Difference between revisions of "HS-ESS3-2"
(Reorder sections: Assessment, then Performance Level Descriptions, then Resources) |
(Add Vocabulary section (Earth & Space Science)) |
||
| Line 54: | Line 54: | ||
| Level1 = Given a design solution, identify the benefit(s)/costs of developing or managing or utilizing energy or (mineral) resources. | | Level1 = Given a design solution, identify the benefit(s)/costs of developing or managing or utilizing energy or (mineral) resources. | ||
}} | }} | ||
| + | |||
| + | == 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;"> | ||
| + | * agricultural soil use | ||
| + | * argument | ||
| + | * coal | ||
| + | * competing design solutions | ||
| + | * conservation | ||
| + | * constraints | ||
| + | * cost, safety, reliability, and aesthetics | ||
| + | * cost-benefit ratios | ||
| + | * costs and benefits | ||
| + | * design solution | ||
| + | * energy and mineral resources | ||
| + | * minerals | ||
| + | * mining | ||
| + | * natural gas | ||
| + | * natural resources | ||
| + | * natural systems | ||
| + | * new technologies | ||
| + | * oil shales | ||
| + | * petroleum | ||
| + | * recycling | ||
| + | * resource extraction | ||
| + | * reuse | ||
| + | * social, cultural, and environmental impacts | ||
| + | * sustainability | ||
| + | * tar sands | ||
| + | </div> | ||
| + | |||
| + | <div class="vocab-subhead">From released exam questions</div> | ||
| + | <div class="vocab-list" style="column-width:20em;"> | ||
| + | * [[Questions:Carbon Emissions in Industry#q5|atmosphere]] – Aug 2026 | ||
| + | * [[Questions:Rubber Ducks and Pacific Ocean Trash#q4|biodiversity]] – Jan 2026 | ||
| + | * [[Questions:Carbon Emissions in Industry#q5|biomass]] – Aug 2026 | ||
| + | * [[Questions:Mining and Use of Lithium#q1|carbon dioxide]] – June 2025 | ||
| + | * [[Questions:Dams and Flood Mitigation#q1|dams]] – Aug 2025 | ||
| + | * [[Questions:Carbon Emissions in Industry#q5|Earth]] – Aug 2026 | ||
| + | * [[Questions:Mined and Mineral Resources of New York State#q4|Earth’s surface]] – Jan 2026 | ||
| + | * [[Questions:Carbon Emissions in Industry#q5|emissions]] – Aug 2026, [[Questions:Mining and Use of Lithium#q1|June 2025]] | ||
| + | * [[Questions:The Power of Water#q5|Energy Return on Investment (EROI)]] – Aug 2025 | ||
| + | * [[Questions:Carbon Emissions in Industry#q5|fossil fuels]] – Aug 2026 | ||
| + | * [[Questions:Carbon Emissions in Industry#q5|kiln]] – Aug 2026 | ||
| + | * [[Questions:Iceland Hotspot#q4|lava]] – June 2026 | ||
| + | * [[Questions:Iceland Hotspot#q4|lava flows]] – June 2026 | ||
| + | * [[Questions:Mining and Use of Lithium#q1|life cycle emissions]] – June 2025 | ||
| + | * [[Questions:Rubber Ducks and Pacific Ocean Trash#q4|model]] – Jan 2026 | ||
| + | * [[Questions:Rubber Ducks and Pacific Ocean Trash#q4|ocean]] – Jan 2026 | ||
| + | * [[Questions:Carbon Emissions in Industry#q5|oxygen]] – Aug 2026 | ||
| + | * [[Questions:Rubber Ducks and Pacific Ocean Trash#q4|plastic pollution]] – Jan 2026 | ||
| + | * [[Questions:The Power of Water#q5|power grid]] – Aug 2025 | ||
| + | * [[Questions:Mined and Mineral Resources of New York State#q4|quarry]] – Jan 2026 | ||
| + | * [[Questions:Mined and Mineral Resources of New York State#q4|reclamation]] – Jan 2026 | ||
| + | * [[Questions:Rubber Ducks and Pacific Ocean Trash#q4|river]] – Jan 2026, [[Questions:Dams and Flood Mitigation#q1|Aug 2025]] | ||
| + | * [[Questions:Dams and Flood Mitigation#q1|river discharge]] – Aug 2025 | ||
| + | * [[Questions:Mining and Use of Lithium#q1|tailpipe emissions]] – June 2025 | ||
| + | * [[Questions:Iceland Hotspot#q4|volcanic eruptions]] – June 2026 | ||
| + | </div> | ||
== {{Resourcesheading}} == | == {{Resourcesheading}} == | ||
Latest revision as of 19:17, 27 September 2026
Evaluate competing design solutions for developing, managing, and utilizing energy and mineral resources based on cost-benefit ratios.
Clarification statement: Emphasis is on the conservation, recycling, and reuse of resources (such as minerals and metals) where possible, and on minimizing impacts where it is not. Examples include developing best practices for agricultural soil use, mining (for coal, tar sands, and oil shales), and pumping (for petroleum and natural gas). Science knowledge indicates what can happen in natural systems—not what should happen.
Assessment
What assessment of HS-ESS3-2 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.
- agricultural soil use
- argument
- coal
- competing design solutions
- conservation
- constraints
- cost, safety, reliability, and aesthetics
- cost-benefit ratios
- costs and benefits
- design solution
- energy and mineral resources
- minerals
- mining
- natural gas
- natural resources
- natural systems
- new technologies
- oil shales
- petroleum
- recycling
- resource extraction
- reuse
- social, cultural, and environmental impacts
- sustainability
- tar sands
- atmosphere – Aug 2026
- biodiversity – Jan 2026
- biomass – Aug 2026
- carbon dioxide – June 2025
- dams – Aug 2025
- Earth – Aug 2026
- Earth’s surface – Jan 2026
- emissions – Aug 2026, June 2025
- Energy Return on Investment (EROI) – Aug 2025
- fossil fuels – Aug 2026
- kiln – Aug 2026
- lava – June 2026
- lava flows – June 2026
- life cycle emissions – June 2025
- model – Jan 2026
- ocean – Jan 2026
- oxygen – Aug 2026
- plastic pollution – Jan 2026
- power grid – Aug 2025
- quarry – Jan 2026
- reclamation – Jan 2026
- river – Jan 2026, Aug 2025
- river discharge – Aug 2025
- tailpipe emissions – June 2025
- volcanic eruptions – June 2026
Resources
Examples and discussion of resources for the learning, teaching, and assessment of HS-ESS3-2.
NGSS Dimensions
Performance expectation HS-ESS3-2 was developed using the following elements from the NRC document A Framework for K-12 Science Education:
- Engaging in argument from evidence: Evaluate competing design solutions to a real-world problem based on scientific ideas and principles, empirical evidence, and logical arguments regarding relevant factors (e.g. economic, societal, environmental, ethical considerations).
- Natural resources: All forms of energy production and other resource extraction have associated economic, social, environmental, and geopolitical costs and risks as well as benefits. New technologies and social regulations can change the balance of these factors.
- Developing possible solutions: When evaluating solutions, it is important to take into account a range of constraints, including cost, safety, reliability, and aesthetics, and to consider social, cultural, and environmental impacts.
- Influence of Engineering, Technology, and Science on Society and the Natural World: Engineers continuously modify these systems to increase benefits while decreasing costs and risks
- Influence of Engineering, Technology, and Science on Society and the Natural World: Analysis of costs and benefits is a critical aspect of decisions about technology.
- Science Addresses Questions About the Natural and Material World: Science and technology may raise ethical issues for which science, by itself, does not provide answers and solutions.
- Science Addresses Questions About the Natural and Material World: Science knowledge indicates what can happen in natural systems—not what should happen. The latter involves ethics, values, and human decisions about the use of knowledge.
- Many decisions are not made using science alone, but rely on social and cultural contexts to resolve issues.