How does the blackbody spectrum of the sun compare to visible light? …
How does the blackbody spectrum of the sun compare to visible light? Learn about the blackbody spectrum of the sun, a light bulb, an oven, and the earth. Adjust the temperature to see the wavelength and intensity of the spectrum change. View the color of the peak of the spectral curve.
Pump gas molecules to a box and see what happens as you …
Pump gas molecules to a box and see what happens as you change the volume, add or remove heat, change gravity, and more. Measure the temperature and pressure, and discover how the properties of the gas vary in relation to each other.
Students will model the atomic structure of common elements found in soils, …
Students will model the atomic structure of common elements found in soils, determine an atom's valence electrons, draw Lewis electron dot diagrams, and discuss the basic principles of element bonding.
Included in this resource: - Space activities and fun experiments to do …
Included in this resource: - Space activities and fun experiments to do in the classroom, with youth groups and at home. - Curriculum-based learning activities on the Moon for Canadian youth and educators. - Toolkits for educators and youth. - Indigenous Moon stories and lunar cycle, resources for and about First Nations, Inuit and Métis. - Digital games, e-book, quizzes, puzzle, podcasts, cutout, 3D printing models. - Posters, infographics, paper game, models, colouring sheets to download and print. - Resources for teachers, youth leaders, science centres, museums, community groups and parents. -
There is a 40% chance that the lower ⅓ of the of …
There is a 40% chance that the lower ⅓ of the of the Cascadia subduction zone will rupture in the next 50 years, generating a large earthquake and ensuing tsunami. In this project, students will work collaboratively to design and test a model of a vertical evacuation structure. They will evaluate the performance of their models and propose further modifications to improve their design. Students will then make a scale drawing and a model to apply math concepts of scale to designing and creating an ideal model of a vertical evacuation structure. Finally, students will present their findings and proposed final design to their peers and an adult audience. The entire process takes about 2 weeks, and was expanded to include more information and activities with earthquake/tsunami prediction and application of scale. The unit is a great fit for standards within Earth Science (specifically plate tectonics and human mitigation) as well as Engineering and Design standards.
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