NEET · Chemistry · Structure of Atom doubts
12 doubts found
What does “Quantum numbers” actually mean in Structure of Atom, and why does it matter for NEET?
four numbers (n, l, m, s) that pin down an electron's shell, subshell, orbital orientation and spin.
I keep getting “Quantum numbers” questions wrong in Structure of Atom. What's the trap?
confusing the principal quantum number n (shell) with l (subshell).
What does “Orbitals” actually mean in Structure of Atom, and why does it matter for NEET?
regions around the nucleus where an electron is most likely to be found (s spherical, p dumbbell).
I keep getting “Orbitals” questions wrong in Structure of Atom. What's the trap?
drawing fixed circular orbits (Bohr) instead of probability clouds.
What does “Filling rules” actually mean in Structure of Atom, and why does it matter for NEET?
Aufbau (lowest energy first), Pauli (max two electrons, opposite spins) and Hund (singly fill before pairing).
I keep getting “Filling rules” questions wrong in Structure of Atom. What's the trap?
pairing electrons in a subshell before every orbital has one.
What does “Heisenberg uncertainty principle” actually mean in Structure of Atom, and why does it matter for NEET?
you cannot know an electron's exact position and momentum at the same time.
I keep getting “Heisenberg uncertainty principle” questions wrong in Structure of Atom. What's the trap?
expecting a definite electron path.
What is the difference between orbit and orbital?
An orbit is a fixed Bohr path (outdated); an orbital is a 3-D region of high probability for finding an electron.
What is the difference between shell and subshell?
A shell is a principal energy level (n); a subshell (s, p, d, f) is a division within a shell.
What is the difference between Aufbau principle and Hund's rule?
Aufbau decides the ORDER subshells fill (low to high energy); Hund decides HOW electrons spread within a subshell (singly, same spin).
When do I use E_n = −13.6 Z²/n² eV in Structure of Atom, and what does it mean?
energy of an electron in a hydrogen-like atom.