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ATS 625: Advanced Dynamic Meteorology II
3.00 Credits
Creighton University
Continuation of ATS 624. P: ATS 624.
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ATS 625 - Advanced Dynamic Meteorology II
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ATS 626: General Circulation
3.00 Credits
Creighton University
The course will apply the fundamental principles of dynamic meteorology and energetics of the atmosphere to explain the major features of the observed general circulation. Explores tropical mid-latitude interactions and anomalous circulation types. P: ATS 571 or equiv.
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ATS 626 - General Circulation
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ATS 631: Numerical Weather Prediction
3.00 Credits
Creighton University
Descriptive and mathematical foundations for numerical weather prediction. History of numerical weather prediction, analysis and initialization methods, the governing equations and analytic solutions to simplified forms of these equations, finite differentiating techniques and problems in numerical weather prediction. P: ATS 572.
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ATS 631 - Numerical Weather Prediction
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ATS 632: Advanced Numerical Weather Analysis And Prediction
3.00 Credits
Creighton University
Theory of analysis techniques such as spectral analysis and optimal interpolation; conventional gridpoint, spectral, and fine-element models; map projections; the principle of statistical correction to model forecasts and stochastic-dynamic prediction. Practical experience in numerical forecasting is obtained through a project in which a numerical model is developed and numerical methods are applied. P: ATS 631 or equivalent.
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ATS 632 - Advanced Numerical Weather Analysis And Prediction
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ATS 642: Physical Meteorology
3.00 Credits
Creighton University
This course examines the physical properties of the atmosphere. The course begins with a general description of the physical properties of the global Earth atmosphere, both horizontally and vertically. Atmosphere thermodynamics are discussed in detail including: the dry and moist atmosphere, diabatic and adiabatic processes and Newton's 2nd law, hydrodynamic stability and atmospheric instability, solar and terrestrial radiation, cloud microphysical and optical properties are all thoroughly examined. This course is designed to meet the National Weather Service requirement for 3 semester hours of Physical Meteorology.
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ATS 642 - Physical Meteorology
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ATS 643: Radiation Through The Atmosphere
3.00 Credits
Creighton University
Introduction to the physical processes of radiation and the theory of radiative transfer through the atmosphere, including definitions, basic radiation laws, absorption, emission, and scattering processes; the radiative transfer equation; and simple solutions. Applied to visible, infrared and microwave radiation, with special emphasis on providing the background necessary for understanding theory and techniques of remote sensing. P: Two semester of calculus.
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ATS 643 - Radiation Through The Atmosphere
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ATS 644: Remote Sensing Theory
3.00 Credits
Creighton University
Provides theoretical background for further work in remote sensing of the earth and atmosphere. Topics include electromagnetic theory; Maxwell?s equations; the absorptive and emissive properties of the earth-atmosphere system; the scattering properties of the atmosphere, including Mie scattering, calculations of forward radiative transfer and inversion of radiation measurements. P: Two semesters of calculus.
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ATS 644 - Remote Sensing Theory
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ATS 646: Current Topics In Remote Sensing
3.00 Credits
Creighton University
Advanced course in remote sensing, including the latest work in atmospheric temperature and constituent analysis and in terrestrial and oceanographic sensing.
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ATS 646 - Current Topics In Remote Sensing
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ATS 647: Solar-Terrestrial Relationships
3.00 Credits
Creighton University
Basic features of solar activity, the solar wind, and effects of the sun on the earth beginning with an overview of stellar evaluation. Class lectures will trace the processes as solar energy is transported into space and the earth's atmosphere. Includes introductory solar physics, magnetospheric dynamics, and thermospheric and ionospheric processes.
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ATS 647 - Solar-Terrestrial Relationships
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ATS 652: Atmospheric Boundry Layers And Turbulence
3.00 Credits
Creighton University
The conservation equations of heat, moisture, mass, and momentum for the lowest two kilometers of the earth's atmosphere are expanded into mean and turbulent components and scaled to the boundary layer. Closure approximations and the statistical nature of turbulence are discussed. Observations of turbulent boundary layers are reviewed and compared with theoretical predictions. Similarity models are applied to the surface layer and parametric models are applied to the mixed layer.
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ATS 652 - Atmospheric Boundry Layers And Turbulence
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