Results 221 to 230 of about 3,740,932 (397)
OLIVER-J. LODGE. — On a method of measuring the absolute thermal conductivity of crystals and other rare substances (Méthode pour mesurer la conductibilité calorifique absolue des cristaux ou d'autres substances rares); Philosophical Magazine, 5e série, t. V, p. 110; 1878 [PDF]
E. Bouty
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A near infrared‐responsive microscale cantilever is developed using a 3D‐printable composite based on photocurable resin consisting of sepiolite and graphene flakes. The material absorbs 1064 nm light, causing shape transformation with an average displacement of 1.3 mm in 1.7 s. Displacement is measured via video recording.
Karolina Laszczyk +3 more
wiley +1 more source
Apparatus for measuring thermal conductivity of metals up to 600 C
M. S. Van Dusen, S.M. Shelton
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Influence of light on the thermal conductivity of crystallized selenium [PDF]
MM. Bellati, E. Lusana
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The thermal conductivity of polytetrafluoroethylene [PDF]
K. Kanari, T. Ozawa
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A shape‐morphing, porous polyurethane film combines passive radiative cooling with folding to deliver multilevel heating‐and‐cooling control. High solar reflectance and midinfrared emissivity keep surfaces up to 3.5 °C cooler in direct sunlight, while photothermal triggering folds the film to absorb solar heat.
Yoon Young Choi +5 more
wiley +1 more source
Reviews-On the thermal conductivity of water [PDF]
Stuart D. Milner, A.P. Chattock
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A highly stable, low‐temperature phosphate glass is developed for multimaterial additive manufacturing of multifunctional microfluidics. Glass, metal conductors, and sacrificial polymer are coprinted, enabling monolithic fabrication. The sacrificial paste forms precise channels and decomposes during sintering.
Babak Mazinani +2 more
wiley +1 more source
Thermal Conductivity in Mortar Samples with Copper Mine Tailings. [PDF]
Daza L +5 more
europepmc +1 more source

