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Are the Sublimation Thermodynamics of Organic Molecules Predictable? | Journal of Chemical Information and Modeling
![Exact solutions of $$\kappa$$ -dependent Schrödinger equation with quantum pseudo-harmonic oscillator and its applications for the thermodynamic properties in normal and superstatistics | Scientific Reports Exact solutions of $$\kappa$$ -dependent Schrödinger equation with quantum pseudo-harmonic oscillator and its applications for the thermodynamic properties in normal and superstatistics | Scientific Reports](https://media.springernature.com/m685/springer-static/image/art%3A10.1038%2Fs41598-023-28973-7/MediaObjects/41598_2023_28973_Fig1_HTML.png)
Exact solutions of $$\kappa$$ -dependent Schrödinger equation with quantum pseudo-harmonic oscillator and its applications for the thermodynamic properties in normal and superstatistics | Scientific Reports
![Lagrangian Temperature”: Derivation and Physical Meaning for Systems Described by Kappa Distributions – topic of research paper in Physical sciences. Download scholarly article PDF and read for free on CyberLeninka open science Lagrangian Temperature”: Derivation and Physical Meaning for Systems Described by Kappa Distributions – topic of research paper in Physical sciences. Download scholarly article PDF and read for free on CyberLeninka open science](https://cyberleninka.org/viewer_images/1161191/f/1.png)
Lagrangian Temperature”: Derivation and Physical Meaning for Systems Described by Kappa Distributions – topic of research paper in Physical sciences. Download scholarly article PDF and read for free on CyberLeninka open science
![SOLVED: Given V = aT2 + bP + C, where expansivity (beta) a b and € are constants, and the isothermal Determine the thermal compressibility (kappa): oV B(T ,P) = ov V SOLVED: Given V = aT2 + bP + C, where expansivity (beta) a b and € are constants, and the isothermal Determine the thermal compressibility (kappa): oV B(T ,P) = ov V](https://cdn.numerade.com/ask_images/2a57bb548817430b9c7e33d260db3b60.jpg)
SOLVED: Given V = aT2 + bP + C, where expansivity (beta) a b and € are constants, and the isothermal Determine the thermal compressibility (kappa): oV B(T ,P) = ov V
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Kappa Distributions: Theory and Applications in Plasmas: Livadiotis, George: 9780128046388: Amazon.com: Books
![Exact solutions of $$\kappa$$ -dependent Schrödinger equation with quantum pseudo-harmonic oscillator and its applications for the thermodynamic properties in normal and superstatistics | Scientific Reports Exact solutions of $$\kappa$$ -dependent Schrödinger equation with quantum pseudo-harmonic oscillator and its applications for the thermodynamic properties in normal and superstatistics | Scientific Reports](https://media.springernature.com/lw685/springer-static/image/art%3A10.1038%2Fs41598-023-28973-7/MediaObjects/41598_2023_28973_Fig4_HTML.png)