Chemistry · Ch 2 — Structure of Atom
Summary
Summary
- Cathode rays are streams of electrons (), with charge-to-mass ratio ; anode rays (positive ions) depend on the gas in the tube.
- Rutherford’s -particle scattering experiment showed that the atom has a tiny, dense, positively charged nucleus (radius m) surrounded by mostly empty space (radius m).
- Atomic number = number of protons; mass number = protons + neutrons. Isotopes have same , different ; isobars have same , different .
- Electromagnetic radiation is described by wavelength , frequency , and wave number . The speed of light .
- Planck’s quantum theory: Energy is emitted/absorbed in discrete quanta: , where .
- Bohr’s model for hydrogen-like atoms: electrons revolve in fixed circular orbits with quantised angular momentum . Energy of level : . Transition energy: , where .
- Limitations of Bohr’s model: fails for multi-electron atoms, cannot explain fine structure, Zeeman effect, or the uncertainty principle.
- Dual nature of matter (de Broglie): every moving particle has a wavelength . Heisenberg’s uncertainty principle: — position and momentum cannot both be known precisely.
- Quantum mechanical model: atom described by a wavefunction , whose square gives the probability density of finding an electron. Orbitals are defined by three quantum numbers:
- Principal quantum number (shell, )
- Azimuthal quantum number (subshell, ; )
- Magnetic quantum number (orbital orientation, to )
- Spin quantum number ( or )
- Shapes of orbitals: is spherical; are dumbbell-shaped (); are cloverleaf (four lobes) with one having a torus. …