Models of Multielectron Atoms Flashcards

1
Q

What is the size of an orbital equivalent to?

A

the average distance of an electron from the nucleus

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2
Q

Quantum number n

A

principle quantum number; determines size; orbital size increases as n increases; impacts energy

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3
Q

Quantum number l

A

orbital quantum number; number of angular nodes = l; determines the shape; values range from 0 to n-1; impacts energy when electron repulsion is present

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4
Q

What l value does the p orbital correspond to?

A

1

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5
Q

Quantum number ml

A

magnetic quantum number; specifies the spatial orientation of an orbital; does not affect E

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6
Q

Subshell

A

Orbitals with the same value n and l

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7
Q

Nodes

A

where a wave function changes signs; probability of finding electrons at nodes is zero; more nodes = higher energy

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8
Q

Radial nodes

A

occur at specific values of r and are spherical

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9
Q

Angular nodes

A

non spherical nodes (often planes or cones)

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10
Q

Quantum number ms

A

spin quantum number; describes electrons magnetic field; either .5 or -.5

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11
Q

Degenerate

A

orbitals with same energy levels

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12
Q

Pauli exclusion principle

A

if electrons have the same n, l, and ms, then their ml must be different from each other (no 2 electrons in an atom can have the same quantum numbers)

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13
Q

Hund’s rule

A

lowest energy configuration has max number of unpaired electrons with parallel spins

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14
Q

Aufbau principle

A

process of filling electrons into orbitals from lowest E occupancy up

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15
Q

Valence electrons

A

occupy the outermost orbitals

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16
Q

Core electrons

A

occupy inner orbitals

17
Q

Shell

A

n value