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Discover LudwigThe phrase "at a high load" is correct and usable in written English.
It can be used in contexts related to performance, capacity, or stress levels, often in technical or engineering discussions.
Example: "The system operates efficiently at a high load, ensuring optimal performance during peak usage times."
Alternatives: "under heavy load" or "during peak load".
Exact(9)
No crack was observed to propagate in the films at a high load of 50 mN.
Additional constant amplitude fatigue tests at a high load ratio (R ≈ 0.6) representing the small cycles in the periodic underload loading were also performed.
Static pull tests on the new bolt show that it can elongate to any expected length at a high load level, thereby absorbing a large amount of energy to maintain the stability of surrounding rock.
With the increasing number of cells, a gradually decreasing increase in the voltage output was found in the parallel stack and series stack at a high load, while the series stack showed first an increase and later a decrease in the voltage output at low load.
This paper demonstrates a closed-loop control at a high load condition and presents an architecture of controllable injection for a Caterpillar C6.6 engine using predictive control that includes exhaust temperature, of nitrogen oxides (NOx) and particulate matters (PM) without changing the fuel quantity.
When directly used as a supercapacitor electrode, the E Co Ni LDH/Ni foam displayed a high specific capacitance of 774 F g −1 at the current density of 0.2 A g−1 with a unique cyclability at a high load mass of 3.27 mg cm−2.
Similar(51)
At a high loading, the ether groups in the polyimide chains exhibit a significant effect on plasticization.
Its specific capacitance can still remain ca. 146 F/g at a high loading current density of 30 A/g with the retention of ca. 70%.
For example, some experimental studies showed that there is a modest improvement in thermal conductivity of water at a high loading of multi-walled carbon nanotubes (MW-CNTs), approximately of 35% increase for a 1 wt% MWNT nanofluid [9].
The Pt particle size in Pt/RGO was ~2.6 nm, which was similar to that of the commercial Pt/C catalyst (2.7 nm), indicating uniform distribution of Pt nanoparticles on GO even at a high loading amount.
The nano-porous Ni framework, derived from the selective dissolution of Cu from a Ni Cu alloy, effectively promotes the electrochemical utilization of deposited Co(OH 2 even at a high loading amount condition.
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