并按局部电流平衡模型,计算了航天器背阴面的带电电位。
Also, according to the local current balance model, the shaded-side spacecraft potentials under the condition of no photoelectrons are calculated.
当一系列的实验显示骨骼是压电的,就意味着使它的结晶体结构弯转变形产生局部电流。
That's when a series of experiments showed that bone is piezoelectric, meaning that bending or deforming its crystal structure creates local electric currents.
本文采用局部电流平衡模型,在无光照条件下,对不同表面材料、不同几何形体的航天器充电情况进行了计算。
In this paper, by using the local current balance model, the charging magnitudes of electrically-isolated, shaded surfaces of a spacecraft are calculated for different shapes and materials.
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