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Entry No. D0612

C.W.Cheng1,S.K.Saha1,J.Keinonen1,2,H.B.Mak1, W.Mclatchie1
Queen's University, Kingston, Ontario1
Canadian Journal of Physics59(1981)238


HYDROGEN BURNING OF 39K IN EXPLOSIVE OXYGEN BURNING

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DataFilePhysical quantitiesReaction(s)Energies
1 *INC-ENGY-LAB COUNTS4)
COUNTS: Count number; INC-ENGY-LAB: Incident energy in lab. system #3
39K(P,GAMMA)40CA; between 2039.276 and 2062.674 KEV
2 *INC-ENGY-LAB EXC-ENGY5) INTNSTY6)
EXC-ENGY: Excitation energy (of the final state) #2; INC-ENGY-LAB: Incident energy in lab. system #3; INTNSTY: Intensity
39K(P,GAMMA)40CA; between 1130 and 2043 KEV
3 *INC-ENGY-LAB EXC-ENGY7) LEG-2 LEG-4
EXC-ENGY: Excitation energy (of the final state) #2; INC-ENGY-LAB: Incident energy in lab. system #3
39K(P,GAMMA)40CA; between 1130 and 2043 KEV
4 *INC-ENGY-LAB EXC-ENGY7) INTNSTY8) DATA9) DATA110)
EXC-ENGY: Excitation energy (of the final state) #2; INC-ENGY-LAB: Incident energy in lab. system #3; INTNSTY: Intensity
39K(P,GAMMA)40CA; between 1130 and 2043 MEV
5 *INC-ENGY-LAB DATA14)
INC-ENGY-LAB: Incident energy in lab. system #3
39K(P,GAMMA)40CA; between 783 and 2817 KEV
6 *DATA116) DATA217)
39K(P,GAMMA)40CA; between 0.783 and 2.817 MEV

4) COUNTS/15 MICRO COULOMB
5) FINAL LEVEL
6) RELATIVE INTENSITY
7) FINAL LEVEL. THE GAMMA TRANSITION OCCURRED FROM RESONANCE STATETO FINAL LEVEL
8) RELATIVE INTENSITY
9) ANGULAR DISTRIBUTION FUNCTION W(THETA=55 DEG)
10) THE RESONANCE STRENGTHS S=(2J+1)G(P)G(GAMMA)/G , WHERE G.G(P),G(GAMMA) ARE TOTAL WIDTH, PROTON PARTIAL WIDTH AND GAMMA PARTIAL WIDTH, RESPECTIVELY
14) THE RESONANCE STRENGTHS SOTHER RESONANCES
16) TEMPERATURE
17) THE ENERGY AVERAGED REACTION RATE
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