Problems in relativistic cosmology

After a brief survey of the cosmological features of the observable universe the two main techniques used in theoretical cosmology are developed. These are the Kinematic technique as first used in Kinematic Relativity, based on the concept of a Kinematic equivalence, and the Riemannian technique as...

Full description

Bibliographic Details
Main Author: Rindler, Wolfgang
Other Authors: Whitrow, G. J.
Published: Imperial College London 1956
Subjects:
Online Access:http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.705752
id ndltd-bl.uk-oai-ethos.bl.uk-705752
record_format oai_dc
spelling ndltd-bl.uk-oai-ethos.bl.uk-7057522018-07-10T03:12:41ZProblems in relativistic cosmologyRindler, WolfgangWhitrow, G. J.1956After a brief survey of the cosmological features of the observable universe the two main techniques used in theoretical cosmology are developed. These are the Kinematic technique as first used in Kinematic Relativity, based on the concept of a Kinematic equivalence, and the Riemannian technique as first used in General relativity based on the concept of a Riemannian space-time map. Formulae for proper distance, red=shift, etc. are developed independently in each technique. Others like nebular count formulae, which are less readily amenable to the Kinematic technique, are discussed by the Riemannian technique only. The two techniques pre then correlated. It is found that any homogeneous and isotropic model-universe with given Kinematic properties can be described end discussed in terms of either technique and that a relation exists between the arbitrary elements in the two descriptions. It is shown how formulae associated with either technique can be translated into formulae associated with the other. Thus the geometric apparatus of the Riemannian technique end other useful formulae become available to the Kinematic technique. The correlation extends the scope of the Kinematic technique and at the same time throws light on certain aspects of the Riemannian technique. The red-shift formulae developed earlier are now used to analyse the new Humason-Mayall-Sandage data on red-shifts. It is found that these rule out all but decelerating model=universes unless some further hypotheses are made. The particular hypothesis of varying absolute nebular luminosities is examined and the minimum rate required is found. The last chapter contains e complete analysis of visual horizons in cosmology. Two essentially different types of horizon are recognized end examples are given of models possessing either type, both types at once, or no horizon. In an appendix the tensor significance of the "relativistic" acceleration, as used e.g. in Page's equivalence, is investigated.530.11Imperial College Londonhttp://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.705752http://hdl.handle.net/10044/1/44219Electronic Thesis or Dissertation
collection NDLTD
sources NDLTD
topic 530.11
spellingShingle 530.11
Rindler, Wolfgang
Problems in relativistic cosmology
description After a brief survey of the cosmological features of the observable universe the two main techniques used in theoretical cosmology are developed. These are the Kinematic technique as first used in Kinematic Relativity, based on the concept of a Kinematic equivalence, and the Riemannian technique as first used in General relativity based on the concept of a Riemannian space-time map. Formulae for proper distance, red=shift, etc. are developed independently in each technique. Others like nebular count formulae, which are less readily amenable to the Kinematic technique, are discussed by the Riemannian technique only. The two techniques pre then correlated. It is found that any homogeneous and isotropic model-universe with given Kinematic properties can be described end discussed in terms of either technique and that a relation exists between the arbitrary elements in the two descriptions. It is shown how formulae associated with either technique can be translated into formulae associated with the other. Thus the geometric apparatus of the Riemannian technique end other useful formulae become available to the Kinematic technique. The correlation extends the scope of the Kinematic technique and at the same time throws light on certain aspects of the Riemannian technique. The red-shift formulae developed earlier are now used to analyse the new Humason-Mayall-Sandage data on red-shifts. It is found that these rule out all but decelerating model=universes unless some further hypotheses are made. The particular hypothesis of varying absolute nebular luminosities is examined and the minimum rate required is found. The last chapter contains e complete analysis of visual horizons in cosmology. Two essentially different types of horizon are recognized end examples are given of models possessing either type, both types at once, or no horizon. In an appendix the tensor significance of the "relativistic" acceleration, as used e.g. in Page's equivalence, is investigated.
author2 Whitrow, G. J.
author_facet Whitrow, G. J.
Rindler, Wolfgang
author Rindler, Wolfgang
author_sort Rindler, Wolfgang
title Problems in relativistic cosmology
title_short Problems in relativistic cosmology
title_full Problems in relativistic cosmology
title_fullStr Problems in relativistic cosmology
title_full_unstemmed Problems in relativistic cosmology
title_sort problems in relativistic cosmology
publisher Imperial College London
publishDate 1956
url http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.705752
work_keys_str_mv AT rindlerwolfgang problemsinrelativisticcosmology
_version_ 1718711410906628096