Difference between revisions of "HS-ESS1-7"

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| Level5 = Apply scientific ideas, principles, and evidence to support the claim that the phases of the Moon, eclipses, tides, and seasons change cyclically and that celestial events are the result of the relative motion and perspective of an observer.
 
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| Level4 = Construct an explanation using evidence to support the claim that the phases of the Moon, eclipses, tides, and seasons change cyclically.
 
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| Level3 = Construct an explanation using evidence to support the claim that the phases of the Moon or eclipses or tides or seasons change cyclically <b><u>or</u></b> that celestial events are the result of the relative motion and/or perspective of an observer.
 
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| Level2 = Identify an evidence-based explanation, from those provided, that supports the claim that the phases of the Moon or eclipses or tides or seasons change cyclically <b><u>or</u></b> that celestial events are the result of the relative motion and the perspective of an observer.
 
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| Level1 = Identify the evidence that supports the claim that the phases of the Moon or eclipses or tides or seasons change cyclically <b><u>or</u></b> that celestial events are the result of the relative motion and the perspective of an observer.
 
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{{PerformanceLevel}}
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{{PLTable
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| Level5 = Apply scientific ideas, principles, and evidence to support the claim that the phases of the Moon, eclipses, tides, and seasons change cyclically and that celestial events are the result of the relative motion and perspective of an observer.
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| Level4 = Construct an explanation using evidence to support the claim that the phases of the Moon, eclipses, tides, and seasons change cyclically.
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| Level3 = Construct an explanation using evidence to support the claim that the phases of the Moon or eclipses or tides or seasons change cyclically <b><u>or</u></b> that celestial events are the result of the relative motion and/or perspective of an observer.
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| Level2 = Identify an evidence-based explanation, from those provided, that supports the claim that the phases of the Moon or eclipses or tides or seasons change cyclically <b><u>or</u></b> that celestial events are the result of the relative motion and the perspective of an observer.
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| Level1 = Identify the evidence that supports the claim that the phases of the Moon or eclipses or tides or seasons change cyclically <b><u>or</u></b> that celestial events are the result of the relative motion and the perspective of an observer.
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== Vocabulary ==
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Terms from the [[Earth & Space Science Glossary]] that come from this standard or from the released exam questions that assess it.
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<div class="vocab-subhead">From this standard</div>
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<div class="vocab-list" style="column-width:14em;">
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* celestial bodies
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* celestial events
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* conceptual modeling
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* cyclical changes
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* Earth
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* eclipse
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* model
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* moon
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* peer review
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* phases of the moon
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* relative motion
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* relative positions
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* seasons
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* solar system
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* strength of tides
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* tides
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* types of eclipses
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</div>
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<div class="vocab-subhead">From released exam questions</div>
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<div class="vocab-list" style="column-width:20em;">
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* [[Questions:Full Supermoon Events in 2024#q1|angular diameter]] – Aug 2026
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* [[Questions:ESS Effect of The Moon on Earth#q6|annular solar eclipse]] – Sample 2024
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* [[Questions:Earth-Moon History#q3|aphelion]] – Aug 2025
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* [[Questions:Earth-Moon History#q3|apogee]] – Aug 2025
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* [[Questions:Full Supermoon Events in 2024#q1|apparent size]] – Aug 2026, [[Questions:Earth-Moon History#q3|Aug 2025]]
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* [[Questions:The Moons of Pluto#q3|axis of rotation]] – Jan 2026
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* [[Questions:Stars and Stellar Evolution#q2|constellation]] – June 2026
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* [[Questions:Our Sun – A Star#q5|crescent phase]] – June 2025
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* [[Questions:Our Sun – A Star#q5|Earth’s orbit]] – June 2025
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* [[Questions:Earth-Moon History#q1|Earth’s rotation]] – Aug 2025, [[Questions:ESS Effect of The Moon on Earth#q1|Sample 2024]]
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* [[Questions:Earth-Moon History#q3|Earth’s surface]] – Aug 2025, [[Questions:ESS Effect of The Moon on Earth#q1|Sample 2024]]
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* [[Questions:Planetary Transits#q1|eccentricity]] – June 2026
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* [[Questions:Stars and Stellar Evolution#q2|ecliptic]] – June 2026
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* [[Questions:ESS Effect of The Moon on Earth#q4|first quarter moon]] – Sample 2024
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* [[Questions:Cyclic Patterns#q2|full moon]] – Aug 2026, [[Questions:ESS Effect of The Moon on Earth#q4|Sample 2024]]
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* [[Questions:Cyclic Patterns#q2|gravitational force]] – Aug 2026, [[Questions:ESS Effect of The Moon on Earth#q2|Sample 2024]]
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* [[Questions:Cyclic Patterns#q1|high tide]] – Aug 2026, [[Questions:Earth-Moon History#q1|Aug 2025]], [[Questions:ESS Effect of The Moon on Earth#q1|Sample 2024]]
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* [[Questions:Cyclic Patterns#q1|inlet]] – Aug 2026
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* [[Questions:ESS Effect of The Moon on Earth#q4|last quarter moon]] – Sample 2024
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* [[Questions:Cyclic Patterns#q1|low tide]] – Aug 2026, [[Questions:ESS Effect of The Moon on Earth#q1|Sample 2024]]
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* [[Questions:Stars and Stellar Evolution#q2|motion]] – June 2026
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* [[Questions:Cyclic Patterns#q2|neap tide]] – Aug 2026
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* [[Questions:Cyclic Patterns#q2|new moon]] – Aug 2026, [[Questions:ESS Effect of The Moon on Earth#q4|Sample 2024]]
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* [[Questions:Stars and Stellar Evolution#q2|Northern Hemisphere]] – June 2026
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* [[Questions:Cyclic Patterns#q1|ocean]] – Aug 2026, [[Questions:ESS Effect of The Moon on Earth#q1|Sample 2024]]
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* [[Questions:The Moons of Pluto#q3|orbital period]] – Jan 2026
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* [[Questions:Full Supermoon Events in 2024#q1|perigee]] – Aug 2026, [[Questions:Earth-Moon History#q3|Aug 2025]]
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* [[Questions:Earth-Moon History#q3|perihelion]] – Aug 2025
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* [[Questions:Our Sun – A Star#q5|phases of Venus]] – June 2025
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* [[Questions:Planetary Transits#q1|planets]] – June 2026
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* [[Questions:The Moons of Pluto#q3|rotational period]] – Jan 2026
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* [[Questions:Cyclic Patterns#q1|sea level]] – Aug 2026
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* [[Questions:ESS Effect of The Moon on Earth#q6|solar eclipse]] – Sample 2024
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* [[Questions:Cyclic Patterns#q2|spring tide]] – Aug 2026
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* [[Questions:Full Supermoon Events in 2024#q1|supermoon]] – Aug 2026
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* [[Questions:Earth-Moon History#q1|tidal bulge]] – Aug 2025
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* [[Questions:Earth-Moon History#q1|tidal friction]] – Aug 2025
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* [[Questions:Earth-Moon History#q3|total solar eclipse]] – Aug 2025, [[Questions:ESS Effect of The Moon on Earth#q6|Sample 2024]]
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* [[Questions:Planetary Transits#q1|transit]] – June 2026
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* [[Questions:ESS Effect of The Moon on Earth#q4|waning crescent moon]] – Sample 2024
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* [[Questions:ESS Effect of The Moon on Earth#q4|waning gibbous moon]] – Sample 2024
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* [[Questions:ESS Effect of The Moon on Earth#q4|waxing crescent moon]] – Sample 2024
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* [[Questions:ESS Effect of The Moon on Earth#q4|waxing gibbous moon]] – Sample 2024
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* [[Questions:Stars and Stellar Evolution#q2|zodiac constellations]] – June 2026
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</div>
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<div class="vocab-subhead">Implied by this standard</div>
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<div class="vocab-list">
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* lunar eclipse – implied by "types of eclipses"
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* tidal range – implied by "strength of tides"
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</div>
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== {{Resourcesheading}} ==
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Latest revision as of 19:17, 27 September 2026

Construct an explanation using evidence to support the claim that the phases of the moon, eclipses, tides and seasons change cyclically.

Clarification statement: Emphasis of the explanation should include how the relative positions of the moon in its orbit, Earth, and the Sun cause different phases, types of eclipses or strength of tides. Examples of evidence could include various representations of relative positions of the Sun, Earth and moon.

Assessment boundary: Assessment does not include mathematical computations to support explanations but rather relies on conceptual modeling using diagrams to show how celestial bodies interact to create these cyclical changes.

Note: this is a NYSED-specific performance expectation that is different from the Next Generation Science Standards.

Assessment

What assessment of HS-ESS1-7 might look like on a NY state exam.

Exam Cluster Question
August 2026 Cyclic Patterns Question 1
Cyclic Patterns Question 2
Full Supermoon Events in 2024 Question 38
Full Supermoon Events in 2024 Question 39
June 2026 Stars and Stellar Evolution Question 6
Planetary Transits Question 42
January 2026 The Moons of Pluto Question 21
The Moons of Pluto Question 22
August 2025 Earth-Moon History Question 31
Earth-Moon History Question 33
June 2025 Our Sun – A Star Question 5
Sample clusters (Spring 2024) The Effect of The Moon on Earth Question 1
The Effect of The Moon on Earth Question 2
The Effect of The Moon on Earth Question 4
The Effect of The Moon on Earth Question 6

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.

☐
Level 1: Identify the evidence that supports the claim that the phases of the Moon or eclipses or tides or seasons change cyclically or that celestial events are the result of the relative motion and the perspective of an observer.
☐
Level 2: Identify an evidence-based explanation, from those provided, that supports the claim that the phases of the Moon or eclipses or tides or seasons change cyclically or that celestial events are the result of the relative motion and the perspective of an observer.
☐
Level 3: Construct an explanation using evidence to support the claim that the phases of the Moon or eclipses or tides or seasons change cyclically or that celestial events are the result of the relative motion and/or perspective of an observer.
☐
Level 4: Construct an explanation using evidence to support the claim that the phases of the Moon, eclipses, tides, and seasons change cyclically.
☐
Level 5: Apply scientific ideas, principles, and evidence to support the claim that the phases of the Moon, eclipses, tides, and seasons change cyclically and that celestial events are the result of the relative motion and perspective of an observer.

Vocabulary

Terms from the Earth & Space Science Glossary that come from this standard or from the released exam questions that assess it.

From this standard
  • celestial bodies
  • celestial events
  • conceptual modeling
  • cyclical changes
  • Earth
  • eclipse
  • model
  • moon
  • peer review
  • phases of the moon
  • relative motion
  • relative positions
  • seasons
  • solar system
  • strength of tides
  • tides
  • types of eclipses
From released exam questions
Implied by this standard
  • lunar eclipse – implied by "types of eclipses"
  • tidal range – implied by "strength of tides"

Resources

Examples and discussion of resources for the learning, teaching, and assessment of HS-ESS1-7.

Pixel beaver This section could be expanded upon. You can help out by adding to this section.


NGSS Dimensions

Performance expectation HS-ESS1-7 was developed using the following elements from the NRC document A Framework for K-12 Science Education:

Science and Engineering Practices
  • Constructing explanations and designing solutions: Construct an explanation based on valid and reliable evidence obtained from a variety of sources (including students’ own investigations, models, theories, simulations, peer review) and the assumption that theories and laws that describe the natural world operate today as they did in the past and will continue to do so in the future.
Disciplinary Core Ideas
  • Earth and the solar system: Earth and celestial phenomena can be described by principles of relative motion and perspective.
Crosscutting Concepts
  • Patterns: Different patterns may be observed at each of the scales at which a system is studied and can provide evidence for causality in explanations of phenomena.
Page contributors: Conrad Richman, Caroline Leonard
Earth and Space Science | HS. Space Systems