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巧借学科工具制作教案试题
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作者 杨伟州 《教育信息技术》 2004年第7期39-40,共2页
学科教师经常要撰写教案、试题等,特别是理科的教案、试题比较难于处理,那如何更好更快地制作教案、试题呢?其实必要我们善于借助一些学科工具,在word的环境下,则可非常轻松快捷地制作电子教案、试卷、练习题等。下面笔者主要介绍... 学科教师经常要撰写教案、试题等,特别是理科的教案、试题比较难于处理,那如何更好更快地制作教案、试题呢?其实必要我们善于借助一些学科工具,在word的环境下,则可非常轻松快捷地制作电子教案、试卷、练习题等。下面笔者主要介绍一些理科中实用的学科工具,供大家参考。 展开更多
关键词 电子教案 电子试题 WORD “物理画板” “化学金排” 工具软件
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A New Approach to Modification of Rearrangements in Metallorganic Chemistry of Phosphorus, Arsenic, Antimony and Bismuth
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作者 Aibassov Yerkin Zhakenovich Yemelyanova Valentina Stepanovna Shakieva Tatyana Vladimirovna Aibassov Gizatulla Abenov Bakhyt Bulenbayev Maksat 《Journal of Chemistry and Chemical Engineering》 2015年第2期90-100,共11页
We discovered a new approach modification Bamberger, Barton, Beckmann, Wallach, Gabriel, Hofmann, Hofmann A.W. Martius, Dimroth, Semmler-Wolff-Schroeter, Sus, Claisen, Newman-Kwart, Orlon, Pistschimuka, Robev, Smiles,... We discovered a new approach modification Bamberger, Barton, Beckmann, Wallach, Gabriel, Hofmann, Hofmann A.W. Martius, Dimroth, Semmler-Wolff-Schroeter, Sus, Claisen, Newman-Kwart, Orlon, Pistschimuka, Robev, Smiles, Sawdey, Sommelet, Stevens, Tiemann, Fischer-Hepp, Chapman, Chattaway, Schonberg, Stieglitz Rearrangements with of phosphorous, arsine, stibine and bismuthine in organometallic chemistry. The authors have proposed a new mechanism for possible reactions. 展开更多
关键词 REARRANGEMENTS organic compounds of arsenic ANTIMONY bismuth.
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An Advance in Complete Oxidation of Formaldehyde at Low Temperatures 被引量:2
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作者 Hua Tian Junhui He 《Science Foundation in China》 CAS 2009年第2期36-38,共3页
Editor's comments Formaldehyde (HCHO) emitted from chemical manufacturing plants including methanol-gasoline/diesel fuel vehicles and the construction and decoration materials is one of the major air pollutions, wh... Editor's comments Formaldehyde (HCHO) emitted from chemical manufacturing plants including methanol-gasoline/diesel fuel vehicles and the construction and decoration materials is one of the major air pollutions, which induces photochemical pollution and hazards human health. Great efforts have been made for the reduction or control of the emission of HCHO to satisfy the stringent environmental regulations. Now, a new study supported by the National Natural Science Foundation of China reports mesoporous manganese oxide with novel nanostructures for the decomposition of HCHO. The obtained manganese oxide nanomaterials showed high catalytic activities for oxidative decomposition of HCHO at low temperatures. Complete conversion of HCHO to CO2 and H2O were achieved, and no harmful by- products were detected in effluent gases. The catalytic activities of these nanomaterials are significantly higher than those of previously reported manganese oxide octahedral molecular sieve (OMS-2) nanorods , MnO x powders, and alumnina-supported mangnaese-palladium oxide catalysts. These results provide a new route for the removal of HCHO and other air pollutions. 展开更多
关键词 Manganese oxide honeycomb nanosphere hollow nanosphere FORMALDEHYDE OXIDATION
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