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基于磁—重效应对矿物中w(Fe_3O_4)的快速测定
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作者 王旭江 王文龙 +2 位作者 刘宗明 王鹏 马春元 《济南大学学报(自然科学版)》 CAS 北大核心 2012年第1期50-54,共5页
利用矿物在相同磁场、相同质量下因w(Fe3O4)不同会有不同称重读数,采取不同磁场类型和不同磁场强度对配料进行磁—重效应实验。结果表明,在一定磁场条件下,w(Fe2O3)对磁—重实验结果准确性的影响可以忽略,各实验条件下磁—重效应拟合直... 利用矿物在相同磁场、相同质量下因w(Fe3O4)不同会有不同称重读数,采取不同磁场类型和不同磁场强度对配料进行磁—重效应实验。结果表明,在一定磁场条件下,w(Fe2O3)对磁—重实验结果准确性的影响可以忽略,各实验条件下磁—重效应拟合直线方程决定系数均大于0.996,线性相关明显,磁—重效应可以准确便捷测定矿物中Fe3O4的质量分数。 展开更多
关键词 磁-重效应 w(Fe3O4) 场类型 场强度
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Determination of Gravitomagnetic Field Through GRBs or X-ray Pulsars
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作者 WU Ning ZHANG Da-Hua 《Communications in Theoretical Physics》 SCIE CAS CSCD 2006年第5期858-860,共3页
In gauge theory of gravity, there is direct coupling between the spin of a particle and gravitomagnetic field, which will affect Landau level. In the surface of a neutron star or near a black hole, the coupling energy... In gauge theory of gravity, there is direct coupling between the spin of a particle and gravitomagnetic field, which will affect Landau level. In the surface of a neutron star or near a black hole, the coupling energy between spin and gravitomagnetic field can be large and detectable. Precise measurement of the position of spectrum lines of the corresponding emission or absorption can help us to determine the gravitomagnetic field and electromagnetic field simultaneously. The ratio △ Ee/△Ep can be served as a quantitative criteria of black hole. In GRBs or X-ray pulsar, absorption spectral lines of electron were observed. If the absorption spectral lines of electron, neutron and proton can be observed simultaneously, using the method given in this paper, we can determine the gravitomagnetic field in the surface of the star, and discriminate black hole from neutron star. 展开更多
关键词 gamma ray burst black holes gravitomagnetic field quantum effects of gravity
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Magnetic field increase weight and water content in date palm (Phoenix dactylifera L.)
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作者 Faten Dhawi Jameel M. Al-Khayri 《Journal of Agricultural Science and Technology》 2009年第1期23-29,共7页
Magnetic field effects on different plant species have been subject of many studies in the last decade. Magnetic fields are known to induce changes in plant metabolism, growth and productivity. In this study, effect o... Magnetic field effects on different plant species have been subject of many studies in the last decade. Magnetic fields are known to induce changes in plant metabolism, growth and productivity. In this study, effect of magnetic field on date palm weight and water content has been investigated. Seedlings of date palm were treated with two types of magnetic fields in two separate experiments. In the first experiment, seedlings were treated with static magnetic field SMF using electromagnetic circuit set to produce three levels of magnetic field intensities 10, 50 and 100 mT for different durations (0, 30, 60, 120, 180 and 240 min). In the second experiment seedlings were treated with alternating magnetic field AMF, using magnetic resonance imaging providing 1500 mT for 0, 1, 5, 10 and 15 min. After two months of exposure, plants growth parameters (fresh, dry weights and water content for both leaves and roots) were recorded. The measurements revealed that leaf fresh, dry weight and water content increased significantly in response to SMF treatment. Similarly, roots fresh weight and water content were increased significantly; however roots dry weight increasing were insignificant. In the second experiment, AMF has affected plant growth all parameters were increased significantly. Measurements reached the highest level at 15 min of exposure. This study revealed that magnetic fields affect date palm growth parameters by increasing osmotic pressure and water potential which increase water absorption and enhance flesh weight. 展开更多
关键词 date palm dry weight fresh weight LEAF magnetic field ROOT water content
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