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运用辩证法指导处室工作的几点思考——浅谈怎样当好处长
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作者 陈文坑 《厦门特区党校学报》 1999年第1期46-48,共3页
本文认为处长在处室工作中应处理好上与下、急与缓、长与短、“统”与“干”、威信与人格、应付日常事务与扩大社会效果几对辩证关系。
关键词 运用 辩证法 指导 处室工作
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Enzymatic Activity of Escherichia Coil Lactate Dehydrogenase and Cytochrome c Oxidase
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作者 Yury Shamis Alex Taube +2 位作者 Rodney Croft Russell J. Crawford Elena P. Ivanova 《Journal of Physical Science and Application》 2012年第6期143-151,共9页
The catalytic activity of two common bacterial enzymes, lactate dehydrogenase (LDH) and cytochrome c oxidase (COX) from Escherichia coli was examined following bacterial exposure to microwave (MW) radiation unde... The catalytic activity of two common bacterial enzymes, lactate dehydrogenase (LDH) and cytochrome c oxidase (COX) from Escherichia coli was examined following bacterial exposure to microwave (MW) radiation under well-defined experimental conditions. The experiments were conducted in a specialized microwave processing apparatus, with an exposure frequency of 18 GHz, and a temperature profile that was restricted to below 40℃ to avoid thermal degradation of the bacteria. The absorbed power was calculated to be 1,500 kW/m3 and the electric field was determined to be 300 Wm. Both values were theoretically confirmed using Computer Simulation Technology (CST) Microwave Studio 3D Electromagnetic Stimulation Software. Results showed that the activity of both enzymes was increased following MW radiation compared to negative controls and thermally treated samples subjected to similar temperature profiles. It is suggested that the increase in COX and LDH enzyme activity could not be explained by conventional heating alone, but was rather a result of micro-thermal effects that incorporated 'undetectable' thermal mechanisms. 展开更多
关键词 NON-THERMAL microwave radiation specific microwave effects enzyme kinetics cytochrome c oxidase LACTATEDEHYDROGENASE instantaneous temperature.
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