花的电磁辐射研究

R. De, Ipseeta Nanda
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引用次数: 0

摘要

电磁辐射来自实验室和家庭使用的各种电器或电子设备。由于许多家庭、工业和通信系统的电路都是在彼此靠近的地方运行的,因此一个这样的电路可能会通过近距离和远距离的无意耦合而影响附近其他电路的性能,从而传播电磁场。由不同的无线系统,如移动系统、卫星系统、其他微波链路等产生的电磁波促进了我们在世界各地的通信。因此,电磁辐射的危害造成这些仪器之间的干扰,同时影响包括植物和动物细胞在内的活细胞。我们的研究是研究包括手机在内的所有这些仪器对植物细胞的电磁辐射。为了本研究的目的,在这里取芙蓉花,在一定的温度下,以恒定的功率暴露在不同的时间间隔的电磁辐射下。观察到花的物理状态和介电常数都发生了变化。在这里,在这种情况下,使用开放式同轴探针技术在四种不同的温度水平(即第0小时,1小时,2小时和3小时)测量了一种名为木槿(花瓣)的花的介电特性。在许多采样点的0.02 GHz至8.5 GHz频率范围内测量了上述花的介电特性并绘制了图形。另一个重要的观察结果是,暴露在喇叭天线的电磁辐射后,芙蓉花瓣在不同时间间隔内的状况。从这项研究中,我们可以了解到电磁辐射是如何影响植物的。
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STUDY OF ELECTROMAGNETIC RADIATION ON FLOWER
Electromagnetic Radiation comes out from different electrical, or electronics gadget used for Lab as well as household purposes. As many circuits of household, industrial, and communication systems operate at close proximity of each other and one such circuit can affect the performance of other nearby circuits adversely via inadvertent couplings of their signal through near and far region, propagating electromagnetic fields. Electromagnetic waves generated by different wireless systems like mobile systems, satellite systems, other microwave links, etc. facilitates our communications throughout the world. Thus the hazard of electromagnetic radiation causes interference among these instruments and at the same time affects the living cells which includes both plant and animal cells. Here our research is to study the electromagnetic radiation of all these instruments including mobile phones on the plant cells. For the purpose of this study, here Hibiscus Flower is taken, exposed to electromagnetic radiation for the different time interval with a constant power and at certain temperature. It is observed that the physical condition of the flower as well as dielectric constants is changed. Here, in this case the dielectric properties have been measured on a flower named Hibiscus (petals) using open ended coaxial probe technique at four different temperature levels i.e. at 0th hour, after 1hour, after 2hours and after 3 hours. There are the dielectrics properties for mentioned flowers have been measured and plotted graphically within frequency range of 0.02 GHz to 8.5 GHz at many sample points. Another important observation is that the condition of Hibiscus petals at different time interval after exposing electronic magnetic radiation from Horn Antenna. From this study we can get an idea that how electromagnetic radiation can be affected for plants.
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