Stanford Root

Schedule

Stanford Root

Schedule

ESS 248

Polar Climate Dynamics

UNITS:3
GRADING:Letter or Credit/No Credit
LEVEL:Graduate
GER:—

This course explores some of the key physical processes that govern Earth?s cold, high-latitude regions and their impacts on our global climate. Topics of interest include the ocean circulation in the Arctic and Southern Ocean, sea ice dynamics and variability, deep water formation and upwelling, the transport and uptake of heat and carbon at high latitudes, polar amplified warming, ice sheet mass balance, and internal modes polar climate variability. We will discuss these topics in the context of past, present, and future climate change. Classes will be a mix of lectures and paper discussions. Lectures will focus on fundamental concepts while assigned readings and in-class discussions explore their application in active research. Students will take turns presenting papers and leading discussions. Evaluations will be based on homework, in-class presentations, and a final report. There are no assigned textbooks. Recommended prerequisites: a course that introduces ocean or atmospheric circulation (e.g., Earthsys ESS 146A/ESS 246A, Earthsys ESS 146B/ESS 246B or CEE 162D) and prior exposure to multivariable calculus (e.g., MATH 51 or CME 100). Undergraduates who have the recommended prerequisites are welcome to enroll.

Syllabus not available for this section

Sections

0 Terms
No sections available.

ESS 248: Polar Climate Dynamics

3 units · Letter or Credit/No Credit

This course explores some of the key physical processes that govern Earth?s cold, high-latitude regions and their impacts on our global climate. Topics of interest include the ocean circulation in the Arctic and Southern Ocean, sea ice dynamics and variability, deep water formation and upwelling, the transport and uptake of heat and carbon at high latitudes, polar amplified warming, ice sheet mass balance, and internal modes polar climate variability. We will discuss these topics in the context of past, present, and future climate change. Classes will be a mix of lectures and paper discussions. Lectures will focus on fundamental concepts while assigned readings and in-class discussions explore their application in active research. Students will take turns presenting papers and leading discussions. Evaluations will be based on homework, in-class presentations, and a final report. There are no assigned textbooks. Recommended prerequisites: a course that introduces ocean or atmospheric circulation (e.g., Earthsys 146A/ESS 246A, Earthsys 146B/ESS 246B or CEE162D) and prior exposure to multivariable calculus (e.g., MATH 51 or CME100). Undergraduates who have the recommended prerequisites are welcome to enroll.

More ESS courses

  • ESS 236: Modeling Human-Environment Systems (ESS 136, GEP 115, GEP 215)
  • ESS 237: Geomorphology: The Mechanics of Earth's Landscapes (CEE 112E, CEE 212E, EARTHSYS 112G, EARTHSYS 212G, EPS 112, EPS 212, ESS 137, GEOPHYS 113, GEOPHYS 213)
  • ESS 239: Data Science for Geoscience (EARTHSYS 240, ENERGY 240, EPS 140, EPS 240)
  • ESS 241: Remote Sensing of the Oceans (EARTHSYS 141, EARTHSYS 241, ESS 141, GEOPHYS 141)
  • ESS 246A: Atmosphere, Ocean, and Climate Dynamics: The Atmospheric Circulation (CEE 161I, CEE 261I, EARTHSYS 146A, EARTHSYS 246A)
  • ESS 246B: Atmosphere, Ocean, and Climate Dynamics: the Ocean Circulation (CEE 162I, CEE 262I, EARTHSYS 146B, OCEANS 246B)
  • ESS 249: Marine Stable Isotopes (OCEANS 249)
  • ESS 251: Biological Oceanography (EARTHSYS 151, EARTHSYS 251, ESS 151)
  • ESS 252: Marine Chemistry (EARTHSYS 152, EARTHSYS 252, ESS 152, OCEANS 152, OCEANS 252)
  • ESS 256: Soil and Water Chemistry (EARTHSYS 256)
  • ESS 258: Geomicrobiology (EARTHSYS 158, EARTHSYS 258, ESS 158)
  • ESS 259: Environmental Microbial Genomics (OCEANS 269)

All ESS courses · All departments