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6th Grade - 7th Grade
National Television - Influence and Future Challenges
Interactive Video
6th Grade - 7th Grade
Other
Examine the primary focus and societal influence of national television, considering its cultural impacts and potential future roles. Gain an understanding of how television shapes public opinion and address the challenges it faces within an ever-evolving digital landscape. The learning process centers on recognizing television's impact on culture, its role in public discourse, and the skills needed to analyze its influence.
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6th Grade - 8th Grade
Energy Transformation - Potential & Kinetic Energy - Roller Coasters
Interactive Video
6th Grade - 8th Grade
Science
Explore the physics of roller coasters, focusing on energy transformation with an emphasis on potential and kinetic energy and the influence of gravity. Gain an understanding of how forces and energy contribute to exciting experiences while learning to articulate physical principles in real-world scenarios.
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6th Grade - 10th Grade
Dynamics of Motion - Braking Systems and Propulsion - Physics of Roller Coasters
Interactive Video
6th Grade - 10th Grade
Physics, Science
Explore the intricate physics behind roller coasters by examining the mechanics of hydraulic launch systems and the science of braking systems. Gain insights into gravitational forces, weightlessness phenomena, and the engineering marvels that enhance understanding and appreciation of roller coaster dynamics.
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5th Grade - 8th Grade
Energy Dynamics in Roller Coasters - Analyzing Energy Conversion and Motion Forces
Interactive Video
5th Grade - 8th Grade
Physics, Fun, Science
Explore the function of roller coasters through the transformation of potential energy into kinetic energy. Understand how gravity and momentum create thrilling rides, enhancing comprehension of energy conversion and motion dynamics. Strengthen knowledge of physics principles and real-life applications, such as driving a car or riding a bike.
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6th Grade - 10th Grade
Energy Transformations - Roller Coasters - Conservation of Energy
Interactive Video
6th Grade - 10th Grade
Science
Explore the physics of roller coasters by examining the energy transformations that power their exhilarating movements. Understand how the conservation of mechanical energy contributes to motion dynamics, highlighting the interaction between potential and kinetic energy.
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5th Grade - 8th Grade
Understanding Roller Coaster Physics - Motion Sickness & Overcoming Fears
Interactive Video
5th Grade - 8th Grade
Physics, Science
Investigate the science of roller coasters by examining the physics principles of motion sickness, energy conservation, and G-forces. Understanding these concepts allows learners to demystify roller coaster engineering, overcome a fear of heights, and apply energy principles in practical applications.
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7th Grade - 12th Grade
Understanding Roller Coaster Dynamics - Forces, G-Forces, and Sensations
Interactive Video
7th Grade - 12th Grade
Science, Physics
Gain an understanding of the dynamic forces on roller coasters by exploring g-forces, their effects, and the sensations they produce. Learn how variations in speed and direction result in different physical experiences, enhancing knowledge of applied physics concepts in real-world scenarios.
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6th Grade - 10th Grade
Understanding Energy Transformations - Types of Energy - Forms and Transformations
Interactive Video
6th Grade - 10th Grade
Mathematics
Explore the various forms of energy and their transformations through real-world examples. By the conclusion, learners will differentiate between types of energy and understand their practical applications in daily life.
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4th Grade - 8th Grade
Understanding Energy Transfer - Bumper Coaster Models - Roller Coaster Physics
Interactive Video
4th Grade - 8th Grade
Physics, Fun, Education, Design, Science
Investigate how roller coasters operate without engines through the physics of gravitational energy and energy transfer. Gain insights into roller coaster mechanics by experimenting with model building to understand concepts of energy storage and transfer in engaging ways.
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6th Grade - 10th Grade
Interactive Analysis - Ride Features - Alton Towers Highlights
Interactive Video
6th Grade - 10th Grade
Fun
Explore the captivating highlights and unique features of Alton Towers' top rides while uncovering the main characteristics of each ride. Gain the ability to distinguish their unique attributes and appeal.
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6th Grade - 8th Grade
Understanding Energy Dynamics - Potential & Kinetic Energy - Roller Coaster Physics
Interactive Video
6th Grade - 8th Grade
Science
Investigate the relationship between potential and kinetic energy using the dynamic context of roller coaster physics. Gain an understanding of energy transfer processes to apply fundamental physics principles in areas such as design efficiency and energy management.
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7th Grade - 12th Grade
Engineering Design - Safety Features in Roller Coasters - History of Looping Roller Coasters
Interactive Video
7th Grade - 12th Grade
History, Physics, Science
Examine the intriguing history and evolution of looping roller coasters, emphasizing the engineering breakthroughs and safety measures that have driven their development. Gain insights into the fundamentals of roller coaster design and understand how technological advancements have influenced ride safety and overall experience.
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4th Grade - University
Understanding Energy Transformation - Mechanics of Roller Coasters - Principles of Physics
Interactive Video
4th Grade - University
Architecture, Physics, Science
Explore the mechanics and energy transformations in roller coaster operations, concentrating on potential and kinetic energy concepts. Gain insights into how these energies empower roller coasters to achieve high speeds and navigate loops, enhancing the understanding of fundamental physics principles.
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6th Grade - 10th Grade
Roller Coaster Analysis - Features and Rankings - Entertainment Engineering
Interactive Video
6th Grade - 10th Grade
Fun
Engage with the intriguing domain of roller coasters through comprehensive analysis of their features and rankings. Gain insight into roller coaster engineering and design, enabling the ability to identify various elements and understand their appeal.
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6th Grade - 7th Grade
[Market Dynamics - Economic Reactions - Global Financial Trends]
Interactive Video
6th Grade - 7th Grade
English
Examine the complex relationships within global financial markets and their reactions to economic policies, highlighting the effects of China's rate cut. Gain an understanding of the interconnected nature of international markets and develop the ability to analyze financial trends effectively.
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3rd Grade - 6th Grade
[Structural Design - Building a Custom Roller Coaster - Engineering Project]
Interactive Video
3rd Grade - 6th Grade
Design, Fun, Physics
Designing and constructing a custom roller coaster involves exploring engineering principles and problem-solving techniques. Focus is placed on understanding material selection, fostering innovation, and enhancing teamwork skills. Learners will gain insights into engineering concepts and hone their ability to work collaboratively while developing innovative solutions.
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6th Grade - 8th Grade
Energy Transformation - Kinetic and Potential Energy - Roller Coasters
Interactive Video
6th Grade - 8th Grade
Science
Explore the fundamental concepts of kinetic and potential energy through the practical example of roller coasters. Understand how energy transforms between kinetic and potential forms and gain insights into the law of conservation of energy.
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6th Grade - 10th Grade
Understanding Energy Dynamics - Mechanics of Roller Coasters - Physics Principles
Interactive Video
6th Grade - 10th Grade
Science
Explore the mechanics of roller coasters by examining energy dynamics, focusing on gravitational potential energy and kinetic energy. Understand gravity's role in roller coasters and study how energy conservation principles apply to real-world scenarios.
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6th Grade - 8th Grade
Understanding Energy Conservation - Potential and Kinetic Energy Concepts
Interactive Video
6th Grade - 8th Grade
Science
Examine the principles of energy conservation and transformation by understanding potential and kinetic energy. Gain insights into how energy is stored and transferred, enhancing comprehension of energy's role in physical science applications.
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