The Pauli Exclusion Principle tells us that no two electrons in an atom can have the same four quantum numbers. For an electron in the 3p orbital shown above, enter a possible value for each quantum number. n = mį = Give ONE example. m, = Give ONE example. Though a given electron only has one value for mį, there are O possible mį values for electrons in 3p orbitals.
The Pauli Exclusion Principle tells us that no two electrons in an atom can have the same four quantum numbers. For an electron in the 3p orbital shown above, enter a possible value for each quantum number. n = mį = Give ONE example. m, = Give ONE example. Though a given electron only has one value for mį, there are O possible mį values for electrons in 3p orbitals.
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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![The **Pauli Exclusion Principle** tells us that no two electrons in an atom can have the same four quantum numbers.
[Diagram of a 3p orbital showing a dumbbell shape with electron density distribution]
For an electron in the 3p orbital shown above, enter a possible value for each quantum number.
- \( n = \) [Input field]
- \( l = \) [Input field]
- \( m_l = \) [Input field] Give ONE example.
- \( m_s = \) [Input field] Give ONE example.
Though a given electron only has one value for \( m_l \), there are [Dropdown selection with options] possible \( m_l \) values for electrons in 3p orbitals.
---
**Diagram Explanation:**
The diagram depicts the shape of a 3p orbital. It features a two-lobed or dumbbell shape that indicates regions of high electron density. The orbital is oriented along a three-dimensional axis, demonstrating the spatial distribution of the electrons. The axes highlight the orientation potential for the p orbitals \( (p_x, p_y, p_z) \).](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F3dae5a27-a228-455d-8cc9-f5b577430088%2Fc71e3b98-f946-4fd4-898e-3b9872d4d8f0%2Fr5tig0y_processed.png&w=3840&q=75)
Transcribed Image Text:The **Pauli Exclusion Principle** tells us that no two electrons in an atom can have the same four quantum numbers.
[Diagram of a 3p orbital showing a dumbbell shape with electron density distribution]
For an electron in the 3p orbital shown above, enter a possible value for each quantum number.
- \( n = \) [Input field]
- \( l = \) [Input field]
- \( m_l = \) [Input field] Give ONE example.
- \( m_s = \) [Input field] Give ONE example.
Though a given electron only has one value for \( m_l \), there are [Dropdown selection with options] possible \( m_l \) values for electrons in 3p orbitals.
---
**Diagram Explanation:**
The diagram depicts the shape of a 3p orbital. It features a two-lobed or dumbbell shape that indicates regions of high electron density. The orbital is oriented along a three-dimensional axis, demonstrating the spatial distribution of the electrons. The axes highlight the orientation potential for the p orbitals \( (p_x, p_y, p_z) \).
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