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In other words, the powers and load adjustment ranges both decrease with decreasing rotational speed whereas the efficiency increases, which peaks at 63.43%.
The amount of tetragonal phase present and, more importantly, the level of tetragonal-to-monoclinic phase transformation both decrease with decreasing tin levels, suggesting that tin is a tetragonal oxide phase stabilizing element.
The maximum discharge capacity and the high-rate dischargeability (HRD) of the La0.75 Mg0.25Ni3.5 alloy electrode both decrease with decreasing testing temperature, which mainly due to the slower hydrogen transfer in the bulk of the alloy and the lower electrocatalytic activity at lower temperatures.
The maximum discharge capacity and the high rate dischargeability (HRD) of La0.7Mg0.3Ni2.875Co0.525Mn0.1 alloy electrode both decrease with decreasing test temperature, mainly due to the slower hydrogen transfer in the bulk of the alloy and the lower electrocatalytic activity at lower temperatures.
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However, klal and gas holdup both decreased with decreasing temperature, with the former being more sensitive.
On the contrary, the hip and knee joint angle both decreased with decreasing seat-to-back angle during a stand-to-sit transition.
Inside the surf zone, however, both effects decrease with decreasing water depth, with greater effect of wave-height increase than sea-level rise.
The general trend remains the same: both sSn and sPPV decrease with decreasing motif conservation.
As shown above, both the LP and the cohesive energy of Pd particles decrease with decreasing particle size.
For both modes, apparent resistivities have high values at high frequencies throughout and decrease with decreasing frequencies.
Meal number showed no significant decrease with decreasing teat number.
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