LOYOLA COLLEGE (AUTONOMOUS), CHENNAI – 600 034
M.Sc. DEGREE EXAMINATION – PHYSICS
FOURTH SEMESTER – APRIL 2012
PH 4807 – SPECTROSCOPY
Date : 18-04-2012 Dept. No. Max. : 100 Marks
Time : 1:00 – 4:00
PART – A
Answer ALL questions (10×2=20)
- Explain with the help of an example for symmetric top and spherical top molecule
- The rotational constant of NO is 41.7201 cm-1. Calculate the moment of inertia of the molecule.
- Explain Born-Oppenheimer approximation.
- Bond length of N2 molecule is 1.0907 . Determine the position of the first rotational Raman lines in the spectrum. Given mass of 14N = 23.25 x 10 -27
- What is double resonance?
- Distinguish between sequence and progression
- An NMR signal for a compound is found to be 420 Hz downward from TMS operating at 600 MHz. Calculate shift in ppm.
- Write a note on C13 spectroscopy with reference to chemical shift.
- Distinguish between photoluminescence and fluorescence spectroscopy
- Difference between inelastic scattering and elastic scattering
PART – B
Answer any FOUR questions (4×7.5 = 30)
- Explain with example, the effect of isotopic substitution on the pure rotational spectra of a diatomic molecule. The first rotational line of 12C16O is observed at 3.8425 cm-1 and that of 13C16O at 3.67337 cm-1. Calculate the atomic weight of 12 C, assuming the mass of 16O to be 15.9949 a.m.u.
- Outline the theory of Raman spectrum on the basis of i) classical theory and ii) quantum theory
- With a neat diagram, explain the functioning of ESCA briefly.
- What is indirect spin-spin interaction? Explain why many spectral lines are seen in the CH3 and CHO protons of acetaldehyde?
- Explain the functioning of XPES
PART – C
Answer any FOUR questions (4×12.5 =50)
- Explain with theory, the spectrum of a linear diatomic molecule of rigid rotor type. Deduce the correction for non-rigid type.
- a) Explain the theory of diatomic vibrating rotator on the basis of Bohr’s approximation.
- b) The fundamental band of CO is centered at 2143 cm-1 and the first overtone band at 4259 cm-1. Calculate fundamental frequency of vibration, anhormonicity constant and zero point energy.
- Give the selection rules associated with rotational fine structure of electronic vibration spectra. Explain the origin of P,Q and R bands and derive the energy expressions associated with the bands
- Illustrate the decay scheme in 57Co and 57 With a block diagram explain the working of Mossbauer spectrometer
- Explain the following electron spectroscopic techniques.
- a) Auger electron (AES) and b) Fluorescence (XRF)
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