Exact(60)
As the lithium concentration increases, the thermal transistor switches off.
The enhanced collector increases the thermal efficiency values by 4.5%.
Thus, an increase in this ratio increases the thermal conduction power but reduces the power dissipated in the leg resistances.
This strategy increases the thermal resistance of the façade, while maintaining access to daylight.
Moreover, the temperature increment reduces the viscosity, while increases the thermal conductivity.
This allows direct solar gains to be reduced and increases the thermal inertia of the building.
Constraining the outside of these models significantly increases the thermal stresses induced.
Long pulse operation considerably increases the thermal load on in-vessel components.
However, the effect of adding nano graphene increases the thermal conductivity to 89.6%.
Increase in die area increases the thermal cycling capability of solder.
This increases the thermal stability of Li0.81C6 in LiPF6 electrolyte compared to pure EC/DEC solvent.
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