Here, free electrons rub off the con ductor and create a charge imbalance that causes the current flow.
这时,摩擦引起自由子脱离导体,产生
荷不平衡,从而产生
流。
Here, free electrons rub off the con ductor and create a charge imbalance that causes the current flow.
这时,摩擦引起自由子脱离导体,产生
荷不平衡,从而产生
流。
Frequency-resolved measurement of the emission from a Eaman free electron laser under superradiation condition by a microwave grating spectrometer are presented.
本文报道了利用微波栅摄谱仪测量在超辐射工作条件下的喇曼自由子激光器辐射谱的初步结
。
The gain characteristics of the collective free electron laser operating in a superradiant amplifier have been studied through the variation of the interaction length and pumping magnetic field.
工作在超辐射模式下的集体区自由子激光器的增益特性研究可以通过改变互作用区长度及泵浦强度来进行。
In the presence of impurities or in a nonstoichiometric solid, free electrons or electron holes are produced as a result of “charge compensation” to neutralize the effect of charged ionic defects 。
在杂质存在的情况下,或在非化学计量比的固体中,为了中离子缺陷所引起的
荷不平衡,便会产生自由
子或
子空穴。
声明:以上例句、词性分类均由互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。
Here, free electrons rub off the con ductor and create a charge imbalance that causes the current flow.
这时,摩擦引起自由电脱离导体,产生电荷不平衡,从而产生电流。
Frequency-resolved measurement of the emission from a Eaman free electron laser under superradiation condition by a microwave grating spectrometer are presented.
本文报道了利用微波栅摄谱仪测量在超辐射工作条件喇曼自由电
器辐射谱
初步结
。
The gain characteristics of the collective free electron laser operating in a superradiant amplifier have been studied through the variation of the interaction length and pumping magnetic field.
工作在超辐射模式体区自由电
器
增益特性研究可以通过改变互作用区长度及泵浦强度来进行。
In the presence of impurities or in a nonstoichiometric solid, free electrons or electron holes are produced as a result of “charge compensation” to neutralize the effect of charged ionic defects 。
在杂质存在情况
,或在非化学计量比
固体中,为了中和带电离
缺陷所引起
电荷不平衡,便会产生自由电
或电
空穴。
声明:以上例句、词性分类均由互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件观点;若发现问题,欢迎向我们指正。
Here, free electrons rub off the con ductor and create a charge imbalance that causes the current flow.
这时,摩擦引起自由电子脱离导体,产生电荷不平衡,从而产生电流。
Frequency-resolved measurement of the emission from a Eaman free electron laser under superradiation condition by a microwave grating spectrometer are presented.
本文报道利用微波栅摄谱仪测量在超辐射工作条件下的喇曼自由电子激光器辐射谱的初步结
。
The gain characteristics of the collective free electron laser operating in a superradiant amplifier have been studied through the variation of the interaction length and pumping magnetic field.
工作在超辐射模式下的集体区自由电子激光器的增益特性研究可以通过改变互作用区长度及泵浦强度来进行。
In the presence of impurities or in a nonstoichiometric solid, free electrons or electron holes are produced as a result of “charge compensation” to neutralize the effect of charged ionic defects 。
在杂质存在的情况下,或在非化学计量比的固体,为
带电离子缺陷所引起的电荷不平衡,便会产生自由电子或电子空穴。
声明:以上、词性分类均由互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。
Here, free electrons rub off the con ductor and create a charge imbalance that causes the current flow.
这时,摩擦引起自脱离导
,产生
荷不平衡,从而产生
流。
Frequency-resolved measurement of the emission from a Eaman free electron laser under superradiation condition by a microwave grating spectrometer are presented.
本文报道了利用微波栅摄谱仪测量在超辐射工作条件下的喇曼自激光器辐射谱的初步结
。
The gain characteristics of the collective free electron laser operating in a superradiant amplifier have been studied through the variation of the interaction length and pumping magnetic field.
工作在超辐射模式下的自
激光器的增益特性研究可以通过改变互作用
长度及泵浦强度来进行。
In the presence of impurities or in a nonstoichiometric solid, free electrons or electron holes are produced as a result of “charge compensation” to neutralize the effect of charged ionic defects 。
在杂质存在的情况下,或在非化学计量比的固中,为了中和带
离
缺陷所引起的
荷不平衡,便会产生自
或
空穴。
声明:以上例句、词性分类均互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。
Here, free electrons rub off the con ductor and create a charge imbalance that causes the current flow.
这时,摩擦引起自由电导体,产生电荷不平衡,从而产生电流。
Frequency-resolved measurement of the emission from a Eaman free electron laser under superradiation condition by a microwave grating spectrometer are presented.
本文报道了利用微波栅摄谱仪测量超辐射工作条件下的喇曼自由电
激光器辐射谱的初步结
。
The gain characteristics of the collective free electron laser operating in a superradiant amplifier have been studied through the variation of the interaction length and pumping magnetic field.
工作超辐射模式下的集体区自由电
激光器的增益特性研究可以通过改变互作用区长度及泵浦强度来进行。
In the presence of impurities or in a nonstoichiometric solid, free electrons or electron holes are produced as a result of “charge compensation” to neutralize the effect of charged ionic defects 。
杂质存
的情况下,
化学计量比的固体中,为了中和带电
缺陷所引起的电荷不平衡,便会产生自由电
电
空穴。
声明:以上例句、词性分类均由互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。
Here, free electrons rub off the con ductor and create a charge imbalance that causes the current flow.
这时,摩擦引起自由电子脱离导体,产生电荷不平衡,从而产生电流。
Frequency-resolved measurement of the emission from a Eaman free electron laser under superradiation condition by a microwave grating spectrometer are presented.
本文报道了利用微波栅摄谱仪测量辐射工
条件下
喇曼自由电子激光器辐射谱
结
。
The gain characteristics of the collective free electron laser operating in a superradiant amplifier have been studied through the variation of the interaction length and pumping magnetic field.
工辐射模式下
集体区自由电子激光器
增益特性研究可以通过改变互
用区长度及泵浦强度来进行。
In the presence of impurities or in a nonstoichiometric solid, free electrons or electron holes are produced as a result of “charge compensation” to neutralize the effect of charged ionic defects 。
杂质存
情况下,或
非化学计量比
固体中,为了中和带电离子缺陷所引起
电荷不平衡,便会产生自由电子或电子空穴。
声明:以上例句、词性分类均由互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件观点;若发现问题,欢迎向我们指正。
Here, free electrons rub off the con ductor and create a charge imbalance that causes the current flow.
这时,摩擦引起自由电导体,产生电荷不平衡,从而产生电流。
Frequency-resolved measurement of the emission from a Eaman free electron laser under superradiation condition by a microwave grating spectrometer are presented.
本文报道了利用微波栅摄谱仪测量超辐射工作条件下的喇曼自由电
激光器辐射谱的初步结
。
The gain characteristics of the collective free electron laser operating in a superradiant amplifier have been studied through the variation of the interaction length and pumping magnetic field.
工作超辐射模式下的集体区自由电
激光器的增益特性研究可以通过改变互作用区长度及泵浦强度来进行。
In the presence of impurities or in a nonstoichiometric solid, free electrons or electron holes are produced as a result of “charge compensation” to neutralize the effect of charged ionic defects 。
杂质存
的情况下,
化学计量比的固体中,为了中和带电
缺陷所引起的电荷不平衡,便会产生自由电
电
空穴。
声明:以上例句、词性分类均由互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。
Here, free electrons rub off the con ductor and create a charge imbalance that causes the current flow.
这时,摩擦引起自由电子脱离导体,产生电荷不平衡,从而产生电流。
Frequency-resolved measurement of the emission from a Eaman free electron laser under superradiation condition by a microwave grating spectrometer are presented.
本文报道了利用微波栅摄谱仪测量辐射工
条件下
喇曼自由电子激光器辐射谱
结
。
The gain characteristics of the collective free electron laser operating in a superradiant amplifier have been studied through the variation of the interaction length and pumping magnetic field.
工辐射模式下
集体区自由电子激光器
增益特性研究可以通过改变互
用区长度及泵浦强度来进行。
In the presence of impurities or in a nonstoichiometric solid, free electrons or electron holes are produced as a result of “charge compensation” to neutralize the effect of charged ionic defects 。
杂质存
情况下,或
非化学计量比
固体中,为了中和带电离子缺陷所引起
电荷不平衡,便会产生自由电子或电子空穴。
声明:以上例句、词性分类均由互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件观点;若发现问题,欢迎向我们指正。
Here, free electrons rub off the con ductor and create a charge imbalance that causes the current flow.
这时,摩擦引电子脱离导体,产生电荷不平衡,从而产生电流。
Frequency-resolved measurement of the emission from a Eaman free electron laser under superradiation condition by a microwave grating spectrometer are presented.
本文报道了利用微波栅摄谱仪测在超辐射工作条件下的喇曼
电子激光器辐射谱的初步结
。
The gain characteristics of the collective free electron laser operating in a superradiant amplifier have been studied through the variation of the interaction length and pumping magnetic field.
工作在超辐射模式下的集体区电子激光器的增益特性研究可以通过改变互作用区长度及泵浦强度来进行。
In the presence of impurities or in a nonstoichiometric solid, free electrons or electron holes are produced as a result of “charge compensation” to neutralize the effect of charged ionic defects 。
在杂质存在的情况下,或在非化比的固体中,为了中和带电离子缺陷所引
的电荷不平衡,便会产生
电子或电子空穴。
声明:以上例句、词性分类均互联网资源
动生成,部分未经过人工审核,其表达内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。