Stanford Root

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Stanford Root

Schedule

PHOTON 345

Fundamentals and Applications of Spectroscopy (CHEMENG 345)

UNITS:3
GRADING:Letter or Credit/No Credit
LEVEL:Graduate
GER:—

Theoretical basis and experimental aspects of atomic and molecular spectroscopy, including spectroscopic transitions, transition probabilities, and selection rules. Applications of rotational, vibrational, and electronic spectroscopies emphasize the use of spectroscopy in modern research. Specific topics include but are not limited to microwave spectroscopy, infrared spectroscopy and Raman scattering, and photoelectron and fluorescence spectroscopies. Prerequisites: CME 104 or an equivalent intro to partial differential equations; CHEMENG PHOTON 110A or CHEM 171 or an equivalent intro to physical chemistry.

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PHOTON 345: Fundamentals and Applications of Spectroscopy (CHEMENG 345)

3 units · Letter or Credit/No Credit

Theoretical basis and experimental aspects of atomic and molecular spectroscopy, including spectroscopic transitions, transition probabilities, and selection rules. Applications of rotational, vibrational, and electronic spectroscopies emphasize the use of spectroscopy in modern research. Specific topics include but are not limited to microwave spectroscopy, infrared spectroscopy and Raman scattering, and photoelectron and fluorescence spectroscopies. Prerequisites: CME 104 or an equivalent intro to partial differential equations; CHEMENG 110A or CHEM 171 or an equivalent intro to physical chemistry.

More PHOTON courses

  • PHOTON 172: X-Ray Diffraction Laboratory (MATSCI 162, MATSCI 172)
  • PHOTON 201: Electrons and Photons (APPPHYS 201)
  • PHOTON 205: Waves and Diffraction in Solids (MATSCI 195, MATSCI 205)
  • PHOTON 222: Principles of X-ray Scattering (APPPHYS 222)
  • PHOTON 283: Ultrafast Quantum Physics (APPPHYS 283)
  • PHOTON 322: Advanced Topics in X-ray Scattering (APPPHYS 322)
  • PHOTON 323: Introduction to Accelerator Physics (APPPHYS 324)
  • PHOTON 324: Optics of Microscope Design for Materials (MATSCI 324)
  • PHOTON 325: Synchrotron Radiation and Free Electron Lasers: Principles and Applications. (APPPHYS 325)
  • PHOTON 329: The Electronic Structure of Surfaces and Interfaces (EE 329)
  • PHOTON 366: Light and Plasma (ME 366)
  • PHOTON 384: Advanced Topics in AMO Physics (APPPHYS 384)

All PHOTON courses · All departments