For the following atoms in their ground state, determine the number of electrons in each energy shell. If there are no electrons in the particular energy shell for an atom, enter a 0. An atom with 6 total electrons. electrons in energy shell 1: electrons in energy shell 2: electrons in energy shell 3: electrons in energy shell 4: An atom with 10 total electrons. electrons in energy shell 1: electrons in energy shell 2: about us careers privacy policy terms of use contact us help

Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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For the following atoms in their ground state, determine the number of electrons in each energy shell. If there are no electrons in the particular energy shell for an atom, enter a 0.

**An atom with 6 total electrons.**

- Electrons in energy shell 1: [ ]
- Electrons in energy shell 2: [ ]
- Electrons in energy shell 3: [ ]
- Electrons in energy shell 4: [ ]

**An atom with 10 total electrons.**

- Electrons in energy shell 1: [ ]
- Electrons in energy shell 2: [ ]

---

This is an interactive exercise designed to help students understand the distribution of electrons in the energy shells of an atom. There are two separate sections for atoms with 6 and 10 electrons, respectively. Each section includes input fields corresponding to different energy shells, and students are instructed to enter the number of electrons in each shell. If a shell has no electrons, they are instructed to enter a zero.
Transcribed Image Text:For the following atoms in their ground state, determine the number of electrons in each energy shell. If there are no electrons in the particular energy shell for an atom, enter a 0. **An atom with 6 total electrons.** - Electrons in energy shell 1: [ ] - Electrons in energy shell 2: [ ] - Electrons in energy shell 3: [ ] - Electrons in energy shell 4: [ ] **An atom with 10 total electrons.** - Electrons in energy shell 1: [ ] - Electrons in energy shell 2: [ ] --- This is an interactive exercise designed to help students understand the distribution of electrons in the energy shells of an atom. There are two separate sections for atoms with 6 and 10 electrons, respectively. Each section includes input fields corresponding to different energy shells, and students are instructed to enter the number of electrons in each shell. If a shell has no electrons, they are instructed to enter a zero.
### Electron Configuration Exercise

**An atom with 13 total electrons.**

- Electrons in energy shell 1: [ ]
- Electrons in energy shell 2: [ ]
- Electrons in energy shell 3: [ ]
- Electrons in energy shell 4: [ ]

**An atom with 20 total electrons.**

- Electrons in energy shell 1: [ ]
- Electrons in energy shell 2: [ ]
- Electrons in energy shell 3: [ ]
- Electrons in energy shell 4: [ ]

### Instructions

Identify the number of electrons in each energy shell for atoms with 13 and 20 total electrons. Fill in the boxes with the correct numbers based on the rules of electron configuration.

---

**Note**: This exercise helps understand the distribution of electrons in different energy levels or shells of an atom, crucial for studying atomic structure and chemical bonding.

For further assistance, feel free to reach out through our [contact page](#). 

**Links**: [About Us](#) | [Careers](#) | [Privacy Policy](#) | [Terms of Use](#) | [Contact Us](#) | [Help](#)
Transcribed Image Text:### Electron Configuration Exercise **An atom with 13 total electrons.** - Electrons in energy shell 1: [ ] - Electrons in energy shell 2: [ ] - Electrons in energy shell 3: [ ] - Electrons in energy shell 4: [ ] **An atom with 20 total electrons.** - Electrons in energy shell 1: [ ] - Electrons in energy shell 2: [ ] - Electrons in energy shell 3: [ ] - Electrons in energy shell 4: [ ] ### Instructions Identify the number of electrons in each energy shell for atoms with 13 and 20 total electrons. Fill in the boxes with the correct numbers based on the rules of electron configuration. --- **Note**: This exercise helps understand the distribution of electrons in different energy levels or shells of an atom, crucial for studying atomic structure and chemical bonding. For further assistance, feel free to reach out through our [contact page](#). **Links**: [About Us](#) | [Careers](#) | [Privacy Policy](#) | [Terms of Use](#) | [Contact Us](#) | [Help](#)
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