Advanced Weather Forecasting and Synoptic Meteorology Course Details

atmospheric sciences 452 atmospheric sciences n.w
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Dive into the world of weather forecasting with this advanced course covering tools, techniques, numerical prediction, synoptic meteorology, and more. Taught by distinguished instructors, the course aims to integrate knowledge and provide a comprehensive understanding of atmospheric sciences. Explore the course objectives, outline, grading details, and extra materials included to enhance your learning experience.

  • Weather
  • Meteorology
  • Forecasting
  • Synoptic
  • Atmospheric Sciences

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  1. Atmospheric Sciences 452 Atmospheric Sciences 452 Weather Forecasting and Advanced Synoptic Meteorology

  2. Key Information Key Information Instructors: Professor Cliff Mass, 612 ATG, 685-0910, email: cmass@uw.edu Dr. Nick Bond, email: nicholas.bond@noaa.gov Class Hours: Lectures on MWF 1:30-2:20 PM, but occasionally will occur on Tuesdays or Thursdays. Lab: 1:30-3:20 PM (T, TH, F), 2:30-4:20 PM (MW) Office Hours: Anytime we are in our offices. Appointments can be made if needed. Email questions are always welcome.

  3. Course Objectives Course Objectives Learn tools and techniques of weather forecasting Learn the details of numerical weather prediction Review advanced topics of synoptic meteorology Integrate your knowledge from undergraduate classes (bring it all together)

  4. Course Outline Course Outline Introduction History of weather forecasting Overview of the forecast process Basic approaches to forecasting primary meteorological parameters Numerical weather prediction Data collection, assimilation, and model initialization Description of the major modeling systems Post-Processing of Model Output: MOS and other methods Ensemble and probabilistic forecasting Convective systems Review of structure and evolution Radar principles and interpretation. Forecasting thunderstorms and severe convection. Aviation meteorology Forecasting aircraft icing, turbulence, and obstructions to visibility.

  5. Grading and extra materials forecasting, 1/4 labs and map discussion, midterm, final Lots of handouts and web-based materials (e.g., COMET modules)

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