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ATS 565: Atmospheric Circulation Systems
3.00 Credits
Creighton University
Examination of the general circulation of the atmosphere. Emphasis on seasonal variation in both hemispheres. Exploration of formation of anomalous circulation types with respect to anomalous boundary layer conditions. Detailed discussion of tropical-mid latitude interactions. P: ATS 562 or IC.
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ATS 565 - Atmospheric Circulation Systems
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ATS 566: Climate Theory
3.00 Credits
Creighton University
Theories of global climate and variability. Examination of climate models, including internal and external parameters and feedback mechanisms. P: ATS 113, 561.
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ATS 566 - Climate Theory
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ATS 570: Quantitative Methods in the Atmospheric Sciences
3.00 Credits
Creighton University
Overview of mathematical and statistical methods employed by atmospheric scientists, including a review of key calculus concepts. Topics include coordinate systems, vector operators, finite difference approximations, vector calculus, regression, filtering, hypothesis testing and key theorems. P: MTH 246.
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ATS 570 - Quantitative Methods in the Atmospheric Sciences
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ATS 571: Dynamic Meteorology I
3.00 Credits
Creighton University
Equations of motion and thermodynamics will be vigorously derived and applied to the atmosphere. Topics include thermodynamics of dry and moist air, hydrostatic and hypsometric approximations, geostrophic and gradient wind balance, mass continuity, and vorticity. P: PHY 213; MTH 246.
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ATS 571 - Dynamic Meteorology I
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ATS 572: Dynamic Meteorology II
3.00 Credits
Creighton University
Concepts presented in ATS 571 will be further developed and applied to the following topics: barotropic and baroclinic instability, atmospheric oscillations, quasi-geostrophic theory, and simple numerical modeling. P: ATS 571.
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ATS 572 - Dynamic Meteorology II
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ATS 573: Cloud Physics And Dynamics
3.00 Credits
Creighton University
Thermodynamic processes which control the development and growth of clouds. Relationship between atmospheric properties and cloud structure. Distribution of condensation nuclei, water droplet spectra. Initiation and growth of cloud hydrometers. Structure of severe storms, radiative effects of clouds. P: ATS 571.
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ATS 573 - Cloud Physics And Dynamics
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ATS 574: Stratospheric Dynamics
3.00 Credits
Creighton University
Study of the principles governing atmospheric motions in the stratosphere. Includes a brief review of chemical processes, radiative effects, and the resulting thermal structures that govern the mean stratospheric circulation; forcing mechanisms and conditions for wave generation in the stratosphere; discussions of sudden warmings, quasi-biennial and semiannual oscillations, and tropical wave phenomena in the stratosphere. P: ATS 571.
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ATS 574 - Stratospheric Dynamics
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ATS 575: Environmental Measurements Practicum OD
3.00 Credits
Creighton University
Course designed to acquaint the student with the basic phenomenology associated with solar processes and activity, and the impact of these processes upon the earth and its atmosphere. Designed to familiarize the student with the concepts of upper atmospheric energetic processes and their influences upon everyday activities. P: MTH 246 and PHY 212.
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ATS 575 - Environmental Measurements Practicum OD
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ATS 615: Radar And Severe Storms
3.00 Credits
Creighton University
Examination of the fundamentals of weather radars (coherent and noncoherent) and their application to detecting severe storms. Topics include properties of electromagnetic waves; radar detection of spherical particles; use of radar for quantitative measurement of precipitation; radar beam characteristics; the use of radar in mesometeorology; the study of severe storms; Doppler weather radar; theory and recent developments applied to severe storm detection and warning. P: ATS 545 or IC.
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ATS 615 - Radar And Severe Storms
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ATS 624: Advanced Dynamics I
3.00 Credits
Creighton University
Detailed examination of the fundamental physical processes occurring in the atmosphere through the use of thermodynamic and hydrodynamic equations. Subjects treated include geophysical and fluid mechanics, geostrophic adjustment, nongeostrophic baroclinic instability, energetics, and equatorial general circulation. P: ATS 572 or equiv.
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ATS 624 - Advanced Dynamics I
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