IV. Electron Configuration (p , )

Slides:



Advertisements
Similar presentations
Electron Configuration Electrons in Atoms Adapted from Christy Johannesen
Advertisements

IV. Electron Configuration (p , ) Ch. 4 - Electrons in Atoms.
Electron Configuration
Electron Configuration UNIT 4 – QUANTUM MODEL:. Warm Up Where are the s, p, d, f orbitals located on the periodic table?
Ch. 4 - Electrons in Atoms Electron Configuration.
Electron Arrangement.
Atoms and the Periodic Table. Atoms  Atoms are the smallest pieces of matter that contain all the properties of a specific element  Each element contains.
C. Johannesson IV. Electron Configuration (p , ) Ch. 4 - Electrons in Atoms.
 Knowing the position of electrons helps us with many topics:  Why chemical reactions occur  Why some atoms are more stable than others  Why some.
Electron Configuration Electrons in Atoms. Energy levels, sublevels and orbitals Energy level (cloud or shell) SublevelsOrbitalsNumber of electrons 1s1.
Electron Configuration
Drill – 10/30 1. What is an orbital? Is an electron always within it? 2. What is the electron configuration for carbon (C)? 3. What is the electron configuration.
IV. Electron Configuration (p. 156)
Ch. 5- Electrons and atoms (cont.). General Rules zWe have 3 general rules that we follow when determining electron configuration yAufbau Principal yPauli.
C. Johannesson Aufbau Principle Electron Configuration.
Electron Configuration Ch. 4 - Electrons in Atoms.
Electron Configuration  Shorthand way of writing electron configuration of atoms 10 Ne: 1s 2 2s 2 2p 6 Elemental Symbol and atomic number Principal energy.
IV. Electron Configuration Ch. 4 - Electrons in Atoms.
IV. Electron Configuration Electrons in Atoms. A. General Rules zPauli Exclusion Principle yEach orbital can hold 2 electrons with opposite spins. y “Opposites.
Unit 2: Atoms and Bonding 2.63 Bohr’s model, Quantum Mechanical model, electron configuration Textbook ch 6.5, 6.8, and 6.9.
C. Johannesson IV. Electron Configuration (p , ) Ch. 4 - Electrons in Atoms.
Electron Configuration Electrons in Atoms. General Rules Pauli Exclusion Principle Each orbital can hold TWO electrons with opposite spins.
C. Johannesson IV. Electron Configuration (p , ) Ch. 4 - Electrons in Atoms.
IV. ELECTRON CONFIGURATION (P ) Ch. 5 - Electrons in Atoms y C. JOHANNESSON.
Electrons  Energy levels – region around nucleus where electrons are likely to be found.  Fixed energy levels are like rungs of a ladder. An electron.
Atoms and the Periodic Table. Atoms  Atoms are the smallest pieces of matter that contain all the properties of a specific element  Each element contains.
Electron Configuration. WHHYYYYY do we need to learn this? When atoms interact, it’s the valence electrons that interact first. Atoms are least stable.
Electron Configuration
Electron Configuration
Electron Configuration
IV. Electron Configuration (p , )
Electron Configuration
Electron Configuration
Electron Configurations and Periodicity.
Example for Na [Ne] 3s1 Na = 1s2 2s2 2p6 3s1 electron configuration
Quantum Model of the Atom
Electron Configuration
Electron Configurations and Orbital Notation Diagrams
Hang posters. Then review video
Electrons.
Quantum Numbers and Writing Electron Configurations
Electron Configuration
Electron Configurations
Electron Configurations
Electrons in Atoms.
IV. Electron Configuration (p , )
IV. Electron Configuration (p , )
Electron Configuration
Quantum Model of the Atom
Chapter 5 Introductory Assignment
IV. Electron Configuration (p , )
Electron configuration
Electrons in Atoms Electron Configuration Orbital Notation
Electron Configuration
IV. Electron Configuration (p , )
Electron Configurations 3 Types
Electron Configuration
Energy Levels & Orbitals
Sec.3 Electron Configurations (p )
IV. Electron Configuration (p , )
IV. Electron Configuration (p , )
Electron Configuration
Electron configuration
IV. Electron Configuration (p , )
Electron Configuration (p )
Let’s Review – orbitals defined by their shape / orientation
IV. Electron Configuration (p , )
Electron Configuration
Electron configuration
IV. Electron Configuration (p , )
Presentation transcript:

IV. Electron Configuration (p. 105 - 116, 128 - 139) Ch. 4 - Electrons in Atoms IV. Electron Configuration (p. 105 - 116, 128 - 139)

A. General Rules Pauli Exclusion Principle Each orbital can hold TWO electrons with opposite spins.

A. General Rules Aufbau Principle Electrons fill the lowest energy orbitals first. “Lazy Tenant Rule”

A. General Rules WRONG RIGHT Hund’s Rule Within a sublevel, place one e- per orbital before pairing them. “Empty Bus Seat Rule” WRONG RIGHT

1s2 2s2 2p4 O B. Notation 1s 2s 2p 8e- Orbital Diagram Electron Configuration 1s2 2s2 2p4

S 16e- 1s2 2s2 2p6 3s2 3p4 S 16e- [Ne] 3s2 3p4 B. Notation Longhand Configuration S 16e- 1s2 2s2 2p6 3s2 3p4 Core Electrons Valence Electrons Shorthand Configuration S 16e- [Ne] 3s2 3p4

C. Periodic Patterns s p d (n-1) f (n-2) 1 2 3 4 5 6 7 6 7 © 1998 by Harcourt Brace & Company

C. Periodic Patterns Period # energy level (subtract for d & f) A/B Group # total # of valence e- Column within sublevel block # of e- in sublevel

1s1 C. Periodic Patterns 1st column of s-block 1st Period s-block Example - Hydrogen 1s1 1st column of s-block 1st Period s-block

C. Periodic Patterns p s d (n-1) f (n-2) Shorthand Configuration Core e-: Go up one row and over to the Noble Gas. Valence e-: On the next row, fill in the # of e- in each sublevel. s d (n-1) f (n-2) p

C. Periodic Patterns Example - Germanium [Ar] 4s2 3d10 4p2

D. Stability Full energy level Full sublevel (s, p, d, f) Half-full sublevel

D. Stability Electron Configuration Exceptions Copper EXPECT: [Ar] 4s2 3d9 ACTUALLY: [Ar] 4s1 3d10 Copper gains stability with a full d-sublevel.

D. Stability Electron Configuration Exceptions Chromium EXPECT: [Ar] 4s2 3d4 ACTUALLY: [Ar] 4s1 3d5 Chromium gains stability with a half-full d-sublevel.

D. Stability 1+ 2+ 3+ NA 3- 2- 1- Ion Formation Atoms gain or lose electrons to become more stable. Isoelectronic with the Noble Gases. 1+ 2+ 3+ NA 3- 2- 1-

O2- 10e- [He] 2s2 2p6 D. Stability Ion Electron Configuration Write the e- config for the closest Noble Gas EX: Oxygen ion  O2-  Ne O2- 10e- [He] 2s2 2p6