Cascade5Lite Reactions - data provided by Dr. Alexander Parkhomov
Conceived by R. W. Greenyer and coded by P. W. Power for the Martin Fleischmann Memorial Project

Version 6.0, Oct 1, 2020

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Cascades5Lite: Uses the FusionAllPlus and TwoToTwoAllPlus supertables subject to neutrino settings

Lists all energetically favourable reactions that cascade from a starting list of the nuclides in the active core fuel.

Simplified version of Cascades5 without the Feedback table. In this, you must directly enter the active core fuel list, as explained below.
It gives quick, but still detailed results for the many cases where the full flexibilty of Cascades5 is not needed.

Input used for this run on 29-Jul-2022 08:05:30 (NZT):

Fusion Table used = FusionAll

2-2 Table used = TwoToTwoAll

Maximmum number of nuclei allowed in all pairings as inputs to both the FusionAllPlus and the TwoToTwoAllPlus (2-2) reaction tables = 70

Maximum number of loops allowed for the recursion process = 3

Maximum Reactor Temperature (Kelvin) = 2400

Elements that will NOT have MELTED at Maximum Reactor Temperature: Feedback Core Fuel Only

Elements that WILL have BOILED before Maximum Reactor Temperature: Feedback All

Minimum energy (MeV) for any Fusion reaction that was counted = 1

Minimum energy (MeV) for any 2-2 reaction that was counted = 1

Radioactive Isotopes: Feedback All

LHL threshold below which nuclides were counted as Radioactive Isotopes = 18

Nuclear Fermions: Feedback All

Atomic Fermions: Feedback All

Elements H, D, N, O, F, Cl, Br, I, Li, Na, Rb and Cr, being able to form Dimers (always Bosonic): Feedback All

SQL compatible string for the order by which the Nuclei Table is presented = order by Z, A

SQL compatible string for the order by which the Reactions Table is presented = order by MeV desc

List of Nuclides in the Fuel = H1

The program looked for 1 Fusion reactions and found 1 in the Original Tables. Similarly, it looked for 1 TwoToTwo reactions and found 0

Thus the program looked for 2 reactions, of which 1 were found in the tables and, inside these, 1 nuclides passed all the above criteria, so were added - fed back - to the working Nuclides table for further pairing with all the other nuclides.

In the Reactions Table listing, the number 'id' reflects the original order in which the reactions were looked for on this particular run, while 'Tid' is the row number of the reaction as listed in either the FusionAll or the TwoToTwoAll table (as indicated by the 'Type' field).

Original order in which the Nuclei below were added = H1

Duration = 120 seconds

Final Table of Nuclei Used by Reactions Table (1):

idAZnBorFaBorFEAMUBEBENSUSLHLRDMDEMeVpcaNCrustppmNCrustppmNSolarSPMDEQRCPTInova_MHzMagGR
411fbH1.007825032240.000000000000.00000000000SPN50.0000null0.000099.98501399.797057001/2+2.7928473510null5700.0000400.00026.75222080

All Elements Appearing in Nuclei Table: (1)

ZEENamePGAWeightARadiusMolarVolMeltingBoilingNegativityAffinityValMxInumMxInizeSTPDensityElectGThermGSpecHeatppmECrustppmEStellarMagTypeCuriePtKMagVolSus
1HHydrogen111.007985311212.1902114.0120.282.272.81113120.0899null0.1805143001400739000Diamagneticnull-0.00000000223

Reactions Table:

idTypeTidneutrinoE1A1nBorF1Z1aBorF1E2A2nBorF2Z2aBorF2E3A3nBorF3Z3aBorF3E4A4nBorF4Z4aBorF4MeVfound
1Fusion5leftH1f1bH1f1bD*f2b1f*dnullnullnullnullnull1.4419551