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1

Ignatova, Ol'ga, and Vladimir Zavadskiy. Technology of insulation and wall materials and products. INFRA-M Academic Publishing LLC., 2025. https://doi.org/10.12737/2141115.

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The textbook provides an analysis and characteristics of various thermal, waterproofing and wall materials, an assessment of their suitability for use in construction. Classifications by structure, purpose, basic construction and operational properties, and areas of application are given. The basic schemes of manufacturing thermal insulation materials based on mineral and organic raw materials, as well as the basic principles of creating bitumen and polymer waterproofing materials are presented. Modern technologies for the production of wall products from cellular concretes, lightweight concre
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2

Consumer Energy Council of America. Research Foundation. and Oak Ridge National Laboratory, eds. Characteristics, practices and productivity: A data based analysis of the Consumer Energy Council of America's survey of energy services companies. CECA/RF, 1985.

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3

Test Methods to Evaluate Thermal Properties and Performance of Insulative Coatings. AMPP, 2023. https://doi.org/10.5006/nace_tm21431-2023.

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Scope The purpose of this standard test method is to specify test methods and test conditions used to evaluate thermal properties, insulation values, and performance, before and after thermal aging, for insulative coatings. This test method is intended for use by facility owners, engineers, health and safety specialists, coatings manufacturers, and other interested parties. Rationale Numerous test methods have been used to characterize the performance of insulative coatings in the past. Some of these test methods are from test methods used for traditional bulk insulation products and from othe
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4

Kouadria, Djilali. The ageing and breakdown characteristics of electrical machine insulation materials. 1998.

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5

NCCER. ES19105 Characteristics of Pipe Insulation Level 1 Trainee Guide in Spanish. Pearson Education, Limited, 2013.

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6

Gao, Lan. Characteristics of Streamer Discharges in Air and Along Insulating Surfaces. Uppsala Universitet, 1999.

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7

Yang, Howard C. Characteristics of semi-insulating GaAs photoconductive detectors under steady state illumination. 1986.

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8

Yang, Howard C. Characteristics of semi-insulating GaAs photoconductive detectors under steady state illumination. 1986.

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9

NFPA 274, Standard Test Method to Evaluate Fire Performance Characteristics of Pipe Insulation: 2013 Edition. National Fire Protection Association, 2012.

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10

NFPA 274, Standard Test Method to Evaluate Fire Performance Characteristics of Pipe Insulation: 2009 Edition. National Fire Protection Association, 2008.

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11

NFPA 274, Standard Test Method to Evaluate Fire Performance Characteristics of Pipe Insulation: 2018 Edition. National Fire Protection Association, 2018.

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12

NFPA 274, Standard Test Method to Evaluate Fire Performance Characteristics of Pipe Insulation: 2018 Edition. National Fire Protection Association, 2018.

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13

NFPA 274, Standard Test Method to Evaluate Fire Performance Characteristics of Pipe Insulation: 2018 Edition. National Fire Protection Association, 2017.

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14

NFPA 274, Standard Test Method to Evaluate Fire Performance Characteristics of Pipe Insulation: 2003 Edition. National Fire Protection Association, 2003.

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15

NFPA 274, Standard Test Method to Evaluate Fire Performance Characteristics of Pipe Insulation: 2013 Edition. National Fire Protection Association, 2013.

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16

NFPA 274, Standard Test Method to Evaluate Fire Performance Characteristics of Pipe Insulation: 2009 Edition. National Fire Protection Association, 2008.

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17

Uchida, K., R. Ramos, and E. Saitoh. Spin Seebeck effect. Oxford University Press, 2017. http://dx.doi.org/10.1093/oso/9780198787075.003.0018.

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Chapter 18 This chapter discusses the spin Seebeck effect (SSE), which stands for the generation of a spin current, a flow of spinangular momentum, as a result of a temperature gradient in magnetic materials. In spintronics and spin caloritronics, the SSE is of crucial importance because it enables simple and versatile generation of a spin current from heat. Since the SSE is driven by thermally excited magnon dynaimcs, the thermal spin current can be generated not only from ferromagnetic conductors but also from insulators. Therefore, the SSE is applicable to “insulator-based thermoelectric co
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