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Intermolecular Forces in Covalent Compound Explained
This document explains the difference between different intermolecular forces such as hydrogen bonding, Dipole-Dipole, Induced Dipole, and London Dispersion Forces. It also explains polarizability and the trends resulting from Intermolecular forces. It explains which molecules will be polar and which non-polar based on the intermolecular forces the molecule experiences.
- Class notes
- • 1 pages •
This document explains the difference between different intermolecular forces such as hydrogen bonding, Dipole-Dipole, Induced Dipole, and London Dispersion Forces. It also explains polarizability and the trends resulting from Intermolecular forces. It explains which molecules will be polar and which non-polar based on the intermolecular forces the molecule experiences.
Trends in Ionization
This document provides the periodic table's trends in ionization, explaining electron affinity, ionization energy, cations, anions, isotopes, and the difference in ionization energy in non-metals vs metals.
- Class notes
- • 1 pages •
This document provides the periodic table's trends in ionization, explaining electron affinity, ionization energy, cations, anions, isotopes, and the difference in ionization energy in non-metals vs metals.