苯(C 6 H 6)作为大气和室内环境中的主要污染物,具有强烈致癌性,是大气环境主要监测的内容之一。基于群论方法分析建立一种苯分子的泛频跃迁谱线计算方法,利用苯分子简正振动模式与光谱活性,获得30个振动模式的振动频率及其不可约表示...苯(C 6 H 6)作为大气和室内环境中的主要污染物,具有强烈致癌性,是大气环境主要监测的内容之一。基于群论方法分析建立一种苯分子的泛频跃迁谱线计算方法,利用苯分子简正振动模式与光谱活性,获得30个振动模式的振动频率及其不可约表示。基于D 6点群乘法规则,给出苯分子泛频跃迁的振动模式、光谱活性与谱线位置,为后续精确测量近红外区域苯分子未知谱线跃迁提供了数据与理论支撑。展开更多
In the Present study, free convection and heat transfer behavior of electrically conducting fluid in the boundary layer over a vertical continuously stretching surface is investigated. The effects of free convection, ...In the Present study, free convection and heat transfer behavior of electrically conducting fluid in the boundary layer over a vertical continuously stretching surface is investigated. The effects of free convection, magnetic field, suction/blowing at the surface and the stretching speed of the surface on the flow and heat transfer characteristics are considered. By applying one-parametric group theory to analysis of the problem, a similarity solution is found. The governing equations of continuity, momentum and energy are solved numerically by a fourth-order Runge-Kutta scheme. The numerical results, which are obtained for the flow and heat transfer characteristics, reveal the influences of the parameters.展开更多
文摘苯(C 6 H 6)作为大气和室内环境中的主要污染物,具有强烈致癌性,是大气环境主要监测的内容之一。基于群论方法分析建立一种苯分子的泛频跃迁谱线计算方法,利用苯分子简正振动模式与光谱活性,获得30个振动模式的振动频率及其不可约表示。基于D 6点群乘法规则,给出苯分子泛频跃迁的振动模式、光谱活性与谱线位置,为后续精确测量近红外区域苯分子未知谱线跃迁提供了数据与理论支撑。
文摘In the Present study, free convection and heat transfer behavior of electrically conducting fluid in the boundary layer over a vertical continuously stretching surface is investigated. The effects of free convection, magnetic field, suction/blowing at the surface and the stretching speed of the surface on the flow and heat transfer characteristics are considered. By applying one-parametric group theory to analysis of the problem, a similarity solution is found. The governing equations of continuity, momentum and energy are solved numerically by a fourth-order Runge-Kutta scheme. The numerical results, which are obtained for the flow and heat transfer characteristics, reveal the influences of the parameters.