Physics in the Netherlands PDF Download
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ISBN:
Category : Physics
Languages : en
Pages : 400
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Author:
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ISBN:
Category : Physics
Languages : en
Pages : 400
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Author: Klaas Van Berkel
Publisher: BRILL
ISBN: 9789004100060
Category : Science
Languages : en
Pages : 712
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Book Description
The handbook A History of Science in The Netherlands aims to correct this situation by providing a chronological and thematic survey of the field from the 16th century to the present, essays on selected aspects of science in the Netherlands, and reference biographies of about 65 important Dutch scientists.
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ISBN:
Category : Physics
Languages : en
Pages :
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Author:
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ISBN:
Category :
Languages : en
Pages : 168
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Author: Nederlandse Organisatie voor Zuiver-Wetenschappelijk Onderzoek
Publisher:
ISBN:
Category :
Languages : en
Pages : 168
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Author:
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ISBN:
Category : Research
Languages : en
Pages :
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Author: Fons Alkemade
Publisher: Springer
ISBN: 3030035867
Category : Technology & Engineering
Languages : en
Pages : 155
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In October 1918, Jan Burgers, 23 years old, started as professor of ‘aerodynamics, hydrodynamics, and their applications’ at the Technical University in Delft. This can be regarded as the birth of fluid mechanics in the Netherlands, not only as an academic discipline but also as the start of the serious study of flow phenomena in engineering environments. During the period of Burgers’ tenure in Delft (till 1955) three Dutch institutes were founded which to this day remain important centres of research in various fields of fluid mechanics: aerospace engineering, hydraulics, and naval engineering. Burgers and others developed mathematical, experimental, and numerical approaches of a broad range of fluid flows; some of their achievements have become well-known worldwide and can be seen as highlights of Dutch fluid mechanics. From the 1950s ‘stromingsleer’ (flow theory) attained a permanent and respected place in the curriculum and research of (technical) universities, at many old and new research institutes and also at several industrial research laboratories. In the 1980s fluid mechanics finally became ‘recognized’ as a serious branch of physics and an important field of (applied) science. This resulted in a close cooperation between academic groups, institutes and industry and the foundation of the Burgerscentrum, the Research School for Fluid Mechanics in the Netherlands. One hundred years after Burgers’ appointment in Delft, Dutch fluid mechanics is still very much alive. This volume gives a full account of its rich history and also offers a view on the broad range of areas of application: transport, energy production, biology and medicine, production processes, etc. It has been written not only for those working in this field but also for those interested in the history of Dutch science and in the development of science and the fascinating world of fluid flow phenomena.
Author: Pays-Bas (Royaume, 1815- ). Nederlandse Organisatie voor Zuiver-Wetenschappelijk Onderzoek
Publisher:
ISBN:
Category : Research
Languages : en
Pages : 0
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Author: S.T. Groenman
Publisher:
ISBN:
Category : Research
Languages : en
Pages : 244
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Author: Carlos Martins
Publisher: Springer Science & Business Media
ISBN: 3642193978
Category : Science
Languages : en
Pages : 177
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Book Description
Nature is characterized by a number of physical laws and fundamental dimensionless couplings. These determine the properties of our physical universe, from the size of atoms, cells and mountains to the ultimate fate of the universe as a whole. Yet it is rather remarkable how little we know about them. The constancy of physical laws is one of the cornerstones of the scientific research method, but for fundamental couplings this is an assumption with no other justification than a historical assumption. There is no 'theory of constants' describing their role in the underlying theories and how they relate to one another or how many of them are truly fundamental. Studying the behaviour of these quantities throughout the history of the universe is an effective way to probe fundamental physics. This explains why the ESA and ESO include varying fundamental constants among their key science drivers for the next generation of facilities. This symposium discussed the state-of-the-art in the field, as well as the key developments anticipated for the coming years.