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Electrons in Atoms

Horizontales
A HIGH-ENERGY, UNSTABLE STATE OF THE ATOM
THE MATHEMATICAL CONCEPT IN WHICH THE QUANTUM MECHANICAL MODEL IS BASED
A COLLECTION OF ORBITALS OF THE SAME ENERGY
HIS RULE STATES THAT ELECTRONS DO NOT PAIR UP IN AN ORBITAL UNTIL EACH ONE IS OCCUPIED
AMOUNT OF ENERGY NEEDED TO MAKE AN ELECTRON JUMP
THE NUMBER OF ELECTRONS THAT CAN OCCUPY A 4D ORBITAL
CONTAINS SUBLEVELS, ORBITALS AND ELECTRONS
THE NUMBER OF ORBITALS IN A F SUBLEVEL
ILLUSTRATES THE ARRANGEMENT AND SPIN OF ELECTRONS
THE FINAL ORBITAL NOTATION OF MERCURY
THE EXCLUSION PRINCIPLE THAT STATES THAT ONLY 2 ELECTRONS CAN OCCUPY AN ORBITAL AND WILL HAVE OPPOSITE SPINS
Verticales
PROPOSED THE UNCERTAINTY PRINCIPLE
THE SMALLEST REGION OF SPACE WHERE THERE IS A HIGH PROBABILITY OF FINDING AN ELECTRON
ANOTHER NAME FOR THE QUANTUM MECHANICAL MODEL
A PARTICLE OF LIGHT
THE NUMBER OF ELECTRONS THAT CAN FILL A P SUBLEVEL
STUDIED HYDROGEN AND ITS ATOMIC EMISSION SPECTRUM
EMITTED WHEN AN ELECTRON DROPS BACK DOWN TOWARD THE NUCLEUS
THE PRINCIPLE OF ELECTRONS FILLING LOWEST ENERGY SUBLEVELS FIRST
A LOWEST-ENERGY, STABLE STATE OF THE ATOM
THE FINAL ORBITAL NOTATION OF GERMANIUM