- Reactant concentration per unit time.
- Product concentration per unit volume.
- Concentration of reactant or product per unit time.
- Total energy of the system.

Category: Chemistry
- n=1, l=0, m_l=0, m_s=+1/2.
- n=3, l=2, m_l=3, m_s=-1/2.
- n=2, l=1, m_l=-1, m_s=+1/2.
- n=4, l=0, m_l=0, m_s=-1/2.
- [Ar]4s23d104p5.
- [Kr]4s23d104p5.
- [Ar]3d104s24p5.
- 1s22s22p63s23p63d104s24p5.
- It predicts the exact energy of orbitals.
- It helps determine the relative energy order of orbitals in multi-electron atoms.
- It dictates electron spin.
- It determines orbital shape.
- The innermost electron shell.
- The outermost electron shell.
- The shell with d orbitals.
- The shell with only s orbitals.
- It always causes electrons to pair up.
- It causes electrons to occupy degenerate orbitals singly first.
- It has no effect on orbital energies.
- It makes all orbitals spherical.
- Atomic mass.
- Isotopic stability.
- Chemical bonding angles and molecular shapes.
- Electron charge.
- Half-filled subshells.
- Fully-filled subshells.
- Both A and B.
- Empty subshells.
- [Ne]3s23p2.
- 1s22s22p63s23p2.
- Both A and B.
- [Ar]3s23p2.
- Molecules.
- Atoms.
- Ions.
- Both B and C.
- Maximum stability.
- Minimum energy.
- Both A and B.
- Maximum electron repulsion.
- Equal to n.
- Equal to n?1.
- Equal to 2n2.
- Equal to n2.
- Equal to n.
- Equal to n?1.
- Equal to 2n.
- Equal to n2.
- Equal to n.
- Equal to n?1.
- Equal to 2n.
- Equal to n2.
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