Difference between revisions of "HS-ESS3-5"
(Reorder sections: Assessment, then Performance Level Descriptions, then Resources) |
(Add Vocabulary section (Earth & Space Science)) |
||
| Line 55: | Line 55: | ||
| Level1 = Given geoscience data or the results from a global climate model, or a given evidence‐based claim (forecast) of the current rate of global or regional climate change, identify an associated future impact to an Earth system. | | Level1 = Given geoscience data or the results from a global climate model, or a given evidence‐based claim (forecast) of the current rate of global or regional climate change, identify an associated future impact to an Earth system. | ||
}} | }} | ||
| + | |||
| + | == Vocabulary == | ||
| + | Terms from the [[Earth & Space Science Glossary]] that come from this standard or from the released exam questions that assess it. | ||
| + | |||
| + | <div class="vocab-subhead">From this standard</div> | ||
| + | <div class="vocab-list" style="column-width:14em;"> | ||
| + | * argument | ||
| + | * atmosphere | ||
| + | * climate change | ||
| + | * composition | ||
| + | * design solution | ||
| + | * Earth | ||
| + | * evidence-based forecast | ||
| + | * geoscience data | ||
| + | * glacial ice volumes | ||
| + | * global climate models | ||
| + | * human impacts | ||
| + | * model | ||
| + | * new technologies | ||
| + | * ocean | ||
| + | * precipitation | ||
| + | * regional climate change | ||
| + | * sea level | ||
| + | </div> | ||
| + | |||
| + | <div class="vocab-subhead">From released exam questions</div> | ||
| + | <div class="vocab-list" style="column-width:20em;"> | ||
| + | * [[Questions:Ghost Forests#q3|biodiversity]] – June 2025 | ||
| + | * [[Questions:Greenland's Glacial Ice#q5|density]] – Jan 2026 | ||
| + | * [[Questions:Modeling Earth Systems to Understand Climate Change#q5|emissions]] – June 2025 | ||
| + | * [[Questions:Hunga Tonga-Hunga Ha’pai Volcano#q4|fossil fuels]] – Aug 2026 | ||
| + | * [[Questions:Ghost Forests#q3|ghost forest]] – June 2025 | ||
| + | * [[Questions:Greenland's Glacial Ice#q1|glacial ice]] – Jan 2026 | ||
| + | * [[Questions:The Carbon Cycle#q5|glaciers]] – June 2025 | ||
| + | * [[Questions:Modeling Earth Systems to Understand Climate Change#q5|greenhouse gas emissions]] – June 2025 | ||
| + | * [[Questions:Modeling Earth Systems to Understand Climate Change#q5|greenhouse gases]] – June 2025 | ||
| + | * [[Questions:Ghost Forests#q3|ground vegetation]] – June 2025 | ||
| + | * [[Questions:Ghost Forests#q3|high tide]] – June 2025 | ||
| + | * [[Questions:Ghost Forests#q3|humidity]] – June 2025 | ||
| + | * [[Questions:Greenland's Glacial Ice#q1|ice]] – Jan 2026, [[Questions:ESS Earth's Climate#q4|Sample 2024]] | ||
| + | * [[Questions:ESS Earth's Climate#q4|ice extent]] – Sample 2024 | ||
| + | * [[Questions:Greenland's Glacial Ice#q1|ice sheet]] – Jan 2026 | ||
| + | * [[Questions:Greenland's Glacial Ice#q3|mass]] – Jan 2026 | ||
| + | * [[Questions:The Carbon Cycle#q5|ocean circulation]] – June 2025 | ||
| + | * [[Questions:Greenland's Glacial Ice#q5|ocean currents]] – Jan 2026 | ||
| + | * [[Questions:Ghost Forests#q3|runoff]] – June 2025 | ||
| + | * [[Questions:Greenland's Glacial Ice#q5|salinity]] – Jan 2026 | ||
| + | * [[Questions:Hunga Tonga-Hunga Ha’pai Volcano#q4|satellites]] – Aug 2026 | ||
| + | * [[Questions:Ghost Forests#q3|soil erosion]] – June 2025 | ||
| + | * [[Questions:Ghost Forests#q3|solar energy]] – June 2025 | ||
| + | * [[Questions:Modeling Earth Systems to Understand Climate Change#q3|surface ocean currents]] – June 2025 | ||
| + | * [[Questions:Hunga Tonga-Hunga Ha’pai Volcano#q4|surface temperature]] – Aug 2026, [[Questions:Modeling Earth Systems to Understand Climate Change#q5|June 2025]] | ||
| + | * [[Questions:Hunga Tonga-Hunga Ha’pai Volcano#q4|water vapor]] – Aug 2026 | ||
| + | </div> | ||
== {{Resourcesheading}} == | == {{Resourcesheading}} == | ||
Latest revision as of 19:17, 27 September 2026
Analyze geoscience data and the results from global climate models to make an evidence-based forecast of the current rate of global or regional climate change and associated future impacts to Earth systems.
Clarification statement: Examples of evidence, for both data and climate model outputs, are for climate changes (such as precipitation and temperature) and their associated impacts (such as on sea level, glacial ice volumes, or atmosphere and ocean composition).
Assessment boundary: Assessment is limited to one example of a climate change and its associated impacts.
Assessment
What assessment of HS-ESS3-5 might look like on a NY state exam.
Performance Level Descriptions
PLDs communicate the knowledge and skills expected of students to demonstrate proficiency in each Learning Standard. NYS assessments classify student performance into one of five levels.
Vocabulary
Terms from the Earth & Space Science Glossary that come from this standard or from the released exam questions that assess it.
- argument
- atmosphere
- climate change
- composition
- design solution
- Earth
- evidence-based forecast
- geoscience data
- glacial ice volumes
- global climate models
- human impacts
- model
- new technologies
- ocean
- precipitation
- regional climate change
- sea level
- biodiversity – June 2025
- density – Jan 2026
- emissions – June 2025
- fossil fuels – Aug 2026
- ghost forest – June 2025
- glacial ice – Jan 2026
- glaciers – June 2025
- greenhouse gas emissions – June 2025
- greenhouse gases – June 2025
- ground vegetation – June 2025
- high tide – June 2025
- humidity – June 2025
- ice – Jan 2026, Sample 2024
- ice extent – Sample 2024
- ice sheet – Jan 2026
- mass – Jan 2026
- ocean circulation – June 2025
- ocean currents – Jan 2026
- runoff – June 2025
- salinity – Jan 2026
- satellites – Aug 2026
- soil erosion – June 2025
- solar energy – June 2025
- surface ocean currents – June 2025
- surface temperature – Aug 2026, June 2025
- water vapor – Aug 2026
Resources
Examples and discussion of resources for the learning, teaching, and assessment of HS-ESS3-5.
NGSS Dimensions
Performance expectation HS-ESS3-5 was developed using the following elements from the NRC document A Framework for K-12 Science Education:
- Analyzing and interpreting data: Analyze data using tools, technologies and/or models (e.g., computational or mathematical) in order to make valid and reliable scientific claims or determine optimal design solution.
- Scientific Investigations Use a Variety of Methods: Science investigations use diverse methods and do not always use the same set of procedures to obtain data.
- Scientific Investigations Use a Variety of Methods: New technologies advance scientific knowledge.
- Scientific Knowledge is Based on Empirical Evidence: Science knowledge is based on empirical evidence.
- Scientific Knowledge is Based on Empirical Evidence: Science arguments are strengthened by multiple lines of evidence supporting a single explanation.
- Global climate change: Though the magnitudes of human impacts are greater than they have ever been, so too are human abilities to model, predict, and manage current and future impacts.
- Stability and change: Change and rates of change can be quantified and modeled over very short or very long periods of time. Some system changes are irreversible.