Difference between revisions of "HS-PS1-1"

From NY Science Standards Wiki
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| ls = Use the periodic table as a model to predict the relative properties of elements based on the patterns of electrons in the outermost energy level of atoms.
 
| ls = Use the periodic table as a model to predict the relative properties of elements based on the patterns of electrons in the outermost energy level of atoms.
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| cs = Examples of properties that could be predicted from patterns could include reactivity of metals, types of bonds formed, numbers of bonds formed, and reactions with oxygen.
 
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Revision as of 16:38, 6 July 2023

Use the periodic table as a model to predict the relative properties of elements based on the patterns of electrons in the outermost energy level of atoms.

Clarification statement: Examples of properties that could be predicted from patterns could include reactivity of metals, types of bonds formed, numbers of bonds formed, and reactions with oxygen.

Assessment

Examples of evaluating student mastery of performance expectation HS-PS1-1.

Resources

Examples and discussion of resources for the learning, teaching, and assessment of HS-PS1-1.

NGSS dimensions

Science and engineering practices Developing and using models: Use a model to predict the relationships between systems or between components of a system.

Disciplinary core ideas Structure and properties of matter: Each atom has a charged substructure consisting of a nucleus, which is made of protons and neutrons, surrounded by electrons. Structure and properties of matter: The periodic table orders elements horizontally by the number of protons in the atom’s nucleus and places those with similar chemical properties in columns. The repeating patterns of this table reflect patterns of outer electron states.

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.

Connections to ELA and Math

Chemistry | HS. Structure and Properties of Matter