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A01=Joel Franklin
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Mathematical Methods for Oscillations and Waves

English

By (author): Joel Franklin

Anchored in simple and familiar physics problems, the author provides a focused introduction to mathematical methods in a narrative driven and structured manner. Ordinary and partial differential equation solving, linear algebra, vector calculus, complex variables and numerical methods are all introduced and bear relevance to a wide range of physical problems. Expanded and novel applications of these methods highlight their utility in less familiar areas, and advertise those areas that will become more important as students continue. This highlights both the utility of each method in progressing with problems of increasing complexity while also allowing students to see how a simplified problem becomes 're-complexified'. Advanced topics include nonlinear partial differential equations, and relativistic and quantum mechanical variants of problems like the harmonic oscillator. Physics, mathematics and engineering students will find 300 problems treated in a sophisticated manner. The insights emerging from Franklin's treatment make it a valuable teaching resource. See more
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A01=Joel FranklinAge Group_UncategorizedAuthor_Joel Franklinautomatic-updateCategory1=Non-FictionCategory=PHDSCategory=PHUCOP=United KingdomDelivery_Delivery within 10-20 working daysLanguage_EnglishPA=In stockPrice_€50 to €100PS=Activesoftlaunch
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Product Details
  • Weight: 750g
  • Dimensions: 195 x 253mm
  • Publication Date: 05 Mar 2020
  • Publisher: Cambridge University Press
  • Publication City/Country: United Kingdom
  • Language: English
  • ISBN13: 9781108488228

About Joel Franklin

Joel Franklin is a professor in the Physics Department of Reed College Oregon. His research focuses on mathematical and computational methods with applications to classical mechanics quantum mechanics electrodynamics general relativity and modifications to general relativity He is also the author of Advanced Mechanics and General Relativity (Cambridge 2010) Computational Methods for Physics (Cambridge 2013) and Classical Field Theory (Cambridge 2017).

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