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Atomic Orbital Theory Interactive Videos

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11th Grade - 12th Grade

Molecular Orbital Concepts - Electron Delocalization - Chemical Bonding

Molecular Orbital Concepts - Electron Delocalization - Chemical Bonding

Interactive Video

Molecular Orbital Concepts - Electron Delocalization - Chemical Bonding

11th Grade - 12th Grade

Chemistry

Examine the principles of Molecular Orbital Theory, emphasizing electron delocalization while contrasting with Valence Bond Theory. Gain a comprehensive understanding of how the constructive interference of atomic orbits leads to the formation of bonding molecular orbitals. Predict molecular properties such as bond order and magnetism through this exploration.

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11th Grade - University

Understanding Molecular Geometry - 3D Structure & Bonding - Organic Chemistry

Understanding Molecular Geometry - 3D Structure & Bonding - Organic Chemistry

Interactive Video

Understanding Molecular Geometry - 3D Structure & Bonding - Organic Chemistry

11th Grade - University

Physics, Science, Chemistry, Biology

Explore the essential concepts of 3D molecular structures and bonding in organic chemistry, developing the ability to predict molecular interactions and functions. Understand theories that explain molecular shapes to prepare for advanced applications in chemical analysis and synthesis.

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11th Grade - 12th Grade

Molecular Theory Application - Molecular Orbital Theory - Chemical Bonding

Molecular Theory Application - Molecular Orbital Theory - Chemical Bonding

Interactive Video

Molecular Theory Application - Molecular Orbital Theory - Chemical Bonding

11th Grade - 12th Grade

Chemistry

Explore the fundamentals and applications of Molecular Orbital Theory, including key concepts such as electron configuration and chemical bonding principles. Gain a solid understanding of how molecular orbitals form and influence molecular stability and paramagnetism.

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9th Grade - 12th Grade

Electron Behavior - Atomic Orbitals - Quantum Mechanics

Electron Behavior - Atomic Orbitals - Quantum Mechanics

Interactive Video

Electron Behavior - Atomic Orbitals - Quantum Mechanics

9th Grade - 12th Grade

Physics, Chemistry, Science

Investigate the intriguing realm of atomic orbitals and comprehend how electrons behave around the nucleus. Acquire deeper understanding of electron movement and energy levels to broaden your knowledge of quantum mechanics.

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9th Grade - 12th Grade

Visualization Techniques - Atomic Orbitals - Quantum Mechanics

Visualization Techniques - Atomic Orbitals - Quantum Mechanics

Interactive Video

Visualization Techniques - Atomic Orbitals - Quantum Mechanics

9th Grade - 12th Grade

Chemistry, Physics, Science

Explore quantum mechanics by visualizing and using analogies to understand atomic orbitals. Gain insight into electron positioning and probability, while developing skills in interpreting complex scientific models.

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11th Grade - University

Structural Prediction - Lewis Diagrams & VSEPR Models - Molecular Geometry

Structural Prediction - Lewis Diagrams & VSEPR Models - Molecular Geometry

Interactive Video

Structural Prediction - Lewis Diagrams & VSEPR Models - Molecular Geometry

11th Grade - University

Chemistry, Physics, Science

Explore the integration of Lewis diagrams and VSEPR models to predict molecular structure and properties. Master the skills to draw accurate Lewis structures, apply VSEPR theory to forecast molecular geometry, and comprehend electron interactions within molecules.

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7th Grade - 10th Grade

Mastering Electron Configuration - Phosphorus and Sulfur - Atomic Theory

Mastering Electron Configuration - Phosphorus and Sulfur - Atomic Theory

Interactive Video

Mastering Electron Configuration - Phosphorus and Sulfur - Atomic Theory

7th Grade - 10th Grade

Science, Chemistry

Explore electron configurations of phosphorus and sulfur alongside core atomic theory concepts. Develop methods for determining electron configurations and gain insights into orbital capacities, enhancing chemical understanding and analytical skills.

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6th Grade - 10th Grade

Understanding Electron Configuration - Orbitals - Atomic Structure

Understanding Electron Configuration - Orbitals - Atomic Structure

Interactive Video

Understanding Electron Configuration - Orbitals - Atomic Structure

6th Grade - 10th Grade

Chemistry, Science, Physics

Explore the electron configuration of elements by focusing on orbitals and their properties. Gain the ability to determine electron arrangements using the diagonal rule and comprehend the electron capacity of each orbital, thereby enhancing knowledge of atomic structures.

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10th Grade - 12th Grade

Understanding Molecular Orbitals - Bonding and Antibonding Concepts - Molecular Chemistry

Understanding Molecular Orbitals - Bonding and Antibonding Concepts - Molecular Chemistry

Interactive Video

Understanding Molecular Orbitals - Bonding and Antibonding Concepts - Molecular Chemistry

10th Grade - 12th Grade

Chemistry, Science

Explore the principles of molecular orbitals with a focus on bonding and antibonding concepts crucial to molecular chemistry. Gain insights into electron configuration, bond order, and molecular stability, enabling a comprehensive analysis of molecular interactions and the ability to predict stability in various molecular contexts.

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9th Grade - 12th Grade

Atomic Theory Insights - Atomic Models & Electron Clouds - Quantum Mechanics

Atomic Theory Insights - Atomic Models & Electron Clouds - Quantum Mechanics

Interactive Video

Atomic Theory Insights - Atomic Models & Electron Clouds - Quantum Mechanics

9th Grade - 12th Grade

Physics, Science, Chemistry

Examine the shift from classical to modern quantum mechanical atomic models, focusing on electron clouds and atomic structure. Understand why outdated models are replaced, and gain insights into visualizing electron behavior for a deeper comprehension of atomic science.

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8th Grade - 10th Grade

Mastering Electron Configuration - Diagonal Rule - Periodic Table Foundations

Mastering Electron Configuration - Diagonal Rule - Periodic Table Foundations

Interactive Video

Mastering Electron Configuration - Diagonal Rule - Periodic Table Foundations

8th Grade - 10th Grade

Science, Chemistry

Explore the foundational concepts of electron configuration by applying the diagonal rule to elements such as chlorine and argon. Understand the process of predicting electron distributions and identifying exceptions within the periodic table. By the end of the exploration, learners will be able to utilize the diagonal rule effectively for various elements.

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4th Grade - University

Understanding Atomic Structure - Electron Orbitals in the Bohr Model

Understanding Atomic Structure - Electron Orbitals in the Bohr Model

Interactive Video

Understanding Atomic Structure - Electron Orbitals in the Bohr Model

4th Grade - University

Science, Chemistry, Physics

Investigate the essential principles of the Bohr Model with a focus on the arrangement and behavior of electrons within atoms. Gain insight into atomic theory by exploring how energy transitions lead to light emission, enhancing comprehension of atomic physics principles.

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10th Grade - 12th Grade

Molecular Shape Prediction - VSEPR Theory - Molecular Geometry

Molecular Shape Prediction - VSEPR Theory - Molecular Geometry

Interactive Video

Molecular Shape Prediction - VSEPR Theory - Molecular Geometry

10th Grade - 12th Grade

Chemistry

Explore the VSEPR theory, focusing on hybridization, bond angles, and atomic orbitals to explain and predict molecular geometries. Gain skills in analyzing molecular shapes and understanding how electron repulsion influences their formation.

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6th Grade - 10th Grade

Understanding Electron Distribution - Electron Configurations - Atomic Structure

Understanding Electron Distribution - Electron Configurations - Atomic Structure

Interactive Video

Understanding Electron Distribution - Electron Configurations - Atomic Structure

6th Grade - 10th Grade

Science

Explore the principles and concepts of electron configurations in atoms, highlighting their arrangement and the geometric shapes of sublevels. Gain insight into the fundamental organization of electrons and articulate the Heisenberg Uncertainty Principle and the energy characteristics of different sublevels.

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11th Grade - University

Understanding Bonding - Hybridization and Molecular Structure - Advanced Chemical Theories

Understanding Bonding - Hybridization and Molecular Structure - Advanced Chemical Theories

Interactive Video

Understanding Bonding - Hybridization and Molecular Structure - Advanced Chemical Theories

11th Grade - University

Chemistry, Science, Physics

Explore the complexities of chemical bonding through Valence Bond Theory, Hybrid Orbitals, and Molecular Orbital Theory, focusing on key concepts like hybridization and bond formation. Understand the principles behind molecule formation and bond orders to enhance knowledge of chemical structure and stability.

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11th Grade - University

Valence Bond and Molecular Orbital Theories - s-p Mixing in Molecular Structures

Valence Bond and Molecular Orbital Theories - s-p Mixing in Molecular Structures

Interactive Video

Valence Bond and Molecular Orbital Theories - s-p Mixing in Molecular Structures

11th Grade - University

Science, Physics, Chemistry

Explore the key differences between valence bond theory and molecular orbital theory, with a focus on the phenomena of s-p mixing in molecular structures. Understand the principles that govern orbital filling and their effects on molecular stability and behavior. Learners will gain insights into how these theories explain the electronic structure of molecules and predict chemical bonding and reactivity. The learning outcomes include a comprehensive understanding of both theories, their approach to chemical bonding, and how s-p mixing influences the electronic configuration and properties of molecules.

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11th Grade - 12th Grade

Coordination Chemistry - Bonding Theories - Transition Metal Complexes

Coordination Chemistry - Bonding Theories - Transition Metal Complexes

Interactive Video

Coordination Chemistry - Bonding Theories - Transition Metal Complexes

11th Grade - 12th Grade

Chemistry

Examine various theories related to bonding in coordination compounds, emphasizing Valence Bond Theory and Crystal Field Theory. Learners will gain an understanding of how these theories elucidate the formation, properties, and behavior of transition metal complexes. Insights into structural and magnetic characteristics are obtained, enhancing knowledge of these fundamental concepts.

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10th Grade - University

Understanding Covalent Bonding - Orbital Overlap - Valence Bond Theory

Understanding Covalent Bonding - Orbital Overlap - Valence Bond Theory

Interactive Video

Understanding Covalent Bonding - Orbital Overlap - Valence Bond Theory

10th Grade - University

Physics, Chemistry, Science

Examine the valence bond theory with a focus on how orbital overlap contributes to the formation of covalent bonds. Understand the conditions necessary for orbital interaction, the resulting impact on the system's energy, and the determinants of bond strength.

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10th Grade - 12th Grade

Understanding Atomic Models - Historical Discoveries and Key Theories

Understanding Atomic Models - Historical Discoveries and Key Theories

Interactive Video

Understanding Atomic Models - Historical Discoveries and Key Theories

10th Grade - 12th Grade

Chemistry, Science

Explore the progression of atomic models through a historical lens, from early theories to modern quantum mechanics. Examine key discoveries and theories contributed by influential figures such as Democritus, Dalton, Thomson, Rutherford, Bohr, and de Broglie. Gain a deeper understanding of atomic structure and behavior, emphasizing fundamental theories and the impact of pioneering ideas on modern scientific knowledge.

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9th Grade - 12th Grade

Quantum Mechanics Concepts - Electron Behavior & Interaction - Theories of Touch

Quantum Mechanics Concepts - Electron Behavior & Interaction - Theories of Touch

Interactive Video

Quantum Mechanics Concepts - Electron Behavior & Interaction - Theories of Touch

9th Grade - 12th Grade

Science, Chemistry, Physics

Explore fundamental quantum mechanics concepts, focusing on electron behavior and subatomic interactions. Gain insights into the redefined concept of 'touch' from a physics perspective and understand how these interactions can alter typical perceptions of the physical world.

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