Standard Correlation Map | ||||||||||||||||||||||||||||
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Code | Description | Location | Type | Link | ||||||||||||||||||||||||
NGSS-HS-DCI-PS2.B | Types of Interactions | |||||||||||||||||||||||||||
NGSS-HS-DCI-PS2.B-1 | Newton’s law of universal gravitation and Coulomb’s law provide the mathematical models to describe and predict the effects of gravitational and electrostatic forces between distant objects. | |||||||||||||||||||||||||||
NGSS-HS-DCI-PS2.B-1-1 | Newton’s law of universal gravitation provides the mathematical model to describe and predict the effects of the gravitational force between distant objects. |
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NGSS-HS-DCI-PS2.B-1-2 | Coulomb’s law provides the mathematical model to describe and predict the effects of the electrostatic force between distant objects. |
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NGSS-HS-DCI-PS2.B-2 | Forces at a distance are explained by fields (gravitational, electric, and magnetic) permeating space that can transfer energy through space. Magnets or electric currents cause magnetic fields; electric charges or changing magnetic fields cause electric fields. | |||||||||||||||||||||||||||
NGSS-HS-DCI-PS2.B-2-1 | Forces at a distance are explained by fields (gravitational, electric, and magnetic) permeating space that can transfer energy through space. |
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NGSS-HS-DCI-PS2.B-2-2 | Magnets create magnetic fields. |
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NGSS-HS-DCI-PS2.B-2-3 | Electric currents create magnetic fields. |
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NGSS-HS-DCI-PS2.B-2-4 | Electric charges create electric fields. |
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NGSS-HS-DCI-PS2.B-2-5 | Changing magnetic fields create electric fields. |
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875 |