총 1,843건 중 1,000건 출력
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991
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Modeling the Bacterial Photosynthetic Reaction Center 3: Interpretation of Effects of Site-Directed Mutagenesis on the Special-Pair Midpoint Potential
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Reimers, J. R.;
Hughes, J. M.;
Hush, N. S.;
;
(Biochemistry,
v.39,
2000,
pp.16185-16189)
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992
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Photocatalytic systems. LXIII. Intervalence transfer (IT) behaviour and IT photochemistry of mixed-valence compounds with cyanometallates
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Hennig, H.;
Rehorek, A.;
Rehorek, D.;
Thomas, Ph.;
Sektion Chemie, Karl-Marx-Universitä
t Leipzig, DDR-7010 Leipzig, Liebigstr. 18, G.D.R.;
Sektion Chemie, Karl-Marx-Universitä
t Leipzig, DDR-7010 Leipzig, Liebigstr. 18, G.D.R.;
Sektion Chemie, Karl-Marx-Universitä
t Leipzig, DDR-7010 Leipzig, Liebigstr. 18, G.D.R.;
Sektion Chemie, Karl-Marx-Universitä
t Leipzig, DDR-7010 Leipzig, Liebigstr. 18, G.D.R.;
(Inorganica chimica acta,
v.86,
1984,
pp.41-49)
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993
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Solitons in finite and infinite length negative-defect trans-polyacetylene and the corresponding Brooker (polymethinecyanine) cations. 3. Relation between predicted soliton charge-density wave structure of odd polyene anions and carbon-13 NMR chemical shifts
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Reimers, J. R.;
Craw, J. S.;
Hush, N. S.;
;
(The Journal of physical chemistry,
v.97,
1993,
pp.2778-2787)
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994
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Promoter strength and position govern promoter competition
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Mervenaz Koska;
Tomek Swigut;
Alistair Nicol Boettiger;
Joanna Wysocka;
;
(,
v.,
2025,
)
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995
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Development of electrochemical-thermal modelling for large-format Li-ion battery
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Hou, Min;
Hu, Yiyang;
Zhang, Jianbang;
Cao, Hui;
Wang, Zhenbo;
SMIIT Key Laboratory of Critical Materials Technology for New Energy Conversion and Storage, School of Chemistry and Chemical Engineering, State Key Lab of Urban Water Resource and Environment, Harbin Institute of Technology;
Ruipu Energy Co., Ltd.;
Ruipu Energy Co., Ltd.;
Ruipu Energy Co., Ltd.;
SMIIT Key Laboratory of Critical Materials Technology for New Energy Conversion and Storage, School of Chemistry and Chemical Engineering, State Key Lab of Urban Water Resource and Environment, Harbin Institute of Technology;
(Electrochimica acta,
v.347,
2020,
pp.136280)
-
996
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Electrochemical and Spectroscopic Effects of Mixed Substituents in Bis(phenolate)–Copper(II) Galactose Oxidase Model Complexes
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Pratt, Russell C.;
Lyons, Christopher T.;
Wasinger, Erik C.;
Stack, T. Daniel P.;
Department of Chemistry, Stanford University, Stanford, California 94305, United States;
Department of Chemistry, Stanford University, Stanford, California 94305, United States;
Department of Chemistry, California State University, Chico, Chico, California 95929, United States;
Department of Chemistry, Stanford University, Stanford, California 94305, United States;
(Journal of the American Chemical Society,
v.134,
2012,
pp.7367-7377)
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997
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Utilization of the Vibrating Probe and Ion-Selective Microelectrode Techniques to Investigate Electrophysiological Responses to Wounding in Pea Roots
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HUSH, J. M.;
NEWMAN, I. A.;
OVERALL, R. L.;
;
(Journal of experimental botany,
v.43,
1992,
pp.1251-1257)
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998
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Finite-field method calculations. IV. Higher-order moments, dipole moment gradients, polarisability gradients and field-induced shifts in molecular properties: Application to N<SUB>2</SUB>, CO, CN<SUP>−</SUP>, HCN and HNC
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Gready, Jill E.;
Bacskay, G.B.;
Hush, N.S.;
;
(Chemical physics,
v.31,
1978,
pp.467-483)
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999
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Inter-porphyrin coupling: how strong should it be for molecular electronics applications?
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Reimers, Jeffrey R.;
Hush, Noel S.;
Crossley, Maxwell J.;
School of Chemistry, The University of Sydney, NSW 2006, Australia;
School of Chemistry, The University of Sydney, NSW 2006, Australia;
School of Chemistry, The University of Sydney, NSW 2006, Australia;
(Journal of porphyrins and phthalocyanines,
v.6,
2002,
pp.795-805)
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1000
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Calculation of tunnelling and over-barrier decay rates by a generalised method of beats
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Cribb, Peter H.;
Nordholm, Sture;
Hush, N.S.;
;
(Chemical physics,
v.29,
1978,
pp.31-41)