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85022792580
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Based upon studies reported in Ph.D. Thesis, Concordia University, Montreal (b) Bennett, J. M. M. Sc. Thesis, Concordia University, Montreal, 1986.
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Based upon studies reported in: (a) Paventi, M. Ph.D. Thesis, Concordia University, Montreal, 1984. (b) Bennett, J. M. M.Sc. Thesis, Concordia University, Montreal, 1986.
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For the dissociation constant of tribromide ion we have used 0.0625 M when I = 1.0 M and 0.0562 M when I = 0.1 M (Bell, R. P.; Ramsden, E. N. J. Chem. Soc. 1958, 1294).
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For the dissociation constant of tribromide ion we have used 0.0625 M when I = 1.0 M (Jones, G.; Baeckstrom, S. J. Am. Chem. Soc. 1934, 56, 1517) and 0.0562 M when I = 0.1 M (Bell, R. P.; Ramsden, E. N. J. Chem. Soc. 1958, 1294).
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3rd ed.; Harper and Row: New York (b) Moelwyn-Hughes, E. A. The Chemical Statics and Kinetics of Solutions; Academic Press: London, England, 1971; Chapter 5. (c) Benson, S. W. The Foundation of Chemical Kinetics; McGraw-Hill: New York, 1960; pp 494–502. (d) Hammes, G. G. Principles of Chemical Kinetics; Academic Press: New York, 1978; 62–67. (e) Entelis, S. G.; Tiger, R. P. Reaction Kinetics in the Liquid Phase; Wiley: New York, 1976; Chapter 1. (f) Jordan, P. C. Chemical Kinetics and Transport; Plenum Press: New York, 1979; Chapter 9. (g) For more advanced and abstruse treatments, see: Rice, S. A. In Comprehensive Chemical Kinetics; Bamford, C. H., Tipper, C. F. H., Compton, R. G., Eds.; Elsevier: Amsterdam, 1985; Vol. 25.
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(a) Laidler, K. J. Chemical Kinetics, 3rd ed.; Harper and Row: New York, 1987; p 212ff. (b) Moelwyn-Hughes, E. A. The Chemical Statics and Kinetics of Solutions; Academic Press: London, England, 1971; Chapter 5. (c) Benson, S. W. The Foundation of Chemical Kinetics; McGraw-Hill: New York, 1960; pp 494–502. (d) Hammes, G. G. Principles of Chemical Kinetics; Academic Press: New York, 1978; pp 62–67. (e) Entelis, S. G.; Tiger, R. P. Reaction Kinetics in the Liquid Phase; Wiley: New York, 1976; Chapter 1. (f) Jordan, P. C. Chemical Kinetics and Transport; Plenum Press: New York, 1979; Chapter 9. (g) For more advanced and abstruse treatments, see: Rice, S. A. In Comprehensive Chemical Kinetics; Bamford, C. H., Tipper, C. F. H., Compton, R. G., Eds.; Elsevier: Amsterdam, 1985; Vol. 25.
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Bromine attack on phenol, 4-methylphenol, and 4-bromophenol exhibits buffer catalysis
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Ph.D. Thesis, Concordia University, Montreal (b) Tee, O. S.; Iyengar, N. R., manuscript in preparation.
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Bromine attack on phenol, 4-methylphenol, and 4-bromophenol exhibits buffer catalysis: (a) Iyengar, N. R. Ph.D. Thesis, Concordia University, Montreal, 1985. (b) Tee, O. S.; Iyengar, N. R., manuscript in preparation.
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