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Reasons for the Seasons: Lesson 3 Digging Deeper, Unit 4 Agriculture and the Seasons, DIGS AmeriCorps Curriculum CSU
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Reasons for the Seasons. This is the Lesson 3 Digging Deeper activity, from Unit 4 Agriculture and the Seasons, from the DIGS (Developing Individuals, Growing Stewards) AmeriCorps Curriculum from CSU. The curriculum focuses on introducing students in grades 3-5 to Colorado agriculture, industry and environmental issues. The curriculum is matched to State Standards 2021. The curriculum upon request. Visit: https://engagement.colostate.edu/programs-old/developing-individuals-growing-stewards/

Subject:
Agriculture
Agriculture and Natural Resources
Agriculture, Natural Resources and Energy
Applied Science
Astronomy
Atmospheric Science
Career and Technical Education
Chemistry
Cooking, Food Science and Safety
Culinary Arts
Cultural Geography
Earth and Space Science
Environmental Science
Environmental Studies
Family and Consumer Science
Hospitality, Tourism and Social Service Careers
Mathematics
Measurement and Data
Physical Geography
Physical Science
STEAM
Social Science
Statistics and Probability
Material Type:
Activity/Lab
Data Set
Lesson
Lesson Plan
Provider:
CSU Extension Office
Provider Set:
AmeriCorps
Date Added:
02/24/2023
Renewable Energy Design: Wind Turbines
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Students are introduced to renewable energy, including its relevance and importance to our current and future world. They learn the mechanics of how wind turbines convert wind energy into electrical energy and the concepts of lift and drag. Then they apply real-world technical tools and techniques to design their own aerodynamic wind turbines that efficiently harvest the most wind energy. Specifically, teams each design a wind turbine propeller attachment. They sketch rotor blade ideas, create CAD drawings (using Google SketchUp) of the best designs and make them come to life by fabricating them on a 3D printer. They attach, test and analyze different versions and/or configurations using a LEGO wind turbine, fan and an energy meter. At activity end, students discuss their results and the most successful designs, the aerodynamics characteristics affecting a wind turbine's ability to efficiently harvest wind energy, and ideas for improvement. The activity is suitable for a class/team competition. Example 3D rotor blade designs are provided.

Subject:
Career and Technical Education
Material Type:
Activity/Lab
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Author:
AMPS
Gisselle Cunningham
Lindrick Outerbridge
Russell Holstein
Date Added:
04/12/2023
A River Ran Through It
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Students learn how water is used to generate electricity. They investigate water's potential-to-kinetic energy transformation in hands-on activities about falling water and waterwheels. During the activities, they take measurements, calculate averages and graph results. Students also learn the history of the waterwheel and how engineers use water turbines in hydroelectric power plants today. They discover the advantages and disadvantages of hydroelectric power. In a literacy activity, students learn and write about an innovative new hydro-electrical power generation technology.

Subject:
Applied Science
Career and Technical Education
Electronic Technology
Engineering
Material Type:
Activity/Lab
Lesson Plan
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Date Added:
09/18/2014
S2 E3: Is it energy or electricity?
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CC BY-NC-SA
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In this mini-episode of TILclimate (Today I Learned: Climate), host Laur Hesse Fisher breaks down what we’re actually talking about when we use the word “energy”. In a few minutes, we cover the difference between energy and electricity, and the big picture strategy for how to reduce CO2 for each.

Subject:
Atmospheric Science
Career and Technical Education
Earth and Space Science
Electronic Technology
Material Type:
Lesson
Provider:
MIT
Provider Set:
TILclimate Educator Hub
Date Added:
05/02/2023
Seasonal Systems: Lesson 1 Exposure Activity, Unit 4 Agriculture and the Seasons, DIGS AmeriCorps Curriculum CSU
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Seasonal Systems. This is the Lesson 1 Exposure Activity, from Unit 4 Agriculture and the Seasons, from the DIGS (Developing Individuals, Growing Stewards) AmeriCorps Curriculum from CSU. The curriculum focuses on introducing students in grades 3-5 to Colorado agriculture, industry and environmental issues. The curriculum is matched to State Standards 2021. The curriculum upon request. Visit: https://engagement.colostate.edu/programs-old/developing-individuals-growing-stewards/

Subject:
Agriculture
Agriculture and Natural Resources
Agriculture, Natural Resources and Energy
Animal Science
Applied Science
Atmospheric Science
Biology
Botany
Career and Technical Education
Comprehensive Health and Physical Education
Earth and Space Science
Ecology
Environmental Science
Environmental Studies
Life Science
Nutrition
STEAM
Zoology
Material Type:
Activity/Lab
Lesson
Lesson Plan
Provider:
CSU Extension Office
Provider Set:
AmeriCorps
Date Added:
02/24/2023
Solar Angles and Tracking Systems
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Students learn about the daily and annual cycles of solar angles used in power calculations to maximize photovoltaic power generation. They gain an overview of solar tracking systems that improve PV panel efficiency by following the sun through the sky.

Subject:
Applied Science
Career and Technical Education
Electronic Technology
Engineering
Material Type:
Lesson Plan
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Date Added:
09/18/2014
Solar Cars STEM Kit
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CC BY-NC-SA
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Solar Cars STEM Kit. The Natural Sciences Education & Outreach Center collaborates with CSU faculty, National Parks and citizen science programs to translate their current scientific research into unique STEM experiences for students in the form of Educational Kits that can be checked out. Each kit contains just about all of the materials needed (minus common things like water and paper towels) to explore some really interesting scientific research topics.The kits are available for teachers and informal educators in Colorado to check out for a duration of a week by submitting either a local pickup form or a delivery form available at the linked website. This kit is provided free for educational use. This Kit is available in Spanish.

Subject:
Algebra
Applied Science
Architecture and Design
Career and Technical Education
Chemistry
Electronic Technology
Engineering
Functions
Mathematics
Measurement and Data
Numbers and Operations
Physical Science
Physics
Ratios and Proportions
Material Type:
Activity/Lab
Case Study
Diagram/Illustration
Interactive
Lesson
Lesson Plan
Primary Source
Reading
Simulation
Student Guide
Unit of Study
Provider:
Colorado State University
Provider Set:
CSU Natural Sciences Education & Outreach Center
Date Added:
02/06/2023
Solar Energy: Photovoltaic (PV) Technologies
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CC BY-NC-SA
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The technologies used to produce solar cells and photovoltaic modules are advancing to deliver highly efficient and flexible solar panels. In this course you will explore the main PV technologies in the current market. You will gain in-depth knowledge about crystalline silicon based solar cells (90% market share) as well as other up and coming technologies like CdTe, CIGS and Perovskites. This course provides answers to the questions: How are solar cells made from raw materials? Which technologies have the potential to be the major players for different applications in the future?

Subject:
Applied Science
Career and Technical Education
Electronic Technology
Engineering
Material Type:
Full Course
Provider:
Delft University of Technology
Provider Set:
Delft University OpenCourseWare
Author:
Dr.ir. Arno Smets
Prof. dr. ir. Miro Zeman
Date Added:
05/04/2023
Solar Sails: The Future of Space Travel
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Working as if they were engineers, students design and construct model solar sails made of aluminum foil to move cardboard tube satellites through “space” on a string. Working in teams, they follow the engineering design thinking steps—empathize, define, ideate, prototype, test, redesign—to design and test small-scale solar sails for satellites and space probes. During the process, learn about Newton’s laws of motion and the transfer of energy from wave energy to mechanical energy. A student activity worksheet is provided.

Subject:
Career and Technical Education
Physical Science
Material Type:
Activity/Lab
Provider:
TeachEngineering
Author:
Matthew Bentley
Date Added:
04/12/2023
Solid State Physics
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CC BY-NC-SA
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In the electrical engineering, solid-state materials and the properties play an essential role. A thorough understanding of the physics of metals, insulators and semiconductor materials is essential for designing new electronic devices and circuits. After short introduction of the IC fabrication process, the course starts with the crystallography. This will be followed by the basic principle of the quantum mechanics, the sold-state physics, band-structure and the relation with electrical properties of the solid-state materials. When the material physics has been throughly understood, the physics of the semiconductor device follows quite naturally and can be understood quickly and efficiently. Study Goals: The student can 1) determine the crystal structure, the density of atoms and the Miller indices of a crystal, 2) apply Schrodinger's wave equation to various potential functions and derive a probability of finding electrons, 3) discuss the concept of energy band formation and difference of material properties in terms of the band, 4) derive the concentrations of electron and holes with a given temperature in terms of Fermi energy, and 5) can discuss drift, diffusion and scattering of carriers in a semiconductor under various temperature and impurity concentrations.

Subject:
Career and Technical Education
Electronic Technology
Physical Science
Physics
Material Type:
Lecture Notes
Reading
Provider:
Delft University of Technology
Provider Set:
Delft University OpenCourseWare
Author:
Dr. R. Ishihara
Date Added:
05/04/2023
Sound Visualization Stations
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Students learn about sound and sound energy as they gather evidence that sound travels in waves. Teams work through five activity stations that provide different perspectives on how sound can be seen and felt. At one station, students observe oobleck (a shear-thickening fluid made of cornstarch and water) “dance” on a speaker as it interacts with sound waves (see Figure 1). At another station, the water or grain inside a petri dish placed on a speaker moves and make patterns, giving students a visual understanding of the wave properties of sound. At another station, students use objects of various materials and shapes (such as Styrofoam, paper, cardboard, foil) to amplify or distort the sound output of a homemade speaker (made from another TeachEngineering activity). At another station, students complete practice problems, drawing waves of varying amplitude and frequency. And at another station, they experiment with string (and guitar wire and stringed instruments, if available) to investigate how string tightness influences the plucked sound generated, and relate this sound to high/low frequency. A worksheet guides them through the five stations. Some or all of the stations may be included, depending on class size, resources and available instructors/aides, and this activity is ideal for an engineering family event.

Subject:
Career and Technical Education
Physical Science
Physics
Material Type:
Activity/Lab
Provider:
TeachEngineering
Author:
Chelsea Heveran
Date Added:
04/06/2023
Suit Up!
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Students learn about providing healthcare in a global setting and the importance of wearing protective equipment when treating patients with infectious diseases like Ebola. They learn about biohazard suits, heat transfer through conduction and convection and the engineering design cycle. Student teams design, create and test (and improve) their own Ebola biohazard suit prototypes that cover one arm and hand, including a ventilation system to cool the inside of the suit.

Subject:
Biology
Career and Technical Education
Life Science
Mathematics
Physical Science
Physics
Material Type:
Activity/Lab
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Author:
Ben Fleishman
Leyf Starling
Michaela Rikard
Date Added:
04/12/2023
Sustainable Energy: Design A Renewable Future
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CC BY-NC-SA
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A transition to sustainable energy is needed for our climate and welfare. In this engineering course, you will learn how to assess the potential for energy reduction and the potential of renewable energy sources like wind, solar and biomass. You’ll learn how to integrate these sources in an energy system, like an electricity network and take an engineering approach to look for solutions and design a 100% sustainable energy system.

Subject:
Applied Science
Career and Technical Education
Electronic Technology
Engineering
Material Type:
Full Course
Provider:
Delft University of Technology
Provider Set:
Delft University OpenCourseWare
Author:
Dr.ir. Arno Smets
Date Added:
05/04/2023
Sustainable Facilities Tool
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CC BY-SA
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The SFTool is a robust, practical and engaging resource for facility managers, purchasing agents, designers, tenants, and the general public to understand why sustainability matters and how to take practical steps to create healthier, more comfortable, high-performance workplaces. SFTool explains sustainable options and enables informed decision-making by making it easy to learn about sustainability topics, view planning strategies, explore virtual spaces, identify federal sustainability requirements, practice managing a building, read case studies and share knowledge.

Subject:
Business and Communication
Career and Technical Education
Education
General Law
Law
Material Type:
Assessment
Case Study
Data Set
Diagram/Illustration
Game
Interactive
Reading
Simulation
Teaching/Learning Strategy
Provider:
General Services Administration (GSA); Noblis
Date Added:
05/04/2023
Take Charge!
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Students come to understand static electricity by learning about the nature of electric charge, and different methods for charging objects. In a hands-on activity, students induce an electrical charge on various objects, and experiment with electrical repulsion and attraction.

Subject:
Applied Science
Career and Technical Education
Electronic Technology
Engineering
Material Type:
Activity/Lab
Lesson Plan
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Date Added:
09/18/2014
The Temperature Effect
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Students explore how the efficiency of a solar photovoltaic (PV) panel is affected by the ambient temperature. They learn how engineers predict the power output of a PV panel at different temperatures and examine some real-world engineering applications used to control the temperature of PV panels.

Subject:
Applied Science
Career and Technical Education
Electronic Technology
Engineering
Material Type:
Lesson Plan
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Date Added:
09/18/2014
Thrown for a Loop
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In this lesson, students begin to focus on the torque associated with a current carrying loop in a magnetic field. Students are prompted with example problems and use diagrams to visualize the vector product. In addition, students learn to calculate the energy of this loop in the magnetic field. Several example problems are included and completed as a class. A homework assignment is also attached as a means of student assessment.

Subject:
Applied Science
Career and Technical Education
Electronic Technology
Engineering
Material Type:
Activity/Lab
Lesson Plan
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Date Added:
09/18/2014
Watt Meters to Measure Energy Consumption
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Students use watt meters to measure the power required and calculate energy used from various electrical devices and household appliances.

Subject:
Applied Science
Career and Technical Education
Electronic Technology
Engineering
Material Type:
Activity/Lab
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Date Added:
09/18/2014