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However, at intermediate temperatures, the ions exist in a liquid-like state where they are closely spaced and strongly interacting, yet not sufficiently cold to form an ordered structure, resulting in a maximum heating rate as shown in Fig. 1b.
The maximum heating rate and cooling rate increase with increasing scan speed at constant laser power and increase with increasing laser power at constant scan speed as well.
Thermal processing in pellets at maximum heating rate promotes better crystallographic ordering of hexagonal LiNi0.5Mn0.5O2 and maximum capacity values irrespectively of chemical composition of the precursor.
Compared to previous fluid convection technologies, such as steam heating and pressurized water in metal foam inserts, the optimized porous inserts performance is significantly higher, having a maximum heating rate of 7 °C/s and a mean heating rate of 6 °C/s.
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The placement of the GDC catalyst enables (i) higher temperatures through the combustion chamber; (ii) increases in maximum heating rates for fixed reactant flow rates; as well as (iii) extending the operating limits of the combustor.
end{aligned} (6 Equation (7), derived from (4) and (5), defines the maximum heat rate (dot{Q}({{dot{H}_{rm F}}})).
The fuel pins were irradiated at the maximum linear heating rate of ∼470 W cm−1 in the B14 test.
The interplay between the Coulomb logarithm and the ion density results in the maximum ion ion heating rate occurring at temperatures of a few kelvin.
The maximum temperature, heating rate, and cooling rate of the glass all decrease with increasing distance from the interface.
Since the backwall is operating under severe neutron irradiation conditions, such as a damage rate of 50 dpa/year and a maximum nuclear heating rate of 25 W/cm3, thermo-structural design is one of the critical issues for target design.
Since the backwall is operating under a severe neutron irradiation of 50 dpa/year and a maximum nuclear heating rate of 25 W/cm3, thermo-structural design is one of critical issues in a target design.
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