The effects of different thermal compensation areas and different heat power were discussed in detail.
详细地研究了不同区域的热补偿和不同的热补偿功率大小对镜面变形峰谷值的影响。
The mathematical expression of the kinetic compensation effects of these thermal decomposition reactions had been obtained.
此外还得到了该系列配合物的热分解反应动力学补偿效应表达式。
Some compensation on thermal-lens effects is discussed.
提出补偿热透镜效应的有效措施。
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