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- Curie温度Curie temperature
- Curie温度(Tc)Curie temperature(Tc)
- 掺杂对巨磁电阻钙钛矿La_(1-x)A_x(MnB)O_3 Curie温度的影响EFFECT OF DOPING ON CURIE-TEMPERATURE OF La_(1-x)A_x(MnB)O_3 PEROVSKITES WITH COLOSSAL MAGNETORESISTANCE
- 非晶(Fe_(80)Ni_(20))_(78)Si_(22-x)B_x合金的磁矩与Curie温度MAGNETIC MOMENT AND CURIE TEMPERATURE OF (Fe_(80)Ni_(20))_(78)Si_(22-x)B_x AMORPHOUS ALLOYS
- 非晶态Fe_(90-x)Si_xZr_(10)合金的磁矩,Curie温度和自旋波激发MAGNETIC MOMENT, CURIE TEMPERATURE AND SPIN WAVE EXCITATION FOR AMORPHOUS Fe_(90-x) Si_x Zr_(10) ALLOYS
- 环境温度ambient temperature
- 华氏温度degree Fahrenheit
- 工作温度working temperature
- 摄氏温度centigrade temperature
- 最高温度maximum temperature
- Dy2O3掺杂使BaTiO3陶瓷的介电温谱有所展宽,且Curie温度有所降低,交流电导随着温度的升高而增大,并在Curie点附近达到最高。The dielectric constant-temperature is spread and the Curie-temperature is decreased by addition of Dy2O3. The alternating conductance is increased with the change of temperature, and reaches the highest at the Curie-temperature.
- 正如我们所知道的,物质随着温度的增加和减少而膨胀和收缩。As we know, materials expand and contract with the increase and decrease of temperature.
- 温度下降temperature drop (fall)
- 零下温度cold
- 临界温度critical temperature
- 最低温度lowest temperature
- 使用温度serviceability temperature
- 降低温度reduction of temperature
- 室内温度interior temperature
- 反应温度reaction temperature