On Feb 4, 2010, at 7:30 PM, mix...@bigpond.com wrote:

Note that in the neighborhood of Rb there is a slight kink in the curve. This may allow reactions like 2 Rb -> A + B + energy, where A is lighter than Rb and
B is heavier than Rb.

Perhaps Horace can run his program and see if there are any exothermic reactions
possible?


Here are the results if you give the reactions 2 MeV margin for catalytic electrons:

Energetically Feasible Stable Bose Condensate Pairs X, Y
Resulting from Reactions of the Form: Rb + Rb --> X + Y + energy


 ----------- Equations follow for Rubidium, Rb, element 37  -----------
85Rb37 + 85Rb37 --> 86Kr36 + 84Sr38 + -0.425 MeV [-0.425 MeV] (R2_Rb:1) 85Rb37 + 85Rb37 --> 85Rb37 + 85Rb37 + 00.000 MeV [00.000 MeV] (R2_Rb:2) 85Rb37 + 85Rb37 --> 86Sr38 + 84Kr36 + 2.620 MeV [2.620 MeV] (R2_Rb:3) 85Rb37 + 85Rb37 --> 87Sr38 + 83Kr36 + 00.527 MeV [00.527 MeV] (R2_Rb:4) 85Rb37 + 85Rb37 --> 88Sr38 + 82Kr36 + 4.177 MeV [4.177 MeV] (R2_Rb:5) 85Rb37 + 85Rb37 --> 89Y39 + 81Br35 + 1.342 MeV [1.342 MeV] (R2_Rb:6) 85Rb37 + 85Rb37 --> 90Zr40 + 80Se34 + 2.193 MeV [2.193 MeV] (R2_Rb:7) 85Rb37 + 85Rb37 --> 92Zr40 + 78Se34 + 1.145 MeV [1.145 MeV] (R2_Rb:8) 85Rb37 + 85Rb37 --> 94Zr40 + 76Se34 + -1.816 MeV [-1.816 MeV] (R2_Rb:9) 85Rb37 + 87Rb37 --> 86Kr36 + 86Sr38 + 1.024 MeV [1.024 MeV] (R2_Rb:10) 85Rb37 + 87Rb37 --> 87Rb37 + 85Rb37 + 00.000 MeV [00.000 MeV] (R2_Rb:11) 85Rb37 + 87Rb37 --> 86Sr38 + 86Kr36 + 1.024 MeV [1.024 MeV] (R2_Rb:12) 85Rb37 + 87Rb37 --> 88Sr38 + 84Kr36 + 3.588 MeV [3.588 MeV] (R2_Rb:13) 85Rb37 + 87Rb37 --> 90Zr40 + 82Se34 + -0.404 MeV [-0.404 MeV] (R2_Rb:14) 85Rb37 + 87Rb37 --> 92Zr40 + 80Se34 + -0.551 MeV [-0.551 MeV] (R2_Rb:15) 87Rb37 + 87Rb37 --> 87Rb37 + 87Rb37 + 00.000 MeV [00.000 MeV] (R2_Rb:16) 87Rb37 + 87Rb37 --> 88Sr38 + 86Kr36 + 1.992 MeV [1.992 MeV] (R2_Rb:17)


Total number of reaction equations: 17
Maximum number of D fused with X: 0
Adjustment factor to compound nucleus radius: 1
Energy threshold for including reaction, in eV: -2000000

Best regards,

Horace Heffner
http://www.mtaonline.net/~hheffner/




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