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METR G5663: Radar Engineering
6.00 Credits
University of Oklahoma Norman Campus
Prerequisite: grade of C or better in Electrical and Computer Engineering 3613, or permission. Introduction to radar system designs and applications with emphasis on weather radar. Radar system architecture and their functionalities and limitations of subsystems are discussed. Theories of radar detection and estimation in a noisy and cluttered environment; existing technologies and advanced techniques to improve radar performance. No student may earn credit in both 4663 and 5663. (F)
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METR G5673: Weather Radar Theory and Practice
7.00 Credits
University of Oklahoma Norman Campus
Prerequisite: grade of C or better in Mathematics 3113 and Physics 2524 or permission. This course provides an introduction to electromagnetic waves and propagation through the atmosphere, radar design trade-offs, antennas, transmitters, and coherent receivers. Analysis of radar signals as noise-corrupted stochastic processes, with emphasis on digital signal processing for Doppler spectrum and moment estimation. Implementation of processing algorithms using actual Doppler radar data. (F)
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METR G5683: Weather Radar Applications
8.00 Credits
University of Oklahoma Norman Campus
Prerequisite: Graduate standing in Meteorology or Engineering, or permission of instructor. Interpretation of meteorological structures using weather radar. Introduces scatter from hydrometeors and refractive index variations. Presentation of quantitative precipitation estimation methods based on the radar reflectivity factor, attenuation, and dual-polarization observations. Also includes the fundamental concepts of clear-air echoes and the estimation of winds under non-precipitation conditions. (Sp)
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METR G5803: Topics in Applied Meteorology
0.00 Credits
University of Oklahoma Norman Campus
Prerequisite: permission of instructor. May be repeated with change of subject matter; maximum credit 12 hours. Application of meteorological concepts and information to current environmental and meteorological problems on any scale.
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METR G5803 - Topics in Applied Meteorology
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METR G5980: Research for Master's Thesis
8.00 Credits
University of Oklahoma Norman Campus
Variable enrollment, two to nine hours; maximum credit applicable toward degree, four hours. (F, Sp, Su)
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METR G5990: Independent Study
9.00 Credits
University of Oklahoma Norman Campus
1 to 4 hours. Prerequisite: graduate standing, permission of instructor. May be repeated with change of subject matter; maximum credit eight hours for master's degree students. Individual research problems in meteorology, climatology, hydrometeorology, and other areas of the atmospheric and earth sciences.
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METR G6103: Turbulence
0.00 Credits
University of Oklahoma Norman Campus
Prerequisite: 5113, Mathematics 3113, 3123 or equivalents. Introduction to the evolution, structure and effects of turbulent flow. Learn to use a variety of theoretical and practical tools of discovery and analysis.
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METR G6223: Convective Clouds and Storms
2.00 Credits
University of Oklahoma Norman Campus
Prerequisite: 5113 or equivalent. Anelastic and Boussinesq equations; Benard convection; plume models; parameterization of cloud microphysics; three-dimensional models; Doppler radar analysis; observations of severe thunderstorms and tornadoes. (Irreg.)
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METR G6344: Computational Fluid Dynamics II
4.00 Credits
University of Oklahoma Norman Campus
Prerequisite: 5113, 5344, permission of instructor. Treatment of advanced numerical techniques and boundary conditions for solving the multi-dimensional unsteady Euler and Navier-Stokes equations. Topics include interpolation and finite volume, Godunov, Roe, positive definite, and flux-corrected/monotone differencing schemes. The formulation and application of adjoint codes for optimization and sensitivity analysis are also examined.
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METR G6413: Topics in Advanced Mesoscale Meteorology
1.00 Credits
University of Oklahoma Norman Campus
Prerequisite: 5113. Research topics in the areas of cyclogenesis, frontogenesis and mesoscale systems. Topics include "IPV thinking" and its application to cyclogenesis; trapped gravity currents and Kelvin waves; the dryline; rainbands in extratropical cyclones; air-sea instability; topographically induced eddies; generalization of the frontogenetical function.
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METR G6413 - Topics in Advanced Mesoscale Meteorology
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