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This work presents the heat capacities of the four lithium silicide phases Li12Si7, Li7Si3, Li13Si4, and Li22Si5/Li21Si5 as a function of temperature over the range from (2 to 873) K.
Using a solid-state electrochemical technique, thermodynamic properties of three sulfide phases (RhS0.882, Rh3S4, Rh2S3) in the binary system (Rh + S) are measured as a function of temperature over the range from (925 to 1275) K.
Elastic moduli of a set of equiatomic alloys (CrFeCoNi, CrCoNi, CrFeNi, FeCoNi, MnCoNi, MnFeNi, and CoNi), which are medium-entropy subsystems of the CrMnFeCoNi high-entropy alloy were determined as a function of temperature over the range 293 K–1000 K.
Figure 6b shows CO conversions as a function of temperature over the "used" catalysts.
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A paired Student's t analysis revealed that all fractions were statistically identical as a function of temperature, suggesting that the fractional pathways to hybridization were insensitive to temperature over the range 293 313 K. Therefore, the fraction associated with each transition was averaged across the temperature range and shown as percentages in Figure 4.
(F ) Embryo shape, measured as the ratio of embryo length over embryo width, as a function of temperature.
The linear increment of optical output power as a function of temperature allows for the measurement of the AC current, which is an advantage over other methods.
To measure the thermoelectric properties as a function of temperature, the electrical conductivity σ and the Seebeck coefficient α were simultaneously measured over a temperature range of 500-800°C 500-800°C
The measured parameters such as ultrasonic velocities, attenuation and elastic constants as a function of temperature reveal the possibility of utilizing the proposed technique for complete characterization of materials over wide range of temperatures.
In this paper, parameters of designation were studied to find the impact of affecting temperature gradient over the stack and the desired resonator diameter as a function of temperature gradient and mean pressure when it is prime mover.
Figure 2 Electrical measurements over a wide range of temperature: (a) Resistivity as a function of temperature ρ xx (T), (b) carrier density as a function of temperature n(T), and (c) mobility as a function of temperature μ(T).
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