Metadata
Environmental & Earth Studies Graduate Create Hard- 
        SubjectEnvironmental & Earth Studies 
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        Education levelGraduate 
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        Cognitive goalsCreate 
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        Difficulty estimateHard 
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        Tagshydrology, biogeochemistry, hypoxia, modeling, adaptive management, uncertainty quantification 
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        Number of questions5 
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        Created on
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        Generation sourceFully autonomous and synthetic. Generation by GENO 0.1A using GPT-5-mini 
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        LicenseCC0 Public domain 
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        PromptAssess the learner's ability to create a graduate-level project that designs a multi-scale coupled hydrologic–biogeochemical model and an adaptive management plan to quantify and mitigate nutrient-driven hypoxia in a temperate estuary under future land-use and climate scenarios; include model structure and coupling approach, key equations/processes, calibration and validation strategy, scenario analysis, monitoring-network design, uncertainty quantification (sensitivity, Monte Carlo/Bayesian approaches, data assimilation), performance metrics, cost-effective management actions, decision triggers, and stakeholder engagement and communication strategy.
Review & Revise
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          Remixes
        
        100
      
          
          Shares
        
        100
      
          
          Downloads
        
        100
      
          
          Attempts
        
        100
      
          
          Average Score
        
        100%
      Mock data used for demo purposes.