Module OverviewThis course is an OER section developed by Dr. Ara Kahyaoglu for Bergen Community College. The primary text was developed for the Saylor Academy and is modified to better serve the course objectives for BCC students.Chapter 4 - Electronic Structure4.1 LightLearning Objectives 1. Describe light with its frequency and wavelength. 2. Describe light as a particle of energy.4.2 Quantum Numbers for ElectronsLearning Objectives 1. Explain what spectra are. 2. Learn the quantum numbers that are assigned to electrons.4.3 Organization of Electrons in Atoms (electron configuration)Learning Objectives 1. Learn how electrons are organized in atoms. 2. Represent the organization of electrons by an electron configuration.4.4 Electronic Structure and the Periodic TableLearning Objectives 1. Relate the electron configurations of the elements to the shape of the periodic table. 2. Determine the expected electron configuration of an element by its place on the periodic table.
3 Results
Module OverviewThis course is an OER section developed by Dr. Ara Kahyaoglu for Bergen Community College. The primary text was developed for the Saylor Academy and is modified to better serve the course objectives for BCC students.Chapter 4 - Electronic Structure4.1 LightLearning Objectives 1. Describe light with its frequency and wavelength. 2. Describe light as a particle of energy.4.2 Quantum Numbers for ElectronsLearning Objectives 1. Explain what spectra are. 2. Learn the quantum numbers that are assigned to electrons.4.3 Organization of Electrons in Atoms (electron configuration)Learning Objectives 1. Learn how electrons are organized in atoms. 2. Represent the organization of electrons by an electron configuration.4.4 Electronic Structure and the Periodic TableLearning Objectives 1. Relate the electron configurations of the elements to the shape of the periodic table. 2. Determine the expected electron configuration of an element by its place on the periodic table.
PowerPoint presentation covering electronic structure for the first semester of introductory chemistry. Topics covered include the electromagnetic spectrum, the photoelectric effect, the Bohr model, and an introduction to quantum mechanics. A brief description of slide materials for instructors is also included.
- Subject:
- Chemistry
- Physical Science
- Material Type:
- Lecture
- Lecture Notes
- Unit of Study
- Date Added:
- 07/02/2019