'Principal quantum number' presentation slideshows

Principal quantum number - PowerPoint PPT Presentation


Flame Tests for Ions

Flame Tests for Ions

Flame Tests for Ions Flame Tests Using an Improvised Alcohol Burner Purpose When a metal salt solution is burned, the metal provides a colored flame. Each metal ion gives a different colored flame. Flame tests, therefore, can be used to test for the absence or presence of a metal ion

By ostinmannual
(377 views)

Basis sets

Basis sets

Basis sets. There is no general solution for the Schrödinger except for hydrogenoids. It is however natural to search for solutions resembling them.

By Mia_John
(395 views)

Chapter 7

Chapter 7

Chapter 7. Quantum Theory of the Atom. Overview. Light Waves, Photons, and the Bohr Theory Wave Nature of Light Quantum Effects and Photons Bohr Theory: Hydrogen and Hydrogen-like atoms Quantum Mechanics and Quantum Numbers Quantum Mechanics Quantum Numbers and Atomic Orbitals.

By ohio
(316 views)

Physics of Magnetism

Physics of Magnetism

Physics of Magnetism. Physical Principles of Magnetism. In order to understand how rocks, or, more correctly, the magnetic minerals present within the rock, retain a record of the Earths magnetic field we need to have some understanding of the basic physics behind the process.

By yitro
(225 views)

Regents Chemistry

Regents Chemistry

Regents Chemistry. Tyna L Meeks. Unit 5: Periodicity. Periodic Table - Organizes many “facts” and trends in chemical reactivity Based upon electronic configurations of the elements Similarities in electronic properties leads to similarities in chemical reactivity and structure.

By helene
(168 views)

Electron Configurations

Electron Configurations

Electron Configurations. Objectives: 3.0 Use the periodic table to identify periodic trends, including atomic radii, ionization energy, electronegativity, and energy levels. 3.1 Utilizing electron configurations, Lewis dot structures, and orbital notations to write chemical formulas.

By malana
(407 views)

Chapter 6 – Electron Structure of Atoms

Chapter 6 – Electron Structure of Atoms

Chapter 6 – Electron Structure of Atoms. Homework: 1, 2, 9, 10, 14, 15, 17, 19, 21, 23, 25, 28, 30, 31, 34, 35, 37, 39, 41, 42, 44, 47, 49, 51, 53, 55, 57, 58, 59, 60, 61, 62, 64, 66, 67, 70, 71, 72, 74, 78, 90. 6.1 – The Wave Nature of Light.

By livvy
(496 views)

Outline Chapter 10a The Periodic Law

Outline Chapter 10a The Periodic Law

Outline Chapter 10a The Periodic Law. 10-1. Chemical Change 10-2. Two Classes of Matter 10-3. The Atomic Theory 10-4. Metals and Nonmetals 10-5. Chemical Activity 10-6. Families of Elements 10-7. The Periodic Table . Alchemists.

By ulric
(138 views)

Quantum Mechanics Overview

Quantum Mechanics Overview

Quantum Mechanics Overview.

By chi
(82 views)

QMM Model

QMM Model

QMM Model. Mr. Matthew Totaro Legacy High School Honors Chemistry. Problems with the Bohr Model. The Bohr model could only predict the emission spectrum for hydrogen. The Bohr model failed to predict the emission spectra for all of the other elements.

By Lucy
(171 views)

Physics for Scientists and Engineers, 6e

Physics for Scientists and Engineers, 6e

Physics for Scientists and Engineers, 6e. Chapter 42 - Atomic Physics. A hydrogen atom is in its ground state. Incident on the atom are many photons each having an energy of 10.5 eV. The result is that. the atom is excited to a higher allowed state the atom is ionized

By dolf
(122 views)

What’s coming up???

What’s coming up???

What’s coming up???. Oct 25 The atmosphere, part 1 Ch. 8 Oct 27 Midterm … No lecture Oct 29 The atmosphere, part 2 Ch. 8 Nov 1 Light, blackbodies, Bohr Ch. 9 Nov 3,5 Postulates of QM, p-in-a-box Ch. 9 Nov 8, 10 Hydrogen and multi – e atoms Ch. 9 Nov 12,15 Multi-electron atoms Ch.9,10

By tam
(2 views)

Chapter 5 Atomic Models

Chapter 5 Atomic Models

Chapter 5 Atomic Models. Different metal containing compounds emit colored light when fireworks burn. This colored light is a combination of a series of colors called a spectral pattern. ( 谱带 )

By jinelle
(153 views)

Quantum Numbers and Electron Configuration

Quantum Numbers and Electron Configuration

Quantum Numbers and Electron Configuration. Hyperfine Spectral Lines. http://hyperphysics.phy-astr.gsu.edu/hbase/hyde.html. In the hydrogen atom, you observe in an emission spectrum occur. What will you see?. http://www.giangrandi.ch/optics/spectrum/visible-a.jpg. 3 lines at exactly

By heman
(667 views)

Chapter 7 Quantum Theory of the Atom

Chapter 7 Quantum Theory of the Atom

Chapter 7 Quantum Theory of the Atom. The photoelectric effect is the ejection of an electron from the surface of a metal or other material when light shines on it.

By elina
(256 views)

III. Quantum Model of the Atom (p. 98 - 104)

III. Quantum Model of the Atom (p. 98 - 104)

Ch. 4 - Electrons in Atoms. III. Quantum Model of the Atom (p. 98 - 104). A. Electrons as Waves. Louis de Broglie (1924) Applied wave-particle theory to e - e - exhibit wave properties. QUANTIZED WAVELENGTHS. A. Electrons as Waves. QUANTIZED WAVELENGTHS. VISIBLE LIGHT. ELECTRONS.

By Samuel
(212 views)

Determining the Absorption Coefficient

Determining the Absorption Coefficient

Determining the Absorption Coefficient. It would be Good to know how to determine the coefficients of the Equation of Transfer!. The Absorption Coefficient. Occupation Numbers N = Total Number of an Element N i,I = Number in the proper state (excitation and ionization)

By brasen
(186 views)

Noble Gas Notation

Noble Gas Notation

Noble Gas Notation. A shorthand method of writing electron configuration. Noble Gases.  group 18 elements Noble gas configurationthe outer main energy level is fully occupied by 8 electrons. Steps to Write a Noble Gas Notation. write down the symbol of the preceding noble gas (last column)

By colista
(350 views)

Chapter 5 CH1g,1h,2g,2i Electrons in Atoms

Chapter 5 CH1g,1h,2g,2i Electrons in Atoms

Chapter 5 CH1g,1h,2g,2i Electrons in Atoms. Actually, the Chemical History powerpoint talked about a lot of the stuff from Chapter 5 too, specifically part of section 1 and most of section 3. This powerpoint will talk about what is still left over in Chapter 5.

By selah
(105 views)

Quarknet Syracuse Summer Institute Strong Forces, finale

Quarknet Syracuse Summer Institute Strong Forces, finale

Quarknet Syracuse Summer Institute Strong Forces, finale. Last time – Key points. Feynman diagrams: pictorial representation of interaction between fundamental particles and force carriers. Both “scattering” and decays Energy and momentum conservation applies at each “vertex”

By lefty
(76 views)

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