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8th Grade - University

Nuclear Magnetic Resonance - Core Concepts - Basic Understanding

Nuclear Magnetic Resonance - Core Concepts - Basic Understanding

Interactive Video

Nuclear Magnetic Resonance - Core Concepts - Basic Understanding

8th Grade - University

Science

Examine the fundamental principles of Nuclear Magnetic Resonance, focusing on nuclear alignment and resonance mechanisms. Gain an understanding of how NMR is applied to predict chemical structures through spectral data analysis.

9th Grade - 12th Grade

Advanced Microscopy Techniques - Types and Limitations

Advanced Microscopy Techniques - Types and Limitations

Interactive Video

Advanced Microscopy Techniques - Types and Limitations

9th Grade - 12th Grade

Science

Examine microscopy with a focus on light and electron microscopes, highlighting their magnification abilities and limitations. Gain knowledge about their applications and understand their roles in scientific research and analysis. Develop skills in evaluating the advantages and constraints of these technologies for various investigative purposes.

11th Grade

Quantum Mechanics Understanding - Quantum Mechanical Model - Chemistry

Quantum Mechanics Understanding - Quantum Mechanical Model - Chemistry

Presentation

Quantum Mechanics Understanding - Quantum Mechanical Model - Chemistry

11th Grade

Science

Investigate core elements of the Quantum Mechanical Model with a focus on electron behavior and their wave-like properties. Gain a thorough understanding of the grounding principles that define modern quantum mechanics. Aim to develop skills in interpreting and applying these principles to theoretical and practical scenarios in quantum physics.

11th Grade

Electron Configuration - Quantum Numbers - Atomic Structure

Electron Configuration - Quantum Numbers - Atomic Structure

Quiz

Electron Configuration - Quantum Numbers - Atomic Structure

11th Grade

Science

Examine electron configurations and the influence of quantum numbers on atomic structure. Understand electron arrangements and the fundamental principles of quantum mechanics.

11th Grade

Understanding Quantum Numbers - Electron Configuration

Understanding Quantum Numbers - Electron Configuration

Quiz

Understanding Quantum Numbers - Electron Configuration

11th Grade

Science

Examine the quantum numbers that dictate electron configurations and the principles of orbital filling. Develop expertise in determining electron spin and energy levels through problem-solving exercises. Strengthen understanding of quantum mechanics and gain proficiency in applying theoretical principles to practical scenarios.

9th Grade - 12th Grade

Nuclear Energy Understanding - Fusion Challenges - Clean Energy Production

Nuclear Energy Understanding - Fusion Challenges - Clean Energy Production

Interactive Video

Nuclear Energy Understanding - Fusion Challenges - Clean Energy Production

9th Grade - 12th Grade

Science

Explore the potential of nuclear fusion as a clean energy source, examining both its advantages and inherent challenges. Gain an understanding of fusion processes, focusing on how they differ fundamentally from nuclear fission. Identify key differences between fusion and fission in terms of energy production, waste management, and safety considerations. Develop a comprehensive perspective on the future of energy production through the study of nuclear fusion innovations and the obstacles faced in realizing its practical application.

9th Grade - University

Understanding Orbital Shapes - Quantum Mechanical Model - Atomic Structure

Understanding Orbital Shapes - Quantum Mechanical Model - Atomic Structure

Quiz

Understanding Orbital Shapes - Quantum Mechanical Model - Atomic Structure

9th Grade - University

Science

Examine orbital shapes to deepen understanding of the quantum mechanical model and atomic structure. Develop expertise in electron behavior, analyze shapes, and enhance model development skills.

8th Grade - University

Wave Properties - Reflection, Refraction, and Energy - Physics Foundations

Wave Properties - Reflection, Refraction, and Energy - Physics Foundations

Quiz

Wave Properties - Reflection, Refraction, and Energy - Physics Foundations

8th Grade - University

Science

Explore the properties of waves, concentrating on reflection, refraction, and energy. Develop skills in analyzing wave behavior and applying fundamental physics principles.

11th Grade

Understanding Wave-Particle Duality - Quantum Mechanical Model - Basics of Quantum Physics

Understanding Wave-Particle Duality - Quantum Mechanical Model - Basics of Quantum Physics

Presentation

Understanding Wave-Particle Duality - Quantum Mechanical Model - Basics of Quantum Physics

11th Grade

Science

Explore fundamental concepts of quantum mechanics such as wave-particle duality and electron behavior. Gain insights into atomic structures and essential principles shaping modern physics. Focus on learning outcomes centered around understanding these core ideas, aiming to enhance comprehension of the quantum world and its implications in physics.

9th Grade - 12th Grade

Nuclear Energy - Public Perception & Technological Advancements - Historical Context & Impact

Nuclear Energy - Public Perception & Technological Advancements - Historical Context & Impact

Interactive Video

Nuclear Energy - Public Perception & Technological Advancements - Historical Context & Impact

9th Grade - 12th Grade

Science

Investigate the evolution of nuclear energy, examining initial perceptions alongside the advancement of reactor technology. Understand historical milestones and the global influence of nuclear power. Study technological developments and the increasing emphasis on safety protocols to enrich knowledge and critical thinking in the context of energy and engineering.

6th Grade - University

Microscope Usage - Electron vs Light Microscopy - Microscopy Techniques

Microscope Usage - Electron vs Light Microscopy - Microscopy Techniques

Quiz

Microscope Usage - Electron vs Light Microscopy - Microscopy Techniques

6th Grade - University

Science

Investigate various microscopy techniques, such as light microscopy, electron microscopy, and scanning tunneling microscopy. Develop the ability to differentiate these methods and understand their specific applications in the field of cell biology.

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