Showing 41 - 60 results of 1,149 for search '"thermodynamic"', query time: 0.07s Refine Results
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    Heat Capacities and Thermodynamic Properties of Pinnoite and Inderite by Hanyu Zheng, Kangrui Sun, Long Li, Yafei Guo, Tianlong Deng

    Published 2020-01-01
    “…On the basis of molar heat capacities (Cp,m) of Pin and Ind, the thermodynamic functions of entropy, enthalpy, and Gibbs free energy at the temperature of 1 K interval for the two minerals were obtained for the first time.…”
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  3. 43

    Thermodynamic Relations for Kiselev and Dilaton Black Hole by Bushra Majeed, Mubasher Jamil, Parthapratim Pradhan

    Published 2015-01-01
    “…We investigate the thermodynamics and phase transition for Kiselev black hole and dilaton black hole. …”
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    Article
  4. 44

    Heat Capacity and Thermodynamic Properties of Cesium Pentaborate Tetrahydrate by Kangrui Sun, Panpan Li, Long Li, Yafei Guo, Tianlong Deng

    Published 2020-01-01
    “…The molar heat capacity against temperature was fitted to a polynomial equation of Cp,m (J·mol−1·K−1) = 618.07702 + 39.52669[T − (Tmax + Tmin)/2]/(Tmax − Tmin)/2] − 3.46888[(T − (Tmax + Tmin)/2)/(Tmax − Tmin)/2]2 + 7.9441[(T − (Tmax+ Tmin)/2)/(Tmax − Tmin)/2]3. The relevant thermodynamic functions of enthalpy (HT − H298.15), entropy (ST − S298.15), and Gibbs free energy (GT − G298.15) of cesium pentaborate tetrahydrate from 298 to 375 K of 5 K intervals are also obtained on the basis of relational expression equations between thermodynamic functions and the molar heat capacity.…”
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    Thermodynamic description of the C-Ge and C-Mg systems by Hu B., Du Y., Xu H., Sun W., Zhang W.W., Zhao D.

    Published 2010-01-01
    “…The thermodynamic modeling for the C-Ge and C-Mg systems is performed by the CALPHAD method. …”
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    Geometric Description of the Thermodynamics of the Noncommutative Schwarzschild Black Hole by Alexis Larrañaga, Natalia Herrera, Juliana Garcia

    Published 2013-01-01
    “…This further indicates that the curvature of the thermodynamic metric is a measure of thermodynamic interaction.…”
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  9. 49

    Thermodynamic Stability Areas of Polyvanadates of Alkaline Earth Metals by Igor Povar, Inga Zinicovscaia, Oxana Spinu, Boris Pintilie

    Published 2019-01-01
    “…Its quintessence consists in the thermodynamic analysis of the real conditions of various processes on the basis of their total thermodynamic characteristics. …”
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  10. 50

    Simulation and Domain Identification of Sea Ice Thermodynamic System by Bing Tan, Peng Lu, Zhijun Li, Enmin Feng, Juan Wang

    Published 2012-01-01
    “…Based on the measured data and characteristics of sea ice temperature distribution in space and time, this study is intended to consider a parabolic partial differential equation of the thermodynamic field of sea ice (coupled by snow, ice, and sea water layers) with a time-dependent domain and its parameter identification problem. …”
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    Thermodynamic behavior of dissolved oxygen and hydrogen in pure vanadium by Zhong D.-P., Pei G.-S., Xiang J.-Y., Pan C., Gu W., Lv X.-W.

    Published 2021-01-01
    “…In this paper, the thermodynamic data of V-H-O systems were summarized, and the Gibbs free energies of the main compounds were calculated. …”
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  13. 53

    Thermodynamical Study of FRW Universe in Quasi-Topological Theory by H. Moradpour, R. Dehghani

    Published 2016-01-01
    “…By applying the unified first law of thermodynamics on the apparent horizon of FRW universe, we get the entropy relation for the apparent horizon in quasi-topological gravity theory. …”
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    Rhodamine B Adsorption- Kinetic, Mechanistic and Thermodynamic Studies by S. Ramuthai, V. Nandhakumar, M. Thiruchelvi, S. Arivoli, V. Vijayakumaran

    Published 2009-01-01
    “…The values of their corresponding constant were determined from the slope and intercepts of their respective plots. Thermodynamic parameters like ΔG0, ΔH0 and ΔS0 were calculated. …”
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  16. 56

    Heat Capacity and Thermodynamic Property of Lithium Pentaborate Pentahydrate by Wanjing Cui, Long Li, Yafei Guo, Sisi Zhang, Tianlong Deng

    Published 2018-01-01
    “…The molar heat capacity of LiB5O8·5H2O can be expressed as Cp,m (J·mol−1·K−1) = 396.79376 + 35.87528 [T-(Tmax+Tmin)/2]/[(Tmax-Tmin)/2] + 0.16494[T-(Tmax+Tmin)/2]/[(Tmax-Tmin)/2]2 + 8.3083[T-(Tmax+Tmin)/2]/[(Tmax-Tmin)/2]3, where T is the temperature in Kelvin, Tmax=375 K, and Tmin=297 K. The thermodynamic functions of (HT-H298.15), (ST-S298.15), and (GT-G298.15) of LiB5O8·5H2O are obtained via the molar heat capacity at the temperature of 5 K intervals.…”
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  17. 57

    Heat Capacity and Thermodynamic Property of Cesium Tetraborate Pentahydrate by Kangrui Sun, Kaiyu Zhao, Long Li, Yafei Guo, Tianlong Deng

    Published 2019-01-01
    “…The molar heat capacity of cesium tetraborate pentahydrate is fitted as Cp,m (J·mol−1·K−1) = 593.85705 + 48.0694[T − (Tmax + Tmin)/2]/(Tmax − Tmin)/2] + 24.86395[(T − (Tmax + Tmin)/2)/(Tmax − Tmin)/2]2 + 0.53077[(T − (Tmax + Tmin)/2)/(Tmax − Tmin)/2]3, and the relevant thermodynamic functions of enthalpy, entropy, and Gibbs free energy of cesium tetraborate pentahydrate are also obtained at intervals of 2 K from 303 to 349 K.…”
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    Thermodynamic assessment of the Al-Mo-V ternary system by Hu B., Yao B., Wang J., Zhao J.-R., Min F.-F., Du Y.

    Published 2017-01-01
    “…Thermodynamic assessment of the Al-Mo-V ternary system was performed by means of the CALPHAD (CALculation of PHAse Diagram) approach based on the thermodynamic descriptions of three constitutive binary systems (Al-Mo, Al-V and Mo-V) as well as the experimental phase equilibria data available in the literature. …”
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