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NSR database version of April 11, 2024.

Search: Author = R.K.Mohindra

Found 19 matches.

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1995BA99      Indian J.Pure Appl.Phys. 333, 256 (1995)

S.L.Bansal, R.K.Mohindra

Computed 14 MeV Neutron-Induced Reaction Cross-Sections of Some Medium Mass Elements

NUCLEAR REACTIONS 28Si, 35Cl, 51V, 55Mn, 58Ni, 59Co, 60Ni(n, n'), (n, p), (n, α), 65Cu(n, n'), (n, α), E=14 MeV; calculated σ. Evaporation model, pre-equilibrium emission.


1994BA98      Indian J.Pure Appl.Phys. 32, 216 (1994)

S.L.Bansal, R.K.Mohindra

Calculation of Neutron-Induced Reaction Cross-Sections of 27Al, 59Co and 93Nb

NUCLEAR REACTIONS 27Al, 59Co, 93Nb(n, 2n), (n, 3n), (n, p), (n, α), (n, d), (n, t), (n, 3He), E=1-20 MeV; calculated σ(E). Evaporation model, pre-equilibrium emission mechanism.


1993KH09      Indian J.Pure Appl.Phys. 31, 371 (1993)

R.S.Khanchi, S.L.Bansal, S.Aggarwal, S.Khurana, R.K.Mohindra

Computed 14 MeV Neutron Partial Cross-Sections of Mg24, Fe56 and Zn64

NUCLEAR REACTIONS 24Mg, 56Fe, 64Zn(n, n'), (n, 2n), (n, np), (n, nα), (n, p), (n, 2p), (n, pα), (n, α), (n, nα), (n, 2α), E=14 MeV; calculated primary, secondary neutron partial σ. Preequilibrium emission, constant temperature evaporation models, some approximations.


1986GU17      Indian J.Phys. 60A, 323 (1986)

S.K.Gupta, R.K.Mohindra, H.K.Sahajwani

Establishment of Shell Effects in (n, α) Cross-Sections at 14 MeV

NUCLEAR STRUCTURE Z=17-22; analyzed σ(n, α); deduced shell effects.


1985GU17      Indian J.Phys. 59A, 541 (1985)

S.K.Gupta, R.K.Mohindra, H.K.Sahajwani

Establishment of Shell Effects in (n, p) Cross Sections at 14 MeV

NUCLEAR REACTIONS 44,48Ca, 40Ar, 48,47Ti, 60,62Ni, 64,66Zn, 56,58Fe, 70Ge, 112Sn, 124Te, 106Cd, 208Pb, 209Bi, 205Tl(n, p), E=14 MeV; analyzed σ; deduced shell effects role.


1975WA05      Nucl.Sci.Eng. 56, 96 (1975)

B.S.Wadhwa, R.K.Mohindra

Calculated Nickel-58 Reaction Cross Sections Around 14-MeV Neutron Energy

NUCLEAR REACTIONS 58Ni(n, X), E=14 MeV; calculated σ.

doi: 10.13182/NSE75-A26625
Citations: PlumX Metrics


1974WA24      Indian J.Pure Appl.Phys. 12, 645 (1974)

B.S.Wadhwa, K.K.Manocha, R.K.Mohindra

Comparison of Various Level Density Formulae

NUCLEAR STRUCTURE A=20-240; calculated level density.


1973MA49      Indian J.Pure Appl.Phys. 11, 61 (1973)

K.K.Manocha, R.K.Mohindra

Analysis of 197Au(n, p) Spectrum at 14 MeV

NUCLEAR REACTIONS 197Au(n, p), E=14 MeV; calculated σ(Ep, θ).


1966SW03      Phys.Rev. 150, 877 (1966)

L.W.Swenson, R.K.Mohindra

Ni58(p, p')Ni58 Reaction in the 9.1- to 9.55-MeV Range

NUCLEAR STRUCTURE 58Ni; measured not abstracted; deduced nuclear properties.

doi: 10.1103/PhysRev.150.877
Citations: PlumX Metrics


1965MO01      Bull.Am.Phys.Soc. 10, No.1, 38, CC13 (1965)

R.K.Mohindra, D.M.Van Patter

Angular Distribution of γ-Rays Arising from Ge70,72(p, p'γ) Reactions

NUCLEAR STRUCTURE 72Ge, 70Ge; measured not abstracted; deduced nuclear properties.


1965MO12      Phys.Rev. 139, B274 (1965); Erratum Phys.Rev. 140, AB5 (1965)

R.K.Mohindra, D.M.Van Patter

Study of the Level Structure of Ni60 from (p, p'γ) Angular Distributions

NUCLEAR STRUCTURE 60Ni; measured not abstracted; deduced nuclear properties.

doi: 10.1103/PhysRev.139.B274
Citations: PlumX Metrics


1965MO25      Bull.Am.Phys.Soc. 10, No.4, 496, GA6 (1965)

R.K.Mohindra, L.W.Swenson

Intermediate Structure in Ni58(p, p') Reaction with 9.10- to 9.55-MeV Protons

NUCLEAR STRUCTURE 59Cu; measured not abstracted; deduced nuclear properties.


1965SH09      Phys.Letters 19, 573 (1965)

M.H.Shapiro, P.F.Hinrichsen, R.Middleton, R.K.Mohindra

The Existence of Three Doublets in 56Fe

NUCLEAR STRUCTURE 56Fe; measured not abstracted; deduced nuclear properties.

doi: 10.1016/0031-9163(65)90782-1
Citations: PlumX Metrics


1965VA01      Bull.Am.Phys.Soc. 10, No.1, 38, CC12 (1965)

D.M.Van Patter, R.K.Mohindra, G.T.Wood, P.F.Hinrichsen

Proton-γ Coincidences in Ni60

NUCLEAR STRUCTURE 60Ni; measured not abstracted; deduced nuclear properties.


1964MO08      Bull.Am.Phys.Soc. 9, No.4, 471, HA11 (1964)

R.K.Mohindra, D.W.Kent, D.M.Van Patter

Angular Distributions of (p, p'γ) Radiations from 60Ni

NUCLEAR STRUCTURE 60Ni; measured not abstracted; deduced nuclear properties.


1964VA18      Phys.Letters 12, 223 (1964)

D.M.Van Patter, R.K.Mohindra

Identification of a 3+ State in Ni60 with Three Phonon Characteristics

NUCLEAR STRUCTURE 60Ni; measured not abstracted; deduced nuclear properties.

doi: 10.1016/0031-9163(64)91082-0
Citations: PlumX Metrics


1963HA42      Nucl.Phys. 47, 473 (1963)

H.S.Hans, R.K.Mohindra

A Study of Protons from In115 and Au197 with 14.8 MeV Incident Neutrons

NUCLEAR STRUCTURE 197Pt, 115Cd; measured not abstracted; deduced nuclear properties.

doi: 10.1016/0029-5582(63)90889-7
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset30055.


1963MO13      Proc.Nucl.Phys.Symp.Bombay, p.155 (1963)

R.K.Mohindra, H.S.Hans

Study of Co59(n, p)Fe59 Reaction at 14.8 MeV

NUCLEAR STRUCTURE 59Fe; measured not abstracted; deduced nuclear properties.


1963MO24      Nucl.Phys. 44, 597 (1963)

R.K.Mohindra, H.S.Hans

The energy and angular distribution of protons from 14.8 MeV neutron reactions with Al27 and Co59

NUCLEAR REACTIONS 27Al(n, p), 59Co(n, p), E=14.8 MeV; measured products, 27Mg, Eπ, Iπ; deduced σ(θ). Data were imported from EXFOR entry 30057.

doi: 10.1016/0029-5582(63)90052-X
Citations: PlumX Metrics

Data from this article have been entered in the EXFOR database. For more information, access X4 dataset30057.


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