Electromagnetic Radiation
Understand the wave and particle nature of light, including wavelength, frequency, and Planck's equation.
Understand the wave and particle nature of light, including wavelength, frequency, and Planck's equation.
Master quantum mechanics, Bohr's model, electronic configuration, and atomic orbitals for JEE Chemistry.
Master Einstein's photoelectric effect, threshold frequency, work function, and stopping potential for JEE.
Master Bohr's postulates, orbital radii, electron velocities, and energy levels for hydrogen-like atoms.
Master spectral series, Rydberg formula, and the limitations of Bohr's model for JEE Chemistry.
Master de Broglie hypothesis and Heisenberg uncertainty principle for JEE Chemistry.
Master the Schrödinger equation, wave functions, and quantum numbers for JEE Chemistry.
Visualize and understand the 3D shapes of s, p, and d orbitals including nodes and probability distributions.
Master Aufbau principle, Pauli exclusion, Hund's rule, and exceptional configurations for JEE Chemistry.
Master the photoelectric effect, de Broglie hypothesis, and wave-particle duality for JEE Physics.