

Atomic Radii
Presentation
•
Chemistry
•
9th - 12th Grade
•
Hard
Joseph Anderson
FREE Resource
8 Slides • 3 Questions
1
Atomic and Ionic Radii
Exploring the sizes of atoms and ions
2
Atomic and Ionic Radii
To determine atomic radius, remember that it increases as we move to the left on the periodic table. This is because there are fewer protons, resulting in less electromagnetic attraction between the nucleus and electrons. For ionic radius, consider the following order of increasing size: O2-, F-, Ne, Na+, and Mg2+.
3
Multiple Choice
Why does atomic radius increase as we move to the left on the periodic table?
Because there are more protons, resulting in more electromagnetic attraction between the nucleus and electrons.
Because there are fewer protons, resulting in less electromagnetic attraction between the nucleus and electrons.
Because there are more electrons, resulting in more electromagnetic attraction between the nucleus and electrons.
Because there are fewer electrons, resulting in less electromagnetic attraction between the nucleus and electrons.
4
Atomic Radius
Trivia: As we move to the left on the periodic table, the atomic radius increases. This is because there are fewer protons, resulting in less electromagnetic attraction between the nucleus and electrons. This allows the electrons to be further away from the nucleus, leading to a larger atomic radius.
5
Atomic and Ionic Radii
Atomic radius increases going left and down the periodic table, while ionic radius is influenced by the number of electrons. The correct order of increasing atomic radius is Krypton, Bromine, Germanium, Lead, Flerovium. Understanding these trends helps in predicting the size of atoms and ions.
6
Atomic and Ionic Radii
Atoms and ions with the same number of electrons are called isoelectronic species. They experience the same amount of electron repulsion, resulting in similar atomic radii. For example, O2-, Mg2+, F-, Na+, and Ne all have 10 electrons and exhibit the same electron configuration as neon.
7
Multiple Choice
What is the term used to describe atoms and ions with the same number of electrons?
Isotonic species
Isoelectronic species
Isobaric species
Isomeric species
8
Isoelectronic Species
Isoelectronic species are atoms and ions that have the same number of electrons. This means they have similar electron configurations, resulting in similar chemical properties. Examples include Neon and Oxygen. Isotonic, isobaric, and isomeric species refer to different concepts and are not related to electron numbers.
9
Exploring Atomic and Ionic Radii
10
Multiple Choice
What determines the trend of atomic and ionic radii?
Electrons
Protons
Neutrons
Isotopes
11
Protons Determine Radii Trend
Interesting Trivia: The number of protons in an atom's nucleus determines its atomic and ionic radii. As the number of protons increases, the radii decrease. This is because the increased positive charge attracts the negatively charged electrons closer to the nucleus, resulting in a smaller radius. Protons play a crucial role in determining the size of atoms and ions.
Atomic and Ionic Radii
Exploring the sizes of atoms and ions
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