Solution To Global Warming: Sunspots, Carbon 14, And Average Temperature -- Exploding Star Events

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Abstract

The formation of C14 from nitrogen by collision with a gamma ray or high energy particle in our high atmosphere is a widely accepted theory. The new yet to be recognized supernova, SN, and nova impact theory, SNIT, proposes debris streams of high energy particles from exploding stars impact our planet and cause global warming, sunspot, and other extraordinary events. Some of the recorded C14 data must match the calculated impact times of exploding star debris streams and a similar result occurs for sunspots. The new calculated supernova impact times in conjunction with two temperature plots from Dr Loehle and NOAA prove our current episode of global warming is caused by the Crab nebula or SN 1054 and is waning. The accuracy of the SNIT impact times are shown for the first time due to exact C14 data. Supernova explosions within 700 light years are very dangerous to mankind.
全球变暖的解决方案:太阳黑子、碳14和平均温度——恒星爆炸事件
在我们的高空大气中,由氮与伽马射线或高能粒子碰撞而形成的C14是一个被广泛接受的理论。新的尚未被认可的超新星、SN和新星撞击理论(SNIT)提出,恒星爆炸产生的高能粒子碎片流撞击我们的星球,导致全球变暖、太阳黑子和其他特殊事件。一些记录的C14数据必须与计算出的恒星碎片流爆炸的撞击时间相匹配,太阳黑子也有类似的结果。新计算出的超新星撞击时间与勒勒博士和美国国家海洋和大气管理局的两张温度图相结合,证明了我们目前的全球变暖是由蟹状星云或SN 1054引起的,并且正在减弱。由于精确的C14数据,SNIT撞击时间的准确性首次被显示出来。700光年以内的超新星爆炸对人类是非常危险的。
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