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  2. lectures

    www.tcm.phy.cam.ac.uk/~bds10/aqp/lec2_compressed.pdf
    21 Oct 2009: 2 , leading to bound state energy E = ma2V 20.
  3. lectures

    www.tcm.phy.cam.ac.uk/~bds10/aqp/lec22-24_compressed.pdf
    27 Nov 2009: non-examinable in this course. Synopsis: Lectures 20-24. 15 Scattering theory†Elastic and inelastic scattering; †method of particle waves; †Bornseries expansion; Born approximation from Fermi’s Golden rule;†scattering of
  4. lectures

    www.tcm.phy.cam.ac.uk/~bds10/aqp/lec22-24.pdf
    27 Nov 2009: Lecture 22Relativistic Quantum Mechanics. Background. Why study relativistic quantum mechanics? 1 Many experimental phenomena cannot be understood within purelynon-relativistic domain. e.g. quantum mechanical spin, emergence of new
  5. lectures

    www.tcm.phy.cam.ac.uk/~bds10/aqp/lec20-21_compressed.pdf
    27 Nov 2009: K 2 = k2 U0. With kR ' 1, K % U1/20 (1 O(k2/U0)), find scattering length,. ... σtot %4π. k2sin2 δ0(k) % 4πR2. (tan(KR). KR 1. )2, K % U1/20.
  6. lectures

    www.tcm.phy.cam.ac.uk/~bds10/aqp/lec20-21.pdf
    27 Nov 2009: K 2 = k2 U0. With kR ' 1, K % U1/20 (1 O(k2/U0)), find scattering length,. ... σtot %4π. k2sin2 δ0(k) % 4πR2. (tan(KR). KR 1. )2, K % U1/20.
  7. lectures

    www.tcm.phy.cam.ac.uk/~bds10/aqp/lec2.pdf
    12 Oct 2009: 2 , leading to bound state energy E = ma2V 20.
  8. lectures

    www.tcm.phy.cam.ac.uk/~bds10/aqp/lec1_compressed.pdf
    21 Oct 2009: Synopsis: Lectures 20-24. 15 Scattering theory. Elastic and inelastic scattering; method of particle waves; Bornapproximation; scattering of identical particles.
  9. Lecture 19 Radiative transitions Radiative transitions: background…

    www.tcm.phy.cam.ac.uk/~bds10/aqp/lec19_compressed.pdf
    22 Nov 2009: Synopsis: Lectures 20-24. 15 Scattering theory. Elastic scattering; cross section; method of particle waves; Bornapproximation; scattering of identical particles.
  10. 22 Nov 2009: Synopsis: Lectures 20-24. 15 Scattering theory. Elastic scattering; cross section; method of particle waves; Bornapproximation; scattering of identical particles.
  11. lectures

    www.tcm.phy.cam.ac.uk/~bds10/aqp/lec12-14_compressed.pdf
    9 Nov 2009: Degeneracy 2 2 6 2 6 2 10 6 2 10 Cumulative 2 4 10 12 18 20 30 36 38 48. ... Central field approximation: conclusions. Subshell name 1s 2s 2p 3s 3p 4s 3d 4p 5s 4d Cumulative 2 4 10 12 18 20 30 36 38 48.

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