Optical activity and chemical constitution : the optical rotatory dispersion of glycide phenyl ether and related compounds

The thesis includes an account of the development of the modern conception of the causes of optical activity and optical rotatory dispersion. The optical rotatory dispersions of glycide phenyl ether and sec. octyl phenyl ether, in the homogeneous state, have been examined in the visible and ultra-vi...

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Main Author: Hargreaves, M. K.
Published: University of Surrey 1948
Online Access:https://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.730934
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spelling ndltd-bl.uk-oai-ethos.bl.uk-7309342018-09-11T03:19:04ZOptical activity and chemical constitution : the optical rotatory dispersion of glycide phenyl ether and related compoundsHargreaves, M. K.1948The thesis includes an account of the development of the modern conception of the causes of optical activity and optical rotatory dispersion. The optical rotatory dispersions of glycide phenyl ether and sec. octyl phenyl ether, in the homogeneous state, have been examined in the visible and ultra-violet regions of the spectrum. The optical rotatory dispersion of glycide phenyl other has also been examined in some fourteen solvents in the visible region, and in othereal solution in the ultra-violet region. It is suggested that the effect temperature on the rotatory dispersion of glycide phenyl other, both in the homogeneous state and in solution in n-butyl other, may be due to its existence in the form of a cyclic structure which is readily destroyed on raising the temperature.University of Surreyhttps://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.730934http://epubs.surrey.ac.uk/844025/Electronic Thesis or Dissertation
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description The thesis includes an account of the development of the modern conception of the causes of optical activity and optical rotatory dispersion. The optical rotatory dispersions of glycide phenyl ether and sec. octyl phenyl ether, in the homogeneous state, have been examined in the visible and ultra-violet regions of the spectrum. The optical rotatory dispersion of glycide phenyl other has also been examined in some fourteen solvents in the visible region, and in othereal solution in the ultra-violet region. It is suggested that the effect temperature on the rotatory dispersion of glycide phenyl other, both in the homogeneous state and in solution in n-butyl other, may be due to its existence in the form of a cyclic structure which is readily destroyed on raising the temperature.
author Hargreaves, M. K.
spellingShingle Hargreaves, M. K.
Optical activity and chemical constitution : the optical rotatory dispersion of glycide phenyl ether and related compounds
author_facet Hargreaves, M. K.
author_sort Hargreaves, M. K.
title Optical activity and chemical constitution : the optical rotatory dispersion of glycide phenyl ether and related compounds
title_short Optical activity and chemical constitution : the optical rotatory dispersion of glycide phenyl ether and related compounds
title_full Optical activity and chemical constitution : the optical rotatory dispersion of glycide phenyl ether and related compounds
title_fullStr Optical activity and chemical constitution : the optical rotatory dispersion of glycide phenyl ether and related compounds
title_full_unstemmed Optical activity and chemical constitution : the optical rotatory dispersion of glycide phenyl ether and related compounds
title_sort optical activity and chemical constitution : the optical rotatory dispersion of glycide phenyl ether and related compounds
publisher University of Surrey
publishDate 1948
url https://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.730934
work_keys_str_mv AT hargreavesmk opticalactivityandchemicalconstitutiontheopticalrotatorydispersionofglycidephenyletherandrelatedcompounds
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