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本文讨论将微波技术与光导波技术组织在一门课程"信息电子技术中的场与波"中进行教学改革问题。根据课程特点,对教学方法和教学手段进行了改革。教学实践表明,通过课程教学方法和教学手段的改革,使学生的学习积极性得到很大提高,培养了学生分析问题和解决问题的能力。 相似文献
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本文对"信息电子技术中的场与波"实验教学改革进行了探讨。笔者分析了现阶段实验教学的困难并提出了解决此类困难的一些可行方法。根据该课程主要包括微波和光导波两部分的特点,在充分利用现有资源的基础上,课程组设计了微波系统与光波系统两个实验。实践表明:通过实验教学的改革与实践,激发了学生的学习兴趣,从而提高了教学质量。 相似文献
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辛算法在准经典轨迹计算中的应用: H+H2体系 总被引:1,自引:1,他引:0
采用辛算法模拟了H + H2在BKMP势能面上的长时间动力学行为, 并和Runge-Kutta方法计算的结果进行了比较.结果表明,采用Runge-Kutta方法模拟长时动力学行为时体系中出现动力学耗散行为,导致无法真实的模拟体系的物理实际;而采用辛算法模拟精确度更高,四阶辛算法误差只有Runge-Kutta法的约百分之一,六阶辛算法的误差则更小,体系中也未见动力学耗散行为.这些结果说明,在进行长时动力学行为模拟的时候,在保持体系能量守恒性上,辛算法应当是一种更好的积分方法. 相似文献
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The calculation of H + H2 system by symplectic quasiclassical trajectory (SQCT) shows that there are two types of collision trajectories A and B, i.e., type A trajectory passes the saddle point of transition state (TS), whereas type B trajectory does not pass the saddle point of transition state. Not all the reactants of type A trajectory are reactive, while not all of type B trajectory are nonreactive. The partition and reactivity of these two types of trajectories are affected by reactant state(R), furthermore, the types of trajectories affect the state and angle distributions of products. Not only the rudiment framework for theoretical study on state(R)-state(TS)-state(P) is established, but also the further understanding of transition state theory (TST) of Eyring is investigated in this paper. 相似文献
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An alternative extension to the Gaussian-beam expansion technique is presented for efficient computation of the Fresnel field integral for elliptically symmetric sources. With a known result that the circ function is approximately decomposed into a sum of Gaussian functions, the cosine function is similarly expanded by the Bessel-Fourier transform. Two expansions are together inserted into this integral, it is then expressible in terms of the simple algebraic functions. The numerical examples for the elliptical and uniform piston transducers are presented, in good agreement with the results given by other methods. The approach is applicable to treat the field radiation problem for a large and important group of piston sources in acoustics. 相似文献
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"信息电子技术中的场与波"课程涉及微波技术、光波技术学等部分,是电子类本科生电磁场系列课程的基础。基于基尔霍夫路理论(路理论)与基于麦克斯韦方程组的电磁场理论(场理论)作为微波与光波的共同基础,首次在本课程中进行了系统学习与对比。我们结合计算机辅助教学,让学生加深了对电磁场的理解,从整体上理解微波、光波的相关电磁场知识。 相似文献