Browse Standards
View all PreK-12 NYS Learning Standards in a dropdown list format.
Standard Area - ARTS: NYS The Arts
Standard Area - ARTS: NYS The Arts
Standard Area - CDOS: NYS Career Development and Occupational Studies
Standard Area - CDOS: NYS Career Development and Occupational Studies
Standard Area - CSDF: NYS Computer Science and Digital Fluency
Standard Area - CSDF: NYS Computer Science and Digital Fluency
Standard Area - ELA: NYS Next Generation English Language Arts
Standard Area - ELA: NYS Next Generation English Language Arts
Standard Area - HPF: NYS Health, Physical Education, and Family and Consumer Sciences
Standard Area - HPF: NYS Health, Physical Education, and Family and Consumer Sciences
Standard Area - NY-MATH: NYS Next Generation Mathematics
Standard Area - NY-MATH: NYS Next Generation Mathematics
Standard Area - PE: NYS Physical Education
Standard Area - PE: NYS Physical Education
Standard Area - S: NYS Science
Standard Area - S: NYS Science
Grade Level - S.K: Kindergarten
Grade Level - S.K: Kindergarten
Grade Level - S.1: First Grade
Grade Level - S.1: First Grade
Grade Level - S.2: Second Grade
Grade Level - S.2: Second Grade
Grade Band - S.K-2: Kindergarten - Second Grade
Grade Band - S.K-2: Kindergarten - Second Grade
Grade Level - S.3: Third Grade
Grade Level - S.3: Third Grade
Grade Level - S.4: Fourth Grade
Grade Level - S.4: Fourth Grade
Grade Level - S.5: Fifth Grade
Grade Level - S.5: Fifth Grade
Grade Band - S.3-5: Third - Fifth Grades
Grade Band - S.3-5: Third - Fifth Grades
Grade Level - S.MS: Middle School
Grade Level - S.MS: Middle School
Grade Level - S.HS: High School
Grade Level - S.HS: High School
Domain - S.HS.PS: Structure and Properties of Matter
Domain - S.HS.PS: Structure and Properties of Matter
Domain - S.HS.PS: Chemical Reactions
Domain - S.HS.PS: Chemical Reactions
Domain - S.HS.PS: Forces and Interactions
Domain - S.HS.PS: Forces and Interactions
Domain - S.HS.PS: Waves and Electromagnetic Radiation
Domain - S.HS.PS: Waves and Electromagnetic Radiation
Domain - S.HS.LS: Structure and Function
Domain - S.HS.LS: Structure and Function
Domain - S.HS.LS: Matter and Energy in Organisms and Ecosystems
Domain - S.HS.LS: Matter and Energy in Organisms and Ecosystems
Performance Expectation - S.HS.LS.1.5: Students who demonstrate understanding can use a model to illustrate how photosynthesis transforms light energy into stored chemical energy.
Performance Expectation - S.HS.LS.1.5: Students who demonstrate understanding can use a model to illustrate how photosynthesis transforms light energy into stored chemical energy.
Performance Expectation - S.HS.LS.1.6: Students who demonstrate understanding can construct and revise an explanation based on evidence for how carbon, hydrogen, and oxygen from sugar molecules may combine with other elements to form amino acids and/or other large carbon-based molecules.
Performance Expectation - S.HS.LS.1.6: Students who demonstrate understanding can construct and revise an explanation based on evidence for how carbon, hydrogen, and oxygen from sugar molecules may combine with other elements to form amino acids and/or other large carbon-based molecules.
Performance Expectation - S.HS.LS.1.7: Use a model to illustrate that aerobic cellular respiration is a chemical process whereby the bonds of food molecules and oxygen molecules are broken and the bonds in new compounds are formed resulting in a net transfer of energy.
Performance Expectation - S.HS.LS.1.7: Use a model to illustrate that aerobic cellular respiration is a chemical process whereby the bonds of food molecules and oxygen molecules are broken and the bonds in new compounds are formed resulting in a net transfer of energy.
Performance Expectation - S.HS.LS.2.3: Construct and revise an explanation based on evidence for the cycling of matter and flow of energy in ecosystems.
Performance Expectation - S.HS.LS.2.3: Construct and revise an explanation based on evidence for the cycling of matter and flow of energy in ecosystems.
Performance Expectation - S.HS.LS.2.4: Students who demonstrate understanding can use mathematical representations to support claims for the cycling of matter and flow of energy among organisms in an ecosystem.
Performance Expectation - S.HS.LS.2.4: Students who demonstrate understanding can use mathematical representations to support claims for the cycling of matter and flow of energy among organisms in an ecosystem.
Performance Expectation - S.HS.LS.2.5: Students who demonstrate understanding can develop a model to illustrate the role of photosynthesis and cellular respiration in the cycling of carbon among the biosphere, atmosphere, hydrosphere, and geosphere.
Performance Expectation - S.HS.LS.2.5: Students who demonstrate understanding can develop a model to illustrate the role of photosynthesis and cellular respiration in the cycling of carbon among the biosphere, atmosphere, hydrosphere, and geosphere.
Clarification Statement - S.HS.LS.2.5.CS: Examples of models could include simulations, diagrams, and mathematical
models of the carbon cycle (photosynthesis, respiration, decomposition, and combustion)
Clarification Statement - S.HS.LS.2.5.CS: Examples of models could include simulations, diagrams, and mathematical
models of the carbon cycle (photosynthesis, respiration, decomposition, and combustion)
Assessment Boundary - S.HS.LS.2.5.AB: Assessment does not include the specific chemical steps of photosynthesis and respiration.
Assessment Boundary - S.HS.LS.2.5.AB: Assessment does not include the specific chemical steps of photosynthesis and respiration.
Science and Engineering Practices - 9-12.SEP2.1: Develop a model based on evidence to illustrate the relationships between systems or between components of a system.
Science and Engineering Practices - 9-12.SEP2.1: Develop a model based on evidence to illustrate the relationships between systems or between components of a system.
Disciplinary Core Ideas - S.HS.LS.2.5.DCI: LS2.B: Cycles of Matter and Energy Transfer in Ecosystems
•(NYSED) Photosynthesis and cellular respiration are important components of the carbon cycle, in which carbon is exchanged among the biosphere, atmosphere, hydrosphere, and geosphere through chemical, physical, geological, and biological processes.
PS3.D: Energy in Chemical Processes
•The main way that solar energy is captured and stored on Earth is through the complex chemical process known as photosynthesis. (secondary to HS-LS2-5)
Disciplinary Core Ideas - S.HS.LS.2.5.DCI: LS2.B: Cycles of Matter and Energy Transfer in Ecosystems
•(NYSED) Photosynthesis and cellular respiration are important components of the carbon cycle, in which carbon is exchanged among the biosphere, atmosphere, hydrosphere, and geosphere through chemical, physical, geological, and biological processes.
PS3.D: Energy in Chemical Processes
•The main way that solar energy is captured and stored on Earth is through the complex chemical process known as photosynthesis. (secondary to HS-LS2-5)
Crosscutting Concepts - CC3.8: Models (e.g., physical, mathematical, computer models) can be used to simulate systems and interactions—including energy, matter, and information flows—within and between systems at different scales.
Crosscutting Concepts - CC3.8: Models (e.g., physical, mathematical, computer models) can be used to simulate systems and interactions—including energy, matter, and information flows—within and between systems at different scales.
Domain - S.HS.LS: Interdependent Relationships in Ecosystems
Domain - S.HS.LS: Interdependent Relationships in Ecosystems
Domain - S.HS.LS: Inheritance and Variation of Traits
Domain - S.HS.LS: Inheritance and Variation of Traits
Domain - S.HS.LS: Natural Selection and Evolution
Domain - S.HS.LS: Natural Selection and Evolution
Domain - S.HS.ESS: Space Systems
Domain - S.HS.ESS: Space Systems
Domain - S.HS.ESS: History of Earth
Domain - S.HS.ESS: History of Earth
Domain - S.HS.ESS: Earth’s Systems
Domain - S.HS.ESS: Earth’s Systems
Domain - S.HS.ESS: Weather and Climate
Domain - S.HS.ESS: Weather and Climate
Domain - S.HS.ESS: Human Sustainability
Domain - S.HS.ESS: Human Sustainability
Domain - S.HS.ETS: Engineering Design
Domain - S.HS.ETS: Engineering Design
Standard Area - SEL: NYS Social Emotional Learning Benchmarks
Standard Area - SEL: NYS Social Emotional Learning Benchmarks
Standard Area - SS: NYS Social Studies Framework
Standard Area - SS: NYS Social Studies Framework
Standard Area - TECH: Learning Standards for Technology (see MST standards under Previous Standard Versions)
Standard Area - TECH: Learning Standards for Technology (see MST standards under Previous Standard Versions)
Standard Area - WL: World Languages
Standard Area - WL: World Languages
Standard Area - Previous Standards Versions
Standard Area - Previous Standards Versions
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