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Nanothermometry in Living Cells: Physical Limits, Conceptual and Material Challenges
Heat and temperature are fundamental to life. When nanothermometers began probing regions as small as a living cell, they triggered controversial claims of large intracellular temperature gradients. We review physical constraints energy‐conservation, entropy production, thermodynamic fluctuations, and molecular dynamics.
Taras Plakhotnik
wiley +1 more source
Tailored thermo‐mechanical properties of shape memory polymer composites enable large reversible deformation as well as high actuation speed. Moreover, a structural design with curvature in the transverse direction achieves sub‐second actuation on heating and a larger recovery ratio on cooling. Finally, these newly developed smart two‐way actuators can
Dajeong Kang +6 more
wiley +1 more source
Build-up shielding-factors, and physical & mechanical properties of borosilicate glasses with varied CeO<sub>2</sub> contents. [PDF]
Abo-Mosallam HA +3 more
europepmc +1 more source
Novel Functional Materials via 3D Printing by Vat Photopolymerization
This Perspective systematically analyzes strategies for incorporating functionalities into 3D‐printed materials via Vat Photopolymerization (VP). It explores the spectrum of achievable functionalities in recently reported novel materials—such as conductive, energy‐storing, biodegradable, stimuli‐responsive, self‐healing, shape‐memory, biomaterials, and
Sergey S. Nechausov +3 more
wiley +1 more source
Experimental study on dynamic mechanical properties and damage mechanisms models of concrete under freeze-thaw cycles. [PDF]
Cao Y +7 more
europepmc +1 more source
Insight on the impact of Acacia nilotica leaves extract on the characteristics of natural and synthetic rubber composites. [PDF]
Zidan TA +4 more
europepmc +1 more source
Correlation analysis and prediction models for loess compressibility in Ili region, Xinjiang. [PDF]
Liu Z, Chen L, Chen K, Zhang Z, Chang J.
europepmc +1 more source
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Relaxation Modulus and Complex Modulus
2017The main purpose of this chapter is to relate the relaxation modulus of bitumen through its stiffness modulus with the penetration index and the softening point of asphalt. In this chapter, the equations are derived for numerical and analytical evaluation of relaxation modulus and complex modulus of asphalt based on its stiffness modulus.
Boris Radovskiy, Bagdat Teltayev
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