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Nuclear Processes-Notes & Practice Bundle
Nuclear Processes-Notes & Practice Bundle
Nuclear Processes-Notes & Practice Bundle
Nuclear Processes-Notes & Practice Bundle
Nuclear Processes-Notes & Practice Bundle
Nuclear Processes-Notes & Practice Bundle
Nuclear Processes-Notes & Practice Bundle
Nuclear Processes-Notes & Practice Bundle
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Description

This is a collection of notes and practices to support a unit on nuclear chemistry.

The notes consist of animated slides and include integrated questions and practice.  A student note sheet is included for students to write notes (words to write down are highlighted in red) and to complete practice problems integrated in the notes.

The practice worksheets review information from the notes.  They will perform calculations, write nuclear equations, use graphs (band of stability, nuclear binding energy & half-life graph) to answer questions and perform calculations, draw models and answer questions.  Practice includes multiple formats to support in person and distance learning.

Topics:

1. Nuclear Stability (phET practice, notes & practice)

2. Nuclear Radiation (notes & practice)

3. Radioactive Dating (notes & practice)

4. Fusion & Nucleosynthesis (notes & practice-1 product)

5. Fission & Artificial Transmutation (notes & practice-1 product)

Notes include:

1. Animated slide presentation with questions and practice problems integrated throughout (formats: powerpoint, google slides & google slides with pear deck extension questions)

2. Student handout to take notes/practice (formats: word and pdf)


Practices include:

1. Student practice sheet (formats: word, pdf & fillable google slides)

2. Suggested answers to practice sheet (formats: google slides & powerpoint)

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Nuclear Processes-Notes & Practice Bundle

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Highlights

Grades icon
Grades
10th - 12th
Standards icon
Standards

Description

This is a collection of notes and practices to support a unit on nuclear chemistry.

The notes consist of animated slides and include integrated questions and practice.  A student note sheet is included for students to write notes (words to write down are highlighted in red) and to complete practice problems integrated in the notes.

The practice worksheets review information from the notes.  They will perform calculations, write nuclear equations, use graphs (band of stability, nuclear binding energy & half-life graph) to answer questions and perform calculations, draw models and answer questions.  Practice includes multiple formats to support in person and distance learning.

Topics:

1. Nuclear Stability (phET practice, notes & practice)

2. Nuclear Radiation (notes & practice)

3. Radioactive Dating (notes & practice)

4. Fusion & Nucleosynthesis (notes & practice-1 product)

5. Fission & Artificial Transmutation (notes & practice-1 product)

Notes include:

1. Animated slide presentation with questions and practice problems integrated throughout (formats: powerpoint, google slides & google slides with pear deck extension questions)

2. Student handout to take notes/practice (formats: word and pdf)


Practices include:

1. Student practice sheet (formats: word, pdf & fillable google slides)

2. Suggested answers to practice sheet (formats: google slides & powerpoint)

Report this resource to TPT
Reported resources will be reviewed by our team. Report this resource to let us know if this resource violates TPT's content guidelines.

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Standards

to see state-specific standards (only available in the US).
NGSSHS-PS1-8
Develop models to illustrate the changes in the composition of the nucleus of the atom and the energy released during the processes of fission, fusion, and radioactive decay. Emphasis is on simple qualitative models, such as pictures or diagrams, and on the scale of energy released in nuclear processes relative to other kinds of transformations. Assessment does not include quantitative calculation of energy released. Assessment is limited to alpha, beta, and gamma radioactive decays.
NGSSHS-ESS1-3
Communicate scientific ideas about the way stars, over their life cycle, produce elements. Emphasis is on the way nucleosynthesis, and therefore the different elements created, varies as a function of the mass of a star and the stage of its lifetime. Details of the many different nucleosynthesis pathways for stars of differing masses are not assessed.
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