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Atom & cosmos: Hot gas flows cause sunspot lows: Satellite observations could improve solar cycle forecasts
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title Atom & cosmos: Hot gas flows cause sunspot lows: Satellite observations could improve solar cycle forecasts
title_unstemmed Atom & cosmos: Hot gas flows cause sunspot lows: Satellite observations could improve solar cycle forecasts
title_full Atom & cosmos: Hot gas flows cause sunspot lows: Satellite observations could improve solar cycle forecasts
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title_full_unstemmed Atom & cosmos: Hot gas flows cause sunspot lows: Satellite observations could improve solar cycle forecasts
title_short Atom & cosmos: Hot gas flows cause sunspot lows: Satellite observations could improve solar cycle forecasts
title_sort atom & cosmos: hot gas flows cause sunspot lows: satellite observations could improve solar cycle forecasts
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spelling Cowen, Ron 0036-8423 1943-0930 Wiley General Engineering http://dx.doi.org/10.1002/scin.5591770806 Atom & cosmos: Hot gas flows cause sunspot lows: Satellite observations could improve solar cycle forecasts Science News
spellingShingle Cowen, Ron, Science News, Atom & cosmos: Hot gas flows cause sunspot lows: Satellite observations could improve solar cycle forecasts, General Engineering
title Atom & cosmos: Hot gas flows cause sunspot lows: Satellite observations could improve solar cycle forecasts
title_full Atom & cosmos: Hot gas flows cause sunspot lows: Satellite observations could improve solar cycle forecasts
title_fullStr Atom & cosmos: Hot gas flows cause sunspot lows: Satellite observations could improve solar cycle forecasts
title_full_unstemmed Atom & cosmos: Hot gas flows cause sunspot lows: Satellite observations could improve solar cycle forecasts
title_short Atom & cosmos: Hot gas flows cause sunspot lows: Satellite observations could improve solar cycle forecasts
title_sort atom & cosmos: hot gas flows cause sunspot lows: satellite observations could improve solar cycle forecasts
title_unstemmed Atom & cosmos: Hot gas flows cause sunspot lows: Satellite observations could improve solar cycle forecasts
topic General Engineering
url http://dx.doi.org/10.1002/scin.5591770806