Numerical relativity : solving Einstein's equations on the computer

By: Baumgarte, Thomas WContributor(s): Shapiro, Stuart LMaterial type: TextTextPublication details: Cambridge, U.K.: Cambridge University Press, c2012Description: 698 pISBN: 9780521514071Subject(s): Physics and astronomy | AstrophysicsLOC classification: QC173.6Online resources: Table of Contents Summary: Aimed at students and researchers entering the field, this pedagogical introduction to numerical relativity will also interest scientists seeking a broad survey of its challenges and achievements. Assuming only a basic knowledge of classical general relativity, the book develops the mathematical formalism from first principles, and then highlights some of the pioneering simulations involving black holes and neutron stars, gravitational collapse and gravitational waves. The book contains 300 exercises to help readers master new material as it is presented. Numerous illustrations, many in color, assist in visualizing new geometric concepts and highlighting the results of computer simulations. Summary boxes encapsulate some of the most important results for quick reference. Applications covered include calculations of coalescing binary black holes and binary neutron stars, rotating stars, colliding star clusters, gravitational and magnetorotational collapse, critical phenomena, the generation of gravitational waves, and other topics of current physical and astrophysical significance.---Provided by publisher
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Item type Current library Collection Shelving location Call number Status Notes Date due Barcode Item holds
Book Book ICTS
Physics Rack No 9 QC173.6 (Browse shelf (Opens below)) Checked out to Anwesha Dey (0007742046) Billno: 49593 ; Billdate: 10.01.2022 11/04/2024 02493
Book Book ICTS
Physics Rack No 9 QC173.6 (Browse shelf (Opens below)) Available Billno:96031; Billdate: 2016-12-08 00483
Book Book ICTS
Physics Rack No 9 QC173.6 (Browse shelf (Opens below)) Available Billno:85495; Billdate: 2014-08-12 00150
Total holds: 0

Aimed at students and researchers entering the field, this pedagogical introduction to numerical relativity will also interest scientists seeking a broad survey of its challenges and achievements. Assuming only a basic knowledge of classical general relativity, the book develops the mathematical formalism from first principles, and then highlights some of the pioneering simulations involving black holes and neutron stars, gravitational collapse and gravitational waves. The book contains 300 exercises to help readers master new material as it is presented. Numerous illustrations, many in color, assist in visualizing new geometric concepts and highlighting the results of computer simulations. Summary boxes encapsulate some of the most important results for quick reference. Applications covered include calculations of coalescing binary black holes and binary neutron stars, rotating stars, colliding star clusters, gravitational and magnetorotational collapse, critical phenomena, the generation of gravitational waves, and other topics of current physical and astrophysical significance.---Provided by publisher

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