Stanford Root

Schedule

Stanford Root

Schedule

ESS 236

Modeling Human-Environment Systems (ESS 136, GEP 115, GEP 215)

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

Effective environmental policymaking requires understanding the physical environment and its interactions with human decisions and institutions. Although both the natural world and human social systems are complex, more basic representations of environmental processes and decision-making frameworks can often be sufficiently accurate and powerful to illuminate policy options. These types of simple models that nevertheless capture relevant connections and dynamics are used to inform regulatory thresholds, benchmark policy choices, guide implementation, evaluate impacts, and allocate resources. This course is organized around a series of in-depth case studies and assignments that will provide students with hands-on experience modeling core physical concepts, assessing different types of uncertainty, and understanding the implications and limitations of their analyses for decision making. Students should have some experience with linear algebra and differential equations (equivalent to MATH 51), comfort with basic programming (in R/Python or equivalent), and excitement about exploring a range of environmental policy contexts.

Syllabus for selected term:
View Spring 2027 Syllabus

Sections

1 Term
Seminar 1Open
ID: 28447
0 / 20 enrolled
DAYS:Monday, Wednesday
TIME:9:30 AM – 10:50 AM
LOCATION:TBD
INSTRUCTOR:
Burney, Jennifer
3units

ESS 236: Modeling Human-Environment Systems (ESS 136, GEP 115, GEP 215)

3 units · Letter or Credit/No Credit

Effective environmental policymaking requires understanding the physical environment and its interactions with human decisions and institutions. Although both the natural world and human social systems are complex, more basic representations of environmental processes and decision-making frameworks can often be sufficiently accurate and powerful to illuminate policy options. These types of simple models that nevertheless capture relevant connections and dynamics are used to inform regulatory thresholds, benchmark policy choices, guide implementation, evaluate impacts, and allocate resources. This course is organized around a series of in-depth case studies and assignments that will provide students with hands-on experience modeling core physical concepts, assessing different types of uncertainty, and understanding the implications and limitations of their analyses for decision making. Students should have some experience with linear algebra and differential equations (equivalent to MATH 51), comfort with basic programming (in R/Python or equivalent), and excitement about exploring a range of environmental policy contexts.

Offered in Spring 2027 at Stanford University.

Spring 2027 sections

  • Seminar — Monday Wednesday 9:30 AM – 10:50 AM — Burney, Jennifer (Graduate)

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  • ESS 233: Mitigating Climate Change through Soil Management (EARTHSYS 233)
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  • ESS 235: Advanced Concepts in Geographic Information Science (EARTHSYS 145, EARTHSYS 245, URBANST 145)
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  • 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 248: Polar Climate Dynamics

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