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1

Mohseni, Alaeddin. LTPP seasonal asphalt concrete (AC) pavement temperature models. U.S. Dept. of Transportation, Federal Highway Administration, Research and Development, Turner-Fairbank Highway Research Center, 1998.

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Mohseni, Alaeddin. LTPP seasonal asphalt concrete (AC) pavement temperature models. U.S. Dept. of Transportation, Federal Highway Administration, Research and Development, Turner-Fairbank Highway Research Center, 1998.

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3

Yeshurun, Yosef. Hashpaʻah shel śadeh magneṭi ṿe-/o zerem ḥilufin ʻal hitnahagut shel selil molikh-ʻal be-ṭemperaṭurot gevohot: Duaḥ mesakem = The influence of ac current and/or ac field on the behavior of HTS coil and wires and coils. Miśrad ha-tashtiyot ha-leʼumiyot, Agaf meḥḳar u-fituaḥ, 2001.

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4

Shen, Boyang. Study of Second Generation High Temperature Superconductors: Electromagnetic Characteristics and AC Loss Analysis. Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-58058-2.

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5

Institution of Engineering and Technology. Thermal Power Plant Simulation and Control. IET, 2003.

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6

Sultan, Asad. A contribution to the AC losses of technical low temperature multifilament superconducting wires. 1995.

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7

Shen, Boyang. Study of Second Generation High Temperature Superconductors: Electromagnetic Characteristics and AC Loss Analysis. Springer International Publishing AG, 2021.

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8

Shen, Boyang. Study of Second Generation High Temperature Superconductors: Electromagnetic Characteristics and AC Loss Analysis. Springer International Publishing AG, 2020.

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9

(Editor), M. Parans Paranthaman, and Venkat Selvamanickam (Editor), eds. Flux Pinning and AC Loss Studies on YBCO Coated Conducters. Nova Science Pub Inc, 2007.

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10

Narlikar, Anant. AC Losses and Flux Pinning and Formation of Stripe Phase (Studies of High Temperature Superconductors, Volume 33). Nova Science Publishers, 2000.

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11

Mahapatra, Souvik. Fundamentals of Bias Temperature Instability in MOS Transistors: Characterization Methods, Process and Materials Impact, DC and AC Modeling. Springer, 2015.

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12

Mahapatra, Souvik. Fundamentals of Bias Temperature Instability in MOS Transistors: Characterization Methods, Process and Materials Impact, DC and AC Modeling. Springer, 2016.

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13

Fundamentals of Bias Temperature Instability in MOS Transistors: Characterization Methods, Process and Materials Impact, DC and AC Modeling. Springer (India) Private Limited, 2015.

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14

Hsu, Hsuan L. Air Conditioning. Bloomsbury Publishing Plc, 2024. http://dx.doi.org/10.5040/9781501377853.

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Object Lessons is a series of short, beautifully designed books about the hidden lives of ordinary things. Air conditioning aspires to be unnoticed. Yet, by manipulating the air around us, it quietly conditions the baseline conditions of our physical, mental, and emotional experience. From offices and libraries to contemporary art museums and shopping malls, climate control systems shore up the fantasy of a comfortable, self-contained body that does not have to reckon with temperature. At the same time that air conditioning makes temperature a non-issue in (some) people’s daily lives, thermoce
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15

Mørup, Steen, Cathrine Frandsen, and Mikkel F. Hansen. Magnetic properties of nanoparticles. Edited by A. V. Narlikar and Y. Y. Fu. Oxford University Press, 2017. http://dx.doi.org/10.1093/oxfordhb/9780199533053.013.20.

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This article discusses the magnetic properties of nanoparticles. It first considers magnetic domains and the critical size for single-domain behavior of magnetic nanoparticles before providing an overview of magnetic anisotropy in nanoparticles. It then examines magnetic dynamics in nanoparticles, with particular emphasis on superparamagnetic relaxation and the use of Mössbauer spectroscopy, dc magnetization measurements, and ac susceptibility measurements for studies of superparamagnetic relaxation. It also describes magnetic dynamics below the blocking temperature, magnetic interactions betw
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