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English Language Arts
Science
Blended Learning
Science
Kindergarten
Physical Sciences
Life Sciences
Earth and Space Sciences
Engineering, Technology, and Applications of Science
First grade
Physical Sciences
Life Sciences
Earth and Space Sciences
Engineering, Technology, and Applications of Science
Second grade
Physical Sciences
Life Sciences
Earth and Space Sciences
Engineering, Technology, and Applications of Science
Third Grade
Physical Sciences
Life Sciences
Earth and Space Sciences
Engineering, Technology, and Applications of Science
Fourth grade
Physical Sciences
Life Sciences
Earth and Space Sciences
Engineering, Technology, and Applications of Science
Fifth grade
Physical Sciences
Life Sciences
Earth and Space Sciences
Engineering, Technology, and Applications of Science
Middle School
Physical Sciences
Life Sciences
Earth and Space Sciences
Engineering, Technology, and Applications of Science
High School
Physical Sciences
Life Sciences
Earth and Space Sciences
Engineering, Technology, and Applications of Science
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HS-LS2-2
High School
Life Sciences
Physical Sciences
Life Sciences
Earth and Space Sciences
Engineering, Technology, and Applications of Science
HS-LS2
HS-LS1
From Molecules to Organisms: Structures and Processes
HS-LS2
Ecosystems: Interactions, Energy, and Dynamics
HS-LS3
Heredity: Inheritance and Variation of Traits
HS-LS4
Biological Evolution: Unity and Diversity
HS-LS2-2
HS-LS2-1
Use mathematical and/or computational representations to support explanations of factors that affect carrying capacity of ecosystems at different scales.
HS-LS2-2
Use mathematical representations to support and revise explanations based on evidence about factors affecting biodiversity and populations in ecosystems of different scales.
HS-LS2-3
Construct and revise an explanation based on evidence for the cycling of matter and flow of energy in aerobic and anaerobic conditions.
HS-LS2-4
Use a mathematical representation to support claims for the cycling of matter and flow of energy among organisms in an ecosystem.
HS-LS2-5
Develop a model to illustrate the role of photosynthesis and cellular respiration in the cycling of carbon among the biosphere, atmosphere, hydrosphere, and geosphere.
HS-LS2-6
Evaluate the claims, evidence, and reasoning that the complex interactions in ecosystems maintain relatively consistent numbers and types of organisms in stable conditions, but changing conditions may result in a new ecosystem.
HS-LS2-7
Design, evaluate, and refine a solution for reducing the impacts of human activities on the environment and biodiversity.
HS-LS2-8
Evaluate the evidence for the role of group behavior on individual and species' chances to survive and reproduce.
HS-LS2-2
Use mathematical representations to support and revise explanations based on evidence about factors affecting biodiversity and populations in ecosystems of different scales.
10 Lessons
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HS-LS2-1
Use mathematical and/or computational representations to support explanations of factors that affect carrying capacity of ecosystems at different scales.
HS-LS2-2
Use mathematical representations to support and revise explanations based on evidence about factors affecting biodiversity and populations in ecosystems of different scales.
HS-LS2-3
Construct and revise an explanation based on evidence for the cycling of matter and flow of energy in aerobic and anaerobic conditions.
HS-LS2-4
Use a mathematical representation to support claims for the cycling of matter and flow of energy among organisms in an ecosystem.
HS-LS2-5
Develop a model to illustrate the role of photosynthesis and cellular respiration in the cycling of carbon among the biosphere, atmosphere, hydrosphere, and geosphere.
HS-LS2-6
Evaluate the claims, evidence, and reasoning that the complex interactions in ecosystems maintain relatively consistent numbers and types of organisms in stable conditions, but changing conditions may result in a new ecosystem.
HS-LS2-7
Design, evaluate, and refine a solution for reducing the impacts of human activities on the environment and biodiversity.
HS-LS2-8
Evaluate the evidence for the role of group behavior on individual and species' chances to survive and reproduce.