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au.\*:("ZIMMERMAN IH")

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NUMERICAL COMPARISON BETWEEN ELECTRONICALLY ADIABATIC AND DIABATIC REPRESENTATIONS FOR COLLINEAR ATOM-DIATOM COLLISIONS.ZIMMERMAN IH; GEORGE TF.1975; J. CHEM. PHYS.; U.S.A.; DA. 1975; VOL. 63; NO 5; PP. 2109-2114; BIBL. 21 REF.Article

THEORETICAL STUDY OF ISOTOPE EFFECTS IN THE QUENCHING OF ELECTRONICALLY EXCITED HALOGEN ATOMS BY H2, HD AND D2.ZIMMERMAN IH; GEORGE TF.1975; J. CHEM. SOC., FARADAY TRANS., 2; G.B.; DA. 1975; VOL. 71; NO 12; PP. 2030-2042; BIBL. 43 REF.Article

QUANTUM RESONANCE EFFECTS IN ELECTRONIC-TO-VIBRATIONAL ENERGY TRANSFER IN MOLECULAR COLLISIONS.ZIMMERMAN IH; GEORGE TF.1974; J. CHEM. PHYS.; U.S.A.; DA. 1974; VOL. 61; NO 6; PP. 2468-2470; BIBL. 40 REF.Article

QUANTUM MECHANICAL STUDY OF ELECTRONIC TRANSITIONS IN COLLINEAR ATOM-DIATOM COLLISIONS.ZIMMERMAN IH; GEORGE TF.1975; CHEM. PHYS.; NETHERL.; DA. 1975; VOL. 7; NO 3; PP. 323-335; BIBL. 1 P.Article

OPTICAL POTENTIAL CALCULATIONS FOR MOLECULAR COLLISIONS.ZIMMERMAN IH; GEORGE TF.1974; CHEM. PHYS.; NETHERL.; DA. 1974; VOL. 4; NO 3; PP. 315-336; BIBL. 32 REF.Article

INCLUSION OF DISCRETE-TO-CONTINUUM COUPLING IN MULTIPHOTON EXCITATION AND DISSOCIATION CALCULATIONSZIMMERMAN IH; DRUGER SD; GEORGE TF et al.1983; THEORETICA CHIMICA ACTA; ISSN 0040-5744; DEU; DA. 1983; VOL. 62; NO 3; PP. 257-263; BIBL. 10 REF.Article

QUANTUM MECHANICAL THEORY OF MOLECULAR COLLISIONS IN A LASER FIELD.ZIMMERMAN IH; JIAN MIN YUAN; GEORGE TF et al.1977; J. CHEM. PHYS.; U.S.A.; DA. 1977; VOL. 66; NO 6; PP. 2638-2646; BIBL. 30 REF.Article

F+H2 COLLISIONS ON TWO ELECTRONIC POTENTIAL ENERGY SURFACES: QUANTUM-MECHANICAL STUDY OF THE COLLINEAR REACTIONZIMMERMAN IH; BAER M; GEORGE TF et al.1979; J. CHEM. PHYS.; ISSN 0021-9606; USA; DA. 1979; VOL. 71; NO 10; PP. 4132-4138; BIBL. 26 REF.Article

A QUANTUM-MECHANICAL METHOD FOR CALCULATING LEVEL WIDTHS AND SHIFTS, APPLICABLE TO TYPE I UNIMOLECULAR PREDISSOCIATIONZIMMERMAN IH; JIAN MIN YUAN; GEORGE TF et al.1978; MOLEC. PHYS.; GBR; DA. 1978; VOL. 36; NO 6; PP. 1675-1691; BIBL. 27 REF.Article

GENERALIZED SEMICLASSICAL OPTICAL MODEL AND VELOCITY-DEPENDENT POTENTIALS.GEORGE TF; ZIMMERMAN IH; FRANCHINO HD et al.1975; MOLEC. PHYS.; G.B.; DA. 1975; VOL. 29; NO 6; PP. 1717-1731; BIBL. 23 REF.Article

EFFECTS DUE TO PROXIMITY-INDUCED ELECTRIC DIPOLE MOMENTS ON BR+H2 COLLISIONS IN AN INTENSE LASER FIELDZIMMERMAN IH; GEORGE TF; STALLCOP JR et al.1980; CHEM. PHYS.; NLD; DA. 1980; VOL. 49; NO 1; PP. 59-64; BIBL. 9 REF.Article

THE VIBRONIC REPRESENTATION FOR COLLINEAR ATOM-DIATOM COLLISIONS: TWO-STATE SEMI-CLASSICAL MODEL.LAING JR; GEORGE TF; ZIMMERMAN IH et al.1975; J. CHEM. PHYS.; U.S.A.; DA. 1975; VOL. 63; NO 2; PP. 842-851; BIBL. 45 REF.Article

MOLECULAR COLLISIONS IN A MULTIMODE LASER FIELD: COMPUTATIONAL STUDY OF THE EFFECT OF TIME VARIATION IN THE LASER INTENSITYLEE HW; DEVRIES PL; ZIMMERMAN IH et al.1978; MOLEC. PHYS.; GBR; DA. 1978; VOL. 36; NO 6; PP. 1693-1699; BIBL. 5 REF.Article

A NEW CONCEPT IN LASER-ASSISTED CHEMISTRY. THE ELECTRONIC-FIELD REPRESENTATION.GEORGE TF; ZIMMERMAN IH; YUAN JM et al.1977; ACCOUNTS CHEM. RES.; U.S.A.; DA. 1977; VOL. 10; NO 12; PP. 449-455; BIBL. 22 REF.Article

RECENT THEORETICAL CHEMICAL DYNAMICS AT ROCHESTER IN THE PATHS OF JOSEPH O. HIRSCHFELDERGEORGE TF; ZIMMERMAN IH; DEVRIES PL et al.1982; J. PHYS. CHEM.; ISSN 0022-3654; USA; DA. 1982; VOL. 86; NO 7; PP. 1075-1086; BIBL. 73 REF.Article

SEMICLASSICAL THEORY OF ELECTRONIC TRANSITIONS IN MOLECULAR COLLISIONS: COMBINED EFFECTS OF TUNNELING AND ENERGETICALLY INACCESSIBLE ELECTRONIC STATES.LAING JR; JIAN MIN YUAN; ZIMMERMAN IH et al.1977; J. CHEM. PHYS.; U.S.A.; DA. 1977; VOL. 66; NO 7; PP. 2801-2805; BIBL. 20 REF.Article

SEMICLASSICAL APPROACH TO COLLISION-INDUCED EMISSION IN THE PRESENCE OF INTENSE LASER RADIATION. AN ASPECT IN THE STUDY OF COOPERATIVE CHEMICAL AND OPTICAL PUMPING.KAI SHUE LAM; ZIMMERMAN IH; JIAN MIN YUAN et al.1977; CHEM. PHYS.; NETHERL.; DA. 1977; VOL. 26; NO 3; PP. 455-486; BIBL. 54 REF.Article

THEORY OF MOLECULAR RATE PROCESSES IN THE PRESENCE OF INTENSE LASER RADIATIONGEORGE TF; ZIMMERMAN IH; DEVRIES PL et al.1979; CHEM. BIOCHEM. APPL. LASERS; USA; DA. 1979; VOL. 4; PP. 253-354; BIBL. 126 REF.Article

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