Skip to main content
Graph
Search
fr
en
Login
Search
All
Categories
Concepts
Courses
Lectures
MOOCs
People
Practice
Publications
Startups
Units
Show all results for
Home
Lecture
Toxins in Fruits and Vegetables: Chemical Defense Mechanisms
Graph Chatbot
Related lectures (30)
Valence Bond Theory: Hybridization and Bonding
Explores Valence Bond Theory, hybridization, orbital overlap, molecular shapes, and bond formation, emphasizing sigma and pi bonds' significance in chemical bonding.
Molecular Geometry: Tetrahedron Abstracts
Covers the concept of molecular geometry, focusing on the tetrahedron shape and the repulsion between linked atoms.
Organic Chemistry: Molecular Orbitals and Hybridization
Explores molecular orbitals, hybridization, sigma and pi bonds, and resonance in organic chemistry.
Chemical Bonds: Lewis Structures and Molecular Geometry
Explains chemical bonding, focusing on Lewis structures and molecular geometry using VSEPR theory.
Chemical Bonding: Lewis Theory
Explores chemical bonding, including nonpolar covalent, polar covalent, and ionic bonds, as well as Lewis structures and molecular geometries.
Molecular Geometry and Hybridization
Explores molecular geometry, hybridization, dipole moments, and intermolecular forces in chemical compounds.
Chemical Bond Representation: Lewis Structures & VSPR Theory
Explores the representation of chemical bonds through Lewis structures and the VSPR theory for molecular geometry determination.
Chemical Bonding: Lewis Structures and Molecular Shapes
Explores chemical bonding, Lewis structures, molecular shapes, and molecular polarity.
Molecular Geometry: Lewis Structures
Explains drawing Lewis structures, assigning charges, and determining molecular geometries based on electronic repulsion energy.
Chemical Bonding: Lewis Structures and Molecular Geometries
Explores chemical bonding through Lewis structures, molecular geometries, and dipole moments.
Molecular Geometry and Hybridization
Explores molecular geometry, hybridization, chemical bonds formation, and intermolecular forces like hydrogen bonding.
Chemical Bonding: Hybridization and Molecular Geometry
Covers hybridization in chemical bonding, molecular geometry, and electron delocalization in molecules like benzene.
Ligand Field Theory: Crystal Field Splitting
Delves into ligand field theory, crystal field splitting, and molecular orbitals in transition metal complexes.
Molecular Geometry and Hybridization
Explores molecular geometry, hybridization, covalent bonds, intermolecular forces, and water properties.
Chemical Bonding Fundamentals
Introduces the fundamentals of chemical bonding, covering types of bonds, Lewis representation, VSEPR theory, and molecular geometry.
Atomic Orbitals and Molecular Bonding
Explores atomic orbitals, molecular bonding, valence electrons, hybridization, and molecular structure with multiple bonds.
Molecular Polarity and Valence Bond Theory
Explores molecular polarity, net dipole moments, and Valence Bond Theory.
Chemical Bonds: Hybridization and Molecular Geometry
Explores chemical bonds, hybridization, molecular geometry, and intermolecular forces, emphasizing the role of orbitals and valence electrons.
Organic Chemistry: Functional Groups and Molecular Structure
Explores acid-base reactions, functional groups, electronegativity, and resonance in organic chemistry.
Organic Chemistry Basics: Resonance and Molecular Orbitals
Explores organic chemistry basics, including resonance structures, orbital hybridization, and bond formation in molecules.
Previous
Page 1 of 2
Next