Results 211 to 220 of about 3,156,299 (267)
High-Temperature Oxidation Behavior of Ti-Doped SiOC Ceramics. [PDF]
Wu X, Gong X, Li Y, Chen X, Yu S.
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Chemical and Mechanical Evolution of a Volumetric Additive Manufacturing (VAM) Resin Under High-Temperature Storage. [PDF]
Hedayati SK +4 more
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Effect of Cooling Methods on CFRP-Concrete Bond Behavior After High-Temperature Exposure: An Experimental Study. [PDF]
Wang B +5 more
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A Critical Appraisal of Pyrolysis Pretreatment in Lithium-Ion Battery Recycling: From High-Temperature Material Transformations to Environmental Impact. [PDF]
Saeed M +3 more
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Fiber-optic Fabry-Pérot interferometric accelerometer with composite cavity and temperature calibration for high-temperature and high-pressure applications. [PDF]
Qin F +6 more
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Physical Review D, 1989
The SU(2) part of electroweak gauge theory has sphaleronlike configurations even in its symmetric phase (temperature {ital T}{gt}{ital T}{sub {ital c}}) which mediate baryon-number-violating processes. These sphalerons sit on top of a potential barrier (which we construct explicitly) whose height rises linearly with {ital T}, and always exceeds {ital T}
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The SU(2) part of electroweak gauge theory has sphaleronlike configurations even in its symmetric phase (temperature {ital T}{gt}{ital T}{sub {ital c}}) which mediate baryon-number-violating processes. These sphalerons sit on top of a potential barrier (which we construct explicitly) whose height rises linearly with {ital T}, and always exceeds {ital T}
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2011
Abstract High temperature is an important means for inorganic syntheses of novel compounds, materials, and high-temperature phases. In this chapter, we highlight the various important aspects in high-temperature inorganic synthesis, along with their recent progress, such as preparation of rare earth compounds and materials at high temperature, sol ...
Ruren Xu, Qiang Su
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Abstract High temperature is an important means for inorganic syntheses of novel compounds, materials, and high-temperature phases. In this chapter, we highlight the various important aspects in high-temperature inorganic synthesis, along with their recent progress, such as preparation of rare earth compounds and materials at high temperature, sol ...
Ruren Xu, Qiang Su
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Physical Review D, 1990
We calculate the self-energy of massless fermions interacting with massless bosons at high temperature by summing the set of ring diagrams. This leads to an effective one-loop equation. We further approximate the boson self-energy by a temperature-dependent mass squared which is of order ({ital gT}){sup 2}. At low momenta, {ital p}{lt}{ital g}{sup 2}T,
Gatoff, G., Kapusta, J.
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We calculate the self-energy of massless fermions interacting with massless bosons at high temperature by summing the set of ring diagrams. This leads to an effective one-loop equation. We further approximate the boson self-energy by a temperature-dependent mass squared which is of order ({ital gT}){sup 2}. At low momenta, {ital p}{lt}{ital g}{sup 2}T,
Gatoff, G., Kapusta, J.
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Science, 1985
Water environments with temperatures up to and above boiling are commonly found in association with geothermal activity. At temperatures above 60°C, only bacteria are found. Bacteria with temperature optima over the range 65° to 105°C have been obtained in pure culture and are the object of many research projects.
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Water environments with temperatures up to and above boiling are commonly found in association with geothermal activity. At temperatures above 60°C, only bacteria are found. Bacteria with temperature optima over the range 65° to 105°C have been obtained in pure culture and are the object of many research projects.
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High temperature superconductivity
Journal of Polymer Science Part C: Polymer Symposia, 1970AbstractThe critical temperature, Tc, for all presently known superconductors does not exceed 21'K. This fact obviously limits the range of applications of superconductivity in technology in a very fundamental way. On the whole, the reason why the value of Tc for “ordinary” superconductors would not exceed 20‐40oK is fairly well understood. At the same
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