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Citation(s) in
RCA
13
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For:
Onda K
, Truhlar DG.
Model potentials for electron scattering: Converged close coupling calculations for the differential cross section fore−N2at 30–50 eV.
J Chem Phys
1978. [DOI:
10.1063/1.436762
]
[
Citation(s) in
RCA
: 28
]
[
Impact Index Per Article: 0.6
]
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Reference Citation Analysis
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[Indexed: 11/14/2022]
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Cited by Other Article(s)
1
Onda K
, Truhlar DG. Close-coupling calculations with an INDOX/1s static potential, semiclassical exchange, and a semi-empirical polarisation potential for electron-CO2elastic scattering and rotational excitation.
ACTA ACUST UNITED AC
2001. [DOI:
10.1088/0022-3700/12/2/018
]
[
Citation(s) in
RCA
: 28
]
[
Impact Index Per Article: 1.2
]
[
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[Indexed: 11/12/2022]
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2
Application of fixed-nuclei scattering theory to electron methane elastic and inelastic differential cross sections at 10 eV impact energy.
Theor Chem Acc
1987. [DOI:
10.1007/bf00527642
]
[
Citation(s) in
RCA
: 2
]
[
Impact Index Per Article: 0.1
]
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[Indexed: 11/25/2022]
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3
Thirumalai D
, Onda K, Truhlar DG. Elastic scattering and rotational excitation of a polyatomic molecule by electron impact: Acetylene.
J Chem Phys
1981. [DOI:
10.1063/1.440804
]
[
Citation(s) in
RCA
: 14
]
[
Impact Index Per Article: 0.3
]
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[Indexed: 11/15/2022]
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4
Onda K
, Truhlar DG. Quantum mechanical study of elastic scattering and rotational excitation of CO by electrons.
J Chem Phys
1980. [DOI:
10.1063/1.440482
]
[
Citation(s) in
RCA
: 15
]
[
Impact Index Per Article: 0.3
]
[
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[Indexed: 11/14/2022]
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5
Gianturco F
, Lamanna U. The Glauber approximation in molecular scattering.
Mol Phys
1980. [DOI:
10.1080/00268978000101891
]
[
Citation(s) in
RCA
: 0
]
[
Impact Index Per Article: 0
]
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[Indexed: 10/24/2022]
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6
Rumble JR
, Truhlar DG. Comparison of local exchange potentials for electron–N2 scattering.
J Chem Phys
1980. [DOI:
10.1063/1.439758
]
[
Citation(s) in
RCA
: 22
]
[
Impact Index Per Article: 0.5
]
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[Indexed: 11/14/2022]
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7
Onda K
, Truhlar DG. State‐to‐state cross sections for elastic and inelastic electron scattering by N2 at 20–35 eV, including resonant enhancement of vibrational excitation.
J Chem Phys
1980. [DOI:
10.1063/1.439762
]
[
Citation(s) in
RCA
: 21
]
[
Impact Index Per Article: 0.5
]
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[Indexed: 11/14/2022]
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8
Onda K
, Truhlar DG. Comparison of local‐exchange approximations for intermediate‐energy electron–molecule differential cross sections.
J Chem Phys
1980. [DOI:
10.1063/1.439225
]
[
Citation(s) in
RCA
: 18
]
[
Impact Index Per Article: 0.4
]
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[Indexed: 11/14/2022]
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9
Rumble JR
, Truhlar DG. Low‐energy electron–molecule scattering: Comparison of coupled channel treatments of e−N2 scattering at 13.6 eV using various approximations to the static and exchange potentials and an approximate polarization potential.
J Chem Phys
1979. [DOI:
10.1063/1.438034
]
[
Citation(s) in
RCA
: 17
]
[
Impact Index Per Article: 0.4
]
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[Indexed: 11/14/2022]
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10
Onda K
, Truhlar DG. SCF treatment of charge polarization effects in intermediate‐energy electron scattering calculations with applications to N2.
J Chem Phys
1979. [DOI:
10.1063/1.437684
]
[
Citation(s) in
RCA
: 25
]
[
Impact Index Per Article: 0.6
]
[
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[Indexed: 11/14/2022]
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11
Onda K
, Truhlar DG. Electron–molecule scattering at intermediate energy. Centrifugal-dominant channel decoupling and the INDOX polarized SCF model applied to N2 at 50 eV.
J Chem Phys
1979. [DOI:
10.1063/1.438283
]
[
Citation(s) in
RCA
: 20
]
[
Impact Index Per Article: 0.4
]
[
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[Indexed: 11/14/2022]
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12
Onda K
, Truhlar DG. State-to-state cross sections for electron impact on N2. Close coupling and polarized Born calculations for rotational and vibrational excitation and pure elastic scattering at nonresonant energies.
J Chem Phys
1979. [DOI:
10.1063/1.438284
]
[
Citation(s) in
RCA
: 31
]
[
Impact Index Per Article: 0.7
]
[
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[Indexed: 11/14/2022]
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13
Truhlar DG
, Van‐Catledge FA. Adiabatic polarization potentials for electron scattering by N2 and CO.
J Chem Phys
1978. [DOI:
10.1063/1.437063
]
[
Citation(s) in
RCA
: 23
]
[
Impact Index Per Article: 0.5
]
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[Indexed: 11/14/2022]
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