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排序方式: 共有6158条查询结果,搜索用时 15 毫秒
931.
932.
Smith EJ Tsurutani BT Slvain JA Jones DE Siscoe GL Mendis DA 《Science (New York, N.Y.)》1986,232(4748):382-385
The vector helium magnetometer on the International Cometary Explorer observed the magnetic fields induced by the interaction of comet Giacobini-Zinner with the solar wind. A magnetic tail was penetrated approximately 7800 kilometers downstream from the comet and was found to be 10(4) kilometers wide. It consisted of two lobes, containing oppositely directed fields with strengths up to 60 nanoteslas, separated by a plasma sheet approximately 10(3)kilometers thick containing a thin current sheet. The magnetotail was enclosed in an extended ionosheath characterized by intense hydromagnetic turbulene and interplanetary fields draped around the comet. A distant bow wave, which may or may not have been a bow shock, was observed at both edges of the ionosheath. Weak turbulence was observed well upstream of the bow wave. 相似文献
933.
934.
Smith BD 《Science (New York, N.Y.)》2007,315(5820):1797-1798
935.
936.
Smith RJ 《Science (New York, N.Y.)》1982,216(4541):30-34
Early this year, the U.S. land-based force of nuclear missiles became vulnerable to a preemptive attack by the Soviet Union, as the Soviets deployed a large number of highly accurate warheads on their own missiles. They first demonstrated this capability in 1977. Since then, U.S. missile vulnerability has come to assume great importance in superpower relations. Western observers have portrayed the Soviet achievement as a sign of aggression, and made missile vulnerability into a symbol of declining American military strength. The government has proposed a vast military buildup of nuclear weapons, supposedly made necessary by this new threat. But the public is increasingly skeptical, and support for some form of arms control is growing. The first article in this series examines how the United States learned of the Soviet accuracy, and why it caused such great alarm. The next article will examine the Reagan Administration's response to this threat. 相似文献
937.
938.
Improved surface temperature prediction for the coming decade from a global climate model 总被引:9,自引:0,他引:9
Smith DM Cusack S Colman AW Folland CK Harris GR Murphy JM 《Science (New York, N.Y.)》2007,317(5839):796-799
Previous climate model projections of climate change accounted for external forcing from natural and anthropogenic sources but did not attempt to predict internally generated natural variability. We present a new modeling system that predicts both internal variability and externally forced changes and hence forecasts surface temperature with substantially improved skill throughout a decade, both globally and in many regions. Our system predicts that internal variability will partially offset the anthropogenic global warming signal for the next few years. However, climate will continue to warm, with at least half of the years after 2009 predicted to exceed the warmest year currently on record. 相似文献
939.
Deep mantle cycling of oceanic crust: evidence from diamonds and their mineral inclusions 总被引:6,自引:0,他引:6
Walter MJ Kohn SC Araujo D Bulanova GP Smith CB Gaillou E Wang J Steele A Shirey SB 《Science (New York, N.Y.)》2011,334(6052):54-57
A primary consequence of plate tectonics is that basaltic oceanic crust subducts with lithospheric slabs into the mantle. Seismological studies extend this process to the lower mantle, and geochemical observations indicate return of oceanic crust to the upper mantle in plumes. There has been no direct petrologic evidence, however, of the return of subducted oceanic crustal components from the lower mantle. We analyzed superdeep diamonds from Juina-5 kimberlite, Brazil, which host inclusions with compositions comprising the entire phase assemblage expected to crystallize from basalt under lower-mantle conditions. The inclusion mineralogies require exhumation from the lower to upper mantle. Because the diamond hosts have carbon isotope signatures consistent with surface-derived carbon, we conclude that the deep carbon cycle extends into the lower mantle. 相似文献
940.
Bain DJ Smith SM Nagle GN 《Science (New York, N.Y.)》2008,321(5891):910; author reply 910-910; author reply 912