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ATM 115: Hydroclimatology
3.00 Credits
University of California-Davis
Lecture-3 hours. Prerequisite: course 60. Examination of climate as the forcing function for the hydrologic system. Emphasis on seasonal variations in the relationship between precipitation and evapotranspiration for meso-scale areas. Watershed modeling of floods and drought for evaluating the effects of climatic fluctuations.-III. (III.)
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ATM 115 - Hydroclimatology
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ATM 116: Climate Change
3.00 Credits
University of California-Davis
Lecture-3 hours. Prerequisite: course 60. Climate trends and patterns spanning the recent past and the future. Emphasis on natural processes that produce climate variations and human influence on these processes. Evidence of climate change and the role of global climate models in understanding climate variability.- II. (II.) Reck
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ATM 116 - Climate Change
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ATM 120: Atmospheric Thermodynamics and Cloud Physics
4.00 Credits
University of California-Davis
Lecture-3 hours, extensive problem solving. Prerequisite: Mathematics 21C, Physics 9B, course 60 (may be taken concurrently). Atmospheric composition and structure, thermodynamics of atmospheric gases, thermal properties of dry and moist air, atmospheric stability; cloud nucleation, cloud growth by condensation and collision, cloud models.-I. (I.) Weare
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ATM 120 - Atmospheric Thermodynamics and Cloud Physics
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ATM 121A: Atmospheric Dynamics
4.00 Credits
University of California-Davis
Lecture-3 hours; extensive problem solving. Prerequisite: course 120, Mathematics 21D, Physics 9B. Fundamental forces of atmospheric flow; noninertial reference frames; development of the equations of motion for rotating stratified atmospheres; isobaric and natural coordinate systems; geostrophic flow; thermal wind; circulation and vorticity.-II. (II.) Nathan
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ATM 121A - Atmospheric Dynamics
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ATM 121B: Atmospheric Dynamics
4.00 Credits
University of California-Davis
Lecture-3 hours; extensive problem solving. Prerequisite: course 121A. Dynamics of fluid motion in geophysical systems; quasi-geostrophic theory; fundamentals of wave propagation in fluids; Rossby waves; gravity waves; fundamentals of hydrodynamic instability; two-level model; baroclinic instability and cyclogenesis.-III. (III.) Nathan
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ATM 121B - Atmospheric Dynamics
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ATM 124: Meteorological Instruments and Observations
3.00 Credits
University of California-Davis
Lecture-2 hours; laboratory-3 hours. Prerequisite:course 60; Physics 5C. Modern meteorological instruments and their use in meteorological observations and measurements. Both standard and micrometeorological instruments are included.-I. (I.) Paw U
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ATM 124 - Meteorological Instruments and Observations
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ATM 128: Radiation and Satellite Meteorology
4.00 Credits
University of California-Davis
Lecture/discussion-3 hours; discussion/laboratory-2 hours. Prerequisite: course 60, Physics 9B, Mathematics 22B, 21D. Concepts of atmospheric radiation and the use of satellites in remote sensing. Emphasis on the modification of solar and infrared radiation by the atmosphere. Estimation from satellite data of atmospheric variables such as temperatures and cloudiness.-II. (II.) Reck
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ATM 128 - Radiation and Satellite Meteorology
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ATM 133: Biometeorology
4.00 Credits
University of California-Davis
Lecture-3 hours; discussion-1 hour. Prerequisite:one course in a biological discipline and Mathematics 16B or consent of instructor. Atmospheric and biological interactions. Physical and biological basis for water vapor, carbon dioxide and energy exchanges with the atmosphere associated with plants and animals, including humans. Microclimate of plant canopies and microclimatic modification such as frost protection and windbreaks.-II. (II.) Paw U, Snyder
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ATM 133 - Biometeorology
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ATM 149: Air Pollution
4.00 Credits
University of California-Davis
Lecture-3 hours; discussion-1 hour. Prerequisite:Mathematics 21D, 22B, Chemistry 2B, Atmospheric Science 121A or Engineering 103. Physical and technical aspects of air pollution. Emphasis on geophysical processes and air pollution meteorology as well as physical and chemical properties of pollutants. (Same course as Civil and Environmental Engineering 149.)-I. (I.) Chang
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ATM 149 - Air Pollution
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ATM 150: Introduction to Computer Methods in Physical Sciences
4.00 Credits
University of California-Davis
Lecture-3 hour; lecture/discussion-2 hours. Prerequisite:Mathematics 22B, Physics 9B, and a computer programming course such as Engineering Computer Science 30. Additional courses in fluid dynamics (course 121A or Engineering 103) and in Fourier transforms (Mathematics 118C or Physics 104A) are helpful, but not required. Computational techniques used in physical sciences. Integral and differential equation numerical solution: mainly finite differencing and spectral (Fourier transform) methods. Time series applications (time-permitting). Specific applications drawn from meteorology. Accelerated introduction to FORTRAN including programming assignments. Enrollment limited to 12, preference to Atmospheric Science majors. Offered in alternate years. (P/NP grading only.)-I. Grotjahn
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ATM 150 - Introduction to Computer Methods in Physical Sciences
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