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By using a temperature tuned KTP-based birefringent crystal, we obtained a tuning of about 1 nm around 1031 nm with a green output through the tuning range.
Curing behaviors of the epoxy/clay nanocomposites were studied by using a temperature modulated differential scanning colorimetry (MDSC) under a non-isothermal condition.
The combined data set for this area was also used to examine the influence of topography on soil respiration at scales of over 1000 m by using a temperature and moisture driven soil respiration model and a 4 km2 digital elevation model (DEM) to model soil moisture.
In this work, based on the Griffith energy method and the sensitivities of the thermal-physical properties of materials to temperature, a theoretical method for studying the temperature dependent fracture strength and critical flaw size of the ZrB2 SiC composites on high temperature oxidation is proposed by using a temperature dependent fracture surface energy model.
The modulation frequencies can be separated from the fundamental mode by using a temperature stabilized Fiber-Bragg grating.
Furthermore, magnetic nanoparticles can be used in prospective investigation for magnetic heating by means of reversal losses in an alternating magnetic field [32, 33] during the incubation to control the composition of the corona by using a temperature gradient from the particle surface to the surrounding protein source.
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Bulk size crystals with high optical quality were successfully obtained from aqueous solution by using a temperature-lowering method.
This is achieved by using a temperature-dependent interatomic potential in the standard Cauchy Born theory with a surface energy contribution.
A detailed description of the procedures required to obtain isothermal kinetic data by using a temperature-scanning plug flow non-adiabatic reactor (the TS-PFR) is presented.
By using a temperature-shift strategy of cultivation, consisting in preliminary growth at 28 °C followed by 6-day culture at 20 °C, optimal levels of dry cell weight (DCW), lipid content and GLA concentration were obtained from the recombinant strain: 18.55 g/L, 1.16 g/L and 71.6 mg/L, respectively.
Cells were synchronized by using a temperature-sensitive cdc28-13 allele (RLY2194).
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