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How Hot Is It?
Discuss the difference between conduction, convection and radiation of thermal energy, and complete activities with your class by investigating the difference between temperature, thermal energy and the heat capacity of different materials.
Baylor College
Moving Air
In lab groups, young scientists place aluminum cans with a bubble-solution cap into different temperatures of water to see what size of bubble dome forms. As part of an atmosphere unit in preparation for learning about convection...
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Conduction, Convection, Radiation, Oh My!
Students draw a line graph, and use graphing as a tool to discover more about conduction, convection and radiation. They should design their own experiment using heat sensitive paper to show they explain these 3 processes.
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Conduction, Convection and Radiation
Sixth graders listen to descriptions of types of heat to gain background knowledge In this heat lesson, 6th graders perform experiments to understand various types of heat transfer (convection, conduction and radiation.) Students assess...
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Convection and Wind
Learners use water, beakers, hot plates, paper dots, and goggles to participate in a hands on activity where they see how a convection current creates wind. In this convection current lesson plan, students participate in a hands on...
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Heat and the Second Law of Thermodynamics
More than a week's worth of investigation is provided in this source. Physical science stars experiment to describe specific heat, conduction, convection, and radiation. They also discover the relationship between mechanical and thermal...
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The Mathematics of Convection: Nature's Model for Energy Production
High schoolers conduct a series of experiments to investigate density, buoyancy and climate. In this math lesson, pupils design and build a hot air balloon to demonstrate convection. They research and write a paper about solar chimneys.
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Convection Activities
Young scholars conduct a series of hands-on activities to demonstrate that heated air expands and that warm air rises because it is less dense.
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Be "Sun-sible" about Heating Water
Students create a solar water heater. In this solar energy lesson, students conduct an experiment to determine which colors absorb more radiant heat. Students investigate the relationship of heat loss to insulation. Students then create...
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Evidence of Heat Transformations
Earth, life, and physical science classes can all benefit from understanding heat transfer. There is not room enough to describe these seven exceptional laboratory experiments that explore conduction, convetcion, and radiation. Several...
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Convection in a Pan
Students watch a demonstration using a plastic bag and a hair dryer to create a hot air balloon. After the demonstration, they discuss the results and whether or not hot water behaves the in the same manner as hot air. They conduct...
Virginia Middle School Engineering Education Initiative
Save the Penguins: An Introduction to Thermodynamics and Heat Transfer
Heat things up in your physical science class with this interactive lesson series on thermodynamics. Through a series of class demonstrations and experiments, young scientists learn how heat is transferred through conduction, convention,...
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What's the Connection Between Convection and Inversion?
Ninth graders observe a simulation demonstrating the difference between convection and inversion. They explain where and when convection and inversion layers occur and how each impacts air quality, and by connection, human health.
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It's Gettin' Hot In Here, So Transfer Energy
Learners study the means by which energy is transferred from the sun through the Earth's atmosphere. They examine radiation, conduction, and convection. They complete a lab to determine how the different transfers affect the atmosphere...
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TE Activity: Hot Cans and Cold Cans
Students work on problems in which they investigate conduction, convection, and radiation. They attempt to maintain the warmth in one can of soda while cooling the other as much as possible in a thirty minute period. They examine how...
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Hot Cans and Cold Cans
Students investigate the physics of heating and cooling through conduction, convection, and radiation. Working in groups, they determine the best way to cool a can of water and warm a can of water. Temperature is taken at five minute...
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The Envelope System: A Partial Solution
Studnet identify examples of conduction, convection and radiation. They develop an example of a building envelope. They also describe how heat transfer mechanisms can affect home energy costs.
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How is heat transferred through conduction?
Fifth graders observe different types of conductors. They answer orally about the conduction of heat energy with 100% accuracy. Students investigate some materials that conduct heat much better than others, and poor conductors can...
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Gallery Walk Questions on Earth's Radiation Balance
Questions that can be used in a lesson on Earth's radiation balance are suggested in this resource. It is not a lesson plan, per se, but it is a list of questions for stations within a "Gallery Walk" lesson. The link to how Gallery Walks...
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Transformation of Energy: Heat
Sixth graders investigate how heat is transferred and the concepts of conduction, convection, and radiation. They define key vocabulary terms, and observe teacher-led demonstrations of conduction, convection, and radiation.
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Three Methods of Heat Transfer
Pupils participate in a variety of experiments designed to illustrate types of heat transfer including conduction, convection and radiation. They complete worksheets as an assessment of the experiments.
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Bing! Bang! Boom!
Sixth graders investigate heat energy, conduction, convection, and radiation.
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Solar Box Cooker
Students explore solar power. In this solar power lesson, students build simple solar cookers after they study convection, conduction, and radiation. Students transfer their knowledge of how the solar cooker works to climate changes on...
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Just How DO Those Plates Move?
Students experiment with water, temperature and paper to explore how convection currents occur and how they are used to explain the movement of the Earth's plates.
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