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1

Sreekanth, K. V. Electrically Reconfigurable Optical Devices with Phase Change Materials (PCM). Springer International Publishing, 2022. http://dx.doi.org/10.1007/978-3-030-99243-9.

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2

B, Ibrahim Mounir, and United States. National Aeronautics and Space Administration., eds. Analysis of thermal energy storage material with change-of-phase volumetric effects. National Aeronautics and Space Administration, 1990.

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3

Kośny, Jan. PCM-Enhanced Building Components: An Application of Phase Change Materials in Building Envelopes and Internal Structures. Springer, 2015.

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4

Kośny, Jan. PCM-Enhanced Building Components: An Application of Phase Change Materials in Building Envelopes and Internal Structures. Springer, 2015.

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5

Kośny, Jan. PCM-Enhanced Building Components: An Application of Phase Change Materials in Building Envelopes and Internal Structures. Springer, 2016.

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6

Balaji, C., and Srikanth Rangarajan. Phase Change Material Based Heat Sinks. Taylor & Francis Group, 2019.

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7

Phase Change Material Based Heat Sinks: A Multi-Objective Perspective. Taylor & Francis Group, 2019.

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8

Balaji, C., and Srikanth Rangarajan. Phase Change Material-Based Heat Sinks: A Multi-Objective Perspective. Taylor & Francis Group, 2019.

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9

Balaji, C., and Srikanth Rangarajan. Phase Change Material-Based Heat Sinks: A Multi-Objective Perspective. Taylor & Francis Group, 2019.

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10

Balaji, C., and Srikanth Rangarajan. Phase Change Material-Based Heat Sinks: A Multi-Objective Perspective. Taylor & Francis Group, 2019.

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11

Thermal Energy Storage with Phase Change Materials. Taylor & Francis Group, 2021.

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12

Thermal Energy Storage with Phase Change Materials. Taylor & Francis Group, 2023.

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13

Farid, Mohammed, Amar Auckaili, and Gohar Gholamibozanjani. Thermal Energy Storage with Phase Change Materials. Taylor & Francis Group, 2021.

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14

Farid, Mohammed, Amar Auckaili, and Gohar Gholamibozanjani. Thermal Energy Storage with Phase Change Materials. Taylor & Francis Group, 2021.

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15

Flashman, Richard S. Energy storage using a phase change material in a domestic dwelling. 1999.

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16

Pause, Barbara. Guidelines for the Design of Products Equipped with Phase Change Material. Cambridge Scholars Publishing, 2024.

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17

Balaji, C., and Rajesh Baby. Thermal Management of Electronics, Volume I: Phase Change Material-Based Composite Heat Sinks-An Experimental Approach. Momentum Press, 2019.

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18

Balaji, C., and Rajesh Baby. Thermal Management of Electronics, Volume II: Phase Change Material-Based Composite Heat Sinks--An Experimental Approach. Momentum Press, 2019.

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19

Balaji, C., and Rajesh Baby. Thermal Management of Electronics, Volume I: Phase Change Material-Based Composite Heat Sinks--An Experimental Approach. Momentum Press, 2019.

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20

Effect of microgravity on material undergoing melting and freezing: The TES experiment. National Aeronautics and Space Administration, 1995.

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21

KANDASAMY, RAVI, and ARUN S. MUJUMDAR. THERMAL MANAGEMENT OF ELECTRONIC COMPONENTS: PHASE CHANGE MATERIAL BASED HYBRID THERMAL MANAGEMENT OF ELECTRONIC COMPONENTS AND SYSTEMS. LAP Lambert Academic Publishing, 2010.

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22

Bokstein, Boris S., Mikhail I. Mendelev, and David J. Srolovitz. Thermodynamics and Kinetics in Materials Science. Oxford University Press, 2005. http://dx.doi.org/10.1093/oso/9780198528036.001.0001.

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This text presents a concise and thorough introduction to the main concepts and practical applications of thermodynamics and kinetics in materials science. It is designed with two types of uses in mind: firstly for one or two semester university course for mid- to - upper level undergraduate or first year graduate students in a materials-science-oriented discipline and secondly for individuals who want to study the materials on their own. The following major topics are discussed: basic laws of classical and irreversible thermodynamics, phase equilibria, theory of solutions, chemical reaction t
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23

Sutton, Adrian P. Concepts of Materials Science. Oxford University Press, 2021. http://dx.doi.org/10.1093/oso/9780192846839.001.0001.

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This short book describes ten fundamental concepts – big ideas – of materials science. Some of them come from mainstream physics and chemistry, including thermodynamic stability and phase diagrams, symmetry, and quantum behaviour. Others are about restless atomic motion and thermal fluctuations, defects in crystalline materials as the agents of change in materials, nanoscience and nanotechnology, materials design and materials discovery, metamaterials, and biological matter as a material. A cornerstone of materials science is the idea that materials are complex systems that interact with their
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24

Kenyon, Ian R. Quantum 20/20. Oxford University Press, 2019. http://dx.doi.org/10.1093/oso/9780198808350.001.0001.

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This text reviews fundametals and incorporates key themes of quantum physics. One theme contrasts boson condensation and fermion exclusivity. Bose–Einstein condensation is basic to superconductivity, superfluidity and gaseous BEC. Fermion exclusivity leads to compact stars and to atomic structure, and thence to the band structure of metals and semiconductors with applications in material science, modern optics and electronics. A second theme is that a wavefunction at a point, and in particular its phase is unique (ignoring a global phase change). If there are symmetries, conservation laws foll
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