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  2. MATHEMATICAL TRIPOS Part II Wednesday 6 June 2007 9 ...

    https://www.maths.cam.ac.uk/undergrad/pastpapers/files/2007/PaperII_2.pdf
    17 Jun 2019: Derive the Maxwell relation(S. p. )T. = (V. T. )p. The diagram below illustrates the Joule–Thomson throttling process for a porousbarrier.
  3. MATHEMATICAL TRIPOS Part II Wednesday 8 June 2005 9 ...

    https://www.maths.cam.ac.uk/undergrad/pastpapers/files/2005/PaperII_2.pdf
    17 Jun 2019: Explain what is meant by an adiabatic change. Starting with the first law in differential form, derive the Maxwell relation(S.
  4. MATHEMATICAL TRIPOS Part II Wednesday 7 June 2006 9 ...

    https://www.maths.cam.ac.uk/undergrad/pastpapers/files/2006/PaperII_2.pdf
    17 Jun 2019: Byestablishing a suitable Maxwell identity, show that. CVV. T. = T2P.
  5. MATHEMATICAL TRIPOS Part II Thursday 5 June 2008 1.30 ...

    https://www.maths.cam.ac.uk/undergrad/pastpapers/files/2008/PaperII_3.pdf
    17 Jun 2019: T. V. dV. [You may use any standard Maxwell relation without proving it.].
  6. MATHEMATICAL TRIPOS Part III Tuesday 3 June 2003 9 ...

    https://www.maths.cam.ac.uk/postgrad/part-iii/files/pastpapers/2003/Paper71.pdf
    30 Aug 2019: a Maxwell solid. Determine the equation of motion forsuch a beam when it is clamped at one end and subject to a constant transverse force atthe other, as shown above.
  7. MATHEMATICAL TRIPOS Part II Monday 6 June 2005 1.30 ...

    https://www.maths.cam.ac.uk/undergrad/pastpapers/files/2005/PaperII_1.pdf
    17 Jun 2019: 18. 34B Electrodynamics. In a frame F the electromagnetic fields (E, B) are encoded into the Maxwell field4-tensor F ab and its dual F ab, where.
  8. MATHEMATICAL TRIPOS Part II Monday, 1 June, 2015 1:30 ...

    https://www.maths.cam.ac.uk/undergrad/pastpapers/files/2015/PaperII_1.pdf
    17 Jun 2019: Maxwell’s equations are µFµν = µ0Jν and ρFµν νFρµ µFνρ = 0. ].
  9. MATHEMATICAL TRIPOS Part IB 2012 List of Courses Analysis ...

    https://www.maths.cam.ac.uk/undergrad/pastpapers/files/2012/List_IB.pdf
    17 Jun 2019: of a single closed loop of wire. Use the Maxwell equation. ... 11. Paper 3, Section II. 17B ElectromagnetismUsing the Maxwell equations. E = ρǫ0. ,
  10. MATHEMATICAL TRIPOS Part II Friday 6 June 2008 9.00 ...

    https://www.maths.cam.ac.uk/undergrad/pastpapers/files/2008/PaperII_4.pdf
    17 Jun 2019: Paper 4. 21. 35D Electrodynamics. The Maxwell field tensor is given by.
  11. MATHEMATICAL TRIPOS Part II Alternative A Tuesday 4 June ...

    https://www.maths.cam.ac.uk/undergrad/pastpapers/files/2002/PaperIIA_2.pdf
    17 Jun 2019: rank tensor,the Maxwell stress tensor. ... Obtain the Maxwell stress tensor and verifythat its divergence vanishes. (ii) The magnetic field in a stellar atmosphere is maintained by steady currents andthe Lorentz force vanishes.
  12. MATHEMATICAL TRIPOS Part II Friday, 10 June, 2011 9:00 ...

    https://www.maths.cam.ac.uk/undergrad/pastpapers/files/2011/PaperII_4.pdf
    17 Jun 2019: iii) Describe the Maxwell construction to determine the condition for phase equilibrium.Hence sketch the regions of the van der Waals isotherm at T < Tc that correspondto metastable and unstable states.
  13. MATHEMATICAL TRIPOS Part IA 2013 List of Courses Analysis ...

    https://www.maths.cam.ac.uk/undergrad/pastpapers/files/2013/List_IA.pdf
    17 Jun 2019: Now assume that E(x, t) and B(x, t) obey Maxwell’s equations, which in suitableunits read.
  14. MATHEMATICAL TRIPOS Part II Friday, 3 June, 2016 9:00 ...

    https://www.maths.cam.ac.uk/undergrad/pastpapers/files/2016/paperii_4.pdf
    17 Jun 2019: Derive the Maxwell relation. (S. V. ). T. =. (p. T. ).
  15. MATHEMATICAL TRIPOS Part II Monday 4 June 2007 9 ...

    https://www.maths.cam.ac.uk/undergrad/pastpapers/files/2007/PaperII_1.pdf
    17 Jun 2019: σ′ = γ(σ vJ), J′ = γ(J vσ). Using cylindrical polar coordinates, and the integral forms of the Maxwell equations E = µ0ρ and B = µ0j, derive the electric and magnetic fields
  16. PaperII_1.dvi

    https://www.maths.cam.ac.uk/undergrad/pastpapers/files/2009/PaperII_1.pdf
    17 Jun 2019: to Maxwell’s equations by.
  17. MATHEMATICAL TRIPOS Part II List of Courses Geometry of ...

    https://www.maths.cam.ac.uk/undergrad/pastpapers/files/2001/list_II.pdf
    17 Jun 2019: Part II. 36. A1/5 B1/4 Electromagnetism. (i) Write down the two Maxwell equations that govern steady magnetic fields.
  18. MATHEMATICAL TRIPOS Part II Wednesday, 6 June, 2012 9:00 ...

    https://www.maths.cam.ac.uk/undergrad/pastpapers/files/2012/PaperII_2.pdf
    17 Jun 2019: gas. By first establishing a suitable Maxwell relation, show that. E.
  19. MATHEMATICAL TRIPOS Part II Thursday, 4 June, 2015 9:00 ...

    https://www.maths.cam.ac.uk/undergrad/pastpapers/files/2015/PaperII_3.pdf
    17 Jun 2019: i) Use the first law of thermodynamics to derive the Maxwell relation.
  20. MATHEMATICAL TRIPOS Part IB 2014 List of Courses Analysis ...

    https://www.maths.cam.ac.uk/undergrad/pastpapers/files/2014/List_IB.pdf
    17 Jun 2019: 6A ElectromagnetismStarting from Maxwell’s equations, deduce that. dΦ. dt= E,. for a moving circuit C, where Φ is the flux of B through the circuit and where theelectromotive force E ... Using Maxwell’sequations and the divergence theorem, derive a
  21. MATHEMATICAL TRIPOS Part III Friday, 28 May, 2010 1:30 ...

    https://www.maths.cam.ac.uk/postgrad/part-iii/files/pastpapers/2010/Paper41.pdf
    30 Aug 2019: iii) The Maxwell construction and the occurence of domains;. (iv) The idea of critical exponents and how they may be derived;.

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