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CH3BR: PD data: agust,heima,...Mars10/PXT-260310ak.pxp agust,www,.....Mars10/PXT-260310ak.ppt
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Vs VHW, KM (n=3):
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CH3+ log-log slopes: O: f = 0.92 (VHW) O: f = 0.91 (VHW) O: f = 0.90 (VHW) 3 +/- 0.5 range
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CH3+ log-log slopes: O: f = 0.92 (KM) O: f = 0.84 (KM) 3 +/- 0.5 range
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Vs VHW, KM (n=2):
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CH2+ log-log slopes: O: f = 0.92 (VHW) O: f = 0.91 (VHW) O: f = 0.90 (VHW) 3 +/- 0.5 range
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CH2+ log-log slopes: O: f = 0.92 (KM) O: f = 0.84 (KM) 3 +/- 0.5 range
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Vs VHW, KM (n=1):
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CH+ log-log slopes: O: f = 0.92 (VHW) (O: f = 0.91 (VHW)) O: f = 0.90 (VHW) 3 +/- 0.5 range
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CH+ log-log slopes: O: f = 0.92 (KM) O: f = 0.84 (KM) 3 +/- 0.5 range
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On the whole VHW and KM agree on the general trends: slope close to constant or slightly decreasing from 66020 –> 76695 (threshold) After which it rises sharply with energy 76695 -> 81000. Comment:
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Vs CHn; n = 3,2,1 (VHW):
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CH3+ log-log slopes: O: f = 0.92 (VHW) O: f = 0.91 (VHW) O: f = 0.90 (VHW) 3 +/- 0.5 range
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CH2+ log-log slopes: O: f = 0.92 (VHW) O: f = 0.91 (VHW) O: f = 0.90 (VHW) 3 +/- 0.5 range
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CH+ log-log slopes: O: f = 0.92 (VHW) (O: f = 0.91 (VHW)) O: f = 0.90 (VHW) 3 +/- 0.5 range
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Vs CHn; n = 3,2,1 (KM):
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CH3+ log-log slopes: O: f = 0.92 (KM) O: f = 0.84 (KM) 3 +/- 0.5 range
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CH2+ log-log slopes: O: f = 0.92 (KM) O: f = 0.84 (KM) 3 +/- 0.5 range
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CH+ log-log slopes: O: f = 0.92 (KM) O: f = 0.84 (KM) 3 +/- 0.5 range
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slope increases as n = 3<2<1 for the region 66020 – 76695; slope increases as n = 3<2 for the region 76695 – 81000 (seems to drop as2>1) Comment:
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Br+:
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79Br+ log-log slopes: O: f = 0.92 (VHW) O: f = 0.90 (VHW) 3 +/- 0.5 range
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81Br+ log-log slopes: O: f = 0.92 (VHW) O: f = 0.90 (VHW) 3 +/- 0.5 range
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79Br+ log-log slopes: O: f = 0.92 (KM) O: f = 0.84 (KM) 3 +/- 0.5 range
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81Br+ log-log slopes: O: f = 0.92 (KM) O: f = 0.84 (KM) 3 +/- 0.5 range
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CHnBr+
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CBr+ CHBr+ CH2Br+ CH3Br+ Log-log slope From low power data (VHW): Red: 0.90, three different exp. Black: 0.92, three different exp.
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