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Chemistry
Electron
Electron
CH 5 CHEMISTRY QUANTUM MODEL ELECTRON CLOUDS
The quantum model of the atom and the electron orbital clouds s,p,d.
By
BRIAN MILLER
Valence Electrons and the Periodic Table
This Chemistry lesson is titled Valence Electrons and the Periodic Table and will give a detailed explanation of the topic.
By
Tyler Dewitt
How protons, electrons and neutrons were discovered.
This lesson will touch on the history of how protons, electrons and neutrons were discovered. This lesson will discuss JJ Thomson and his discoveries that have impacted the science field.
By
Ian Stuart
Big Idea 1 part 3 electron energies
Covering how energy in electrons is related to its position and calculated by quantum energy changes. Also covered is quantum numbers, how they are assigned, and what they mean.
By
Tyler Newton
d-block elements 1: Electronic configuration & trend in m.p.
This is the first in a series of video lesson on d-block elements and their compounds. I look at the electronic configurations of the first row and try to explain the trend in their melting points. Minimizing electron repulsion is the most important consideration at play in these atoms and ions, but it is not the only one. This lesson is aimed at High School level and I only attempt to provide a simplified explanation. The following three points are perhaps worth adding: (1) the 4s orbital behaves as the outermost energy orbital - and as a result they nearly always lose a minimum of 2 electrons. (2) in addition to energy levels of orbitals, you need to factor in both their shape and closeness to one another - facilitating electron movements between them. (3) atomic orbitals can mix (hybridize) and at times the actual electronic configuration of the ions may be more complex than shown here.
By
Frank Scullion
Scanning Electron Microscopy (SEM): animation of 3 types of imaging
Scanning electron microscopy (SEM) is a powerful imaging technique which produces a largely magnified image by using electrons and X-rays instead of light. Primary electrons come from the electron gun situated at the top of the microscope. Secondary electrons originate from the specimen as a result of displacement by the primary electrons. Backscattered electrons consist of high-energy electrons originating in the primary electron beam that are reflected or back-scattered out of the specimen. SEM can be coupled with an X-ray spectrometer which is called energy-dispersive X-ray spectroscopy (EDX). At rest, an atom within the specimen contains ground state electrons. The primary electrons from the electron gun excites an electron in an inner shell, prompting its ejection as a secondary electron, resulting in the formation of an electron hole within the atom’s electronic structure. An electron from an outer higher energy shell then fills the lower energy hole, and the excess energy is released in the form of an X-ray photon. Each element of the periodic table emits X-rays at distinctive energies due to distinct elemental electronic structure. Thus, X-ray emission data can be analysed to characterise the elemental composition of the specimen and also perform area mapping.
By
Dr. Emelyn Tan
big idea 1 part 2
Covering the history of chemistry, all the names and experiments you need to know for the learning objectives.
By
Tyler Newton
Electron Configuration of Ions and Hund's Rule
By
Mr. V
CH 5 CHEMISTRY ORBITAL NOTATION
Arranging electrons based upon orbital notation using the Aufbau Principle, Hund's Rule and the Pauli Principle.
By
BRIAN MILLER
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Electron
Matter
5
SI System
3
Measurements
22
Aufbau Principle
1
Teachers
Denis Zelvys
Member
Jackson, United States of America
Mr. V
Member
Edison, United States of America
BRIAN MILLER
Teacher
Pasadena, United States of America
Frank Scullion
Member
United Kingdom
Ian Stuart
Member