Search Results

Viewing rates 43851-43900 of 76064 matching results.
Page 878 of 1522. 1 ... 875 876 877 878 879 880 881 ... 1522
Help
Rate Legend
= Future Rate
Result Actions
Generate result file:
 
Reaclib Format Guide (PDF)
Download Webnucleo Nuclide XML file
 
Chap Reaction Type Label Modified Last Change Ver Comments
5 he4 + o26 -> n + ne29 theory rpsm 2010-06-11 15:14:12 script 1 Updated Q value
5 he4 + o26 -> p + f29 theory rpsm 2010-06-11 15:14:12 reaclib 1
5 p + o27 -> n + f27 theory rpsm 2010-06-11 15:14:12 script 1 Updated Q value
5 p + o27 -> he4 + n24 theory rpsm 2010-06-11 15:14:12 reaclib 1
5 he4 + o27 -> n + ne30 theory rpsm 2010-06-11 15:14:12 script 1 Updated Q value
5 he4 + o27 -> p + f30 theory rpsm 2010-06-11 15:14:12 reaclib 1
5 he4 + o28 -> n + ne31 theory rpsm 2010-06-11 15:14:12 script 1 Updated Q value
5 he4 + o28 -> p + f31 theory rpsm 2010-06-11 15:14:12 reaclib 1
5 he4 + o29 -> n + ne32 theory rpsm 2010-06-11 15:14:12 script 1 Updated Q value
5 he4 + o29 -> p + f32 theory rpsm 2010-06-11 15:14:12 reaclib 1
5 he4 + o30 -> n + ne33 theory rpsm 2010-06-11 15:14:12 script 1 Updated Q value
5 he4 + o30 -> p + f33 theory rpsm 2010-06-11 15:14:12 reaclib 1
5 he4 + o31 -> n + ne34 theory rpsm 2010-06-11 15:14:12 script 1 Updated Q value
5 he4 + o31 -> p + f34 theory rpsm 2010-06-11 15:14:12 reaclib 1
5 he4 + o32 -> n + ne35 theory rpsm 2010-06-11 15:14:12 script 1 Updated Q value
5 he4 + o32 -> p + f35 theory rpsm 2010-06-11 15:14:12 reaclib 1
5 he4 + o33 -> n + ne36 theory rpsm 2010-06-11 15:14:12 script 1 Updated Q value
5 he4 + o33 -> p + f36 theory rpsm 2010-06-11 15:14:12 reaclib 1
5 he4 + o34 -> n + ne37 theory rpsm 2010-06-11 15:14:12 script 1 Updated Q value
5 he4 + o34 -> p + f37 theory rpsm 2010-06-11 15:14:12 reaclib 1
5 n + f14 -> p + o14 theory rpsm 2010-06-11 15:14:12 script 1 Updated Q value
5 n + f14 -> he4 + n11 theory rpsm 2010-06-11 15:14:12 script 1 Updated Q value
5 n + f15 -> p + o15 theory rpsm 2010-06-11 15:14:12 script 1 Updated Q value
5 n + f15 -> he4 + n12 theory rpsm 2010-06-11 15:14:12 reaclib 1
5 he4 + f15 -> p + ne18 theory rpsm 2010-06-11 15:14:12 reaclib 1
5 n + f16 -> p + o16 theory rpsm 2010-06-11 15:14:12 script 1 Updated Q value
5 n + f16 -> he4 + n13 theory rpsm 2010-06-11 15:14:12 script 1 Updated Q value
5 p + f16 -> n + ne16 theory ths8 2010-06-11 15:14:15 script 1
5 p + f16 -> he4 + o13 theory rpsm 2010-06-11 15:14:12 reaclib 1
5 he4 + f16 -> n + na19 theory rath 2008-01-26 19:55:20 script 2
5 he4 + f16 -> p + ne19 theory rpsm 2010-06-11 15:14:12 reaclib 1
5 n + f17 -> p + o17 exp wag 2010-06-11 15:14:12 cyburt 1
5 n + f17 -> he4 + n14 exp nacr 2010-10-01 14:33:06 cyburt 2
5 p + f17 -> n + ne17 theory ths8 2010-06-11 15:14:15 script 1
5 p + f17 -> he4 + o14 exp Ha96c 2026-06-09 15:04:47 cyburt 1 Assumed Constructive Interference between non-resonant and 6.15 resonance
5 he4 + f17 -> n + na20 theory rath 2008-01-26 19:55:20 script 2
5 he4 + f17 -> p + ne20 exp nacr 2010-10-01 14:40:25 cyburt 2
5 n + f18 -> p + o18 exp wag 2010-06-11 15:14:12 cyburt 1
5 n + f18 -> he4 + n15 exp cf88 2010-06-11 15:14:12 cyburt 1
5 p + f18 -> n + ne18 theory rath 2008-01-26 19:55:08 script 2
5 p + f18 -> he4 + o15 exp sh03 2010-06-11 15:14:12 cyburt 2 adopted resonance parameters from table 1. Used table to fit a residual non-resonance component.
5 he4 + f18 -> n + na21 theory rath 2008-01-26 19:55:21 script 2
5 he4 + f18 -> p + ne21 theory rpsm 2010-06-11 15:14:12 reaclib 1
5 n + f19 -> p + o19 exp wag 2010-06-11 15:14:12 cyburt 1
5 n + f19 -> he4 + n16 exp wag 2010-06-11 15:14:12 cyburt 1
5 p + f19 -> n + ne19 exp nacr 2010-06-11 15:14:12 meisel 2 SEF updated to match NACRE paper.
5 p + f19 -> he4 + o16 exp nacr 2026-06-09 15:04:47 cyburt 2 The first 3 resonances are included explicitly since they dominate the rate for T9<1
5 he4 + f19 -> n + na22 exp cf88 2010-06-11 15:14:12 cyburt 1
5 he4 + f19 -> p + ne22 exp cf88 2010-06-11 15:14:12 meisel 1
5 n + f20 -> p + o20 theory rpsm 2010-06-11 15:14:12 reaclib 1
 
Page 878 of 1522. 1 ... 875 876 877 878 879 880 881 ... 1522

Page generation took 1.62 seconds

This material is based upon work supported in part by the U.S. Department of Energy, Office of Science, Office of Nuclear Physics, under Award Number DE-SC0026204.