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Don't Mess with Mercury
The three lessons in the don’t Mess with Mercury Unit Module are designed to teach middle schoolers about the dangers of mercury. The first option is teacher-led. Class members learn about mercury by reading case studies and...
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Latinx Rights in 1960s California
The two lessons in the Latinx Rights in 1960s California unit module examine two protests: The East LA school walkouts and the California grape workers strike of 1965-66. The East LA School walkouts lesson plan looks at the importance of...
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NewseumED: Civil Rights
As part of a social, economic, and legal/political civil rights study, class members brainstorm a list of current civil rights issues that affect their community and then select one issue that they think they could work to change as a...
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Science 4 Inquiry: Middle School Physical Science Lessons
The 10 lessons in the Science 4 Inquiry collection introduce middle schoolers to Physical Science. Scholars watch videos, design experiments, and play interactive games to understand the elements of physical science. They create a...
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Geometry Unit 7: Right Triangles
Six lessons comprise the Geometry Unit 7: Right Triangles unit module. In the first lesson, pupils review the Pythagorean Theorem and determine how to use the converse to determine whether a triangle is right, obtuse, or acute. Next,...
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Understanding Science and Engineering Through Solar Power
The Understanding Science and Engineering Through Solar Power unit module teaches scholars how to conduct investigations and the steps for scientific inquiry and experimentation. To begin, young scientists conduct two probes to...
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Opinion Writing
Here are three videos to help with the opinion-writing process.
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Lord of the Flies
Packed with activities, presentations, projects, and assessments, first-time instructors and seasoned veterans will find much to like in this unit based on William Golding's novel Lord of the Flies. An 18-slide presentation includes...
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Geometry Unit 6: Similar Figures
Similar figures are the topic of Geometry Unit 6. Each of the four resources in the unit module contains a video, teacher reference, practice packets, solutions, and corrective assignments. In the first lesson, pupils learn the...
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Geometry Unit 5: Quadrilaterals and Polygons
One's knowledge of angles should measure up to expectations. Scholars watch a video to learn about angles in polygons. They first see how to partition a polygon into triangles to find the sum of the interior angle measures. They then...
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Geometry Unit 4: Triangle Congruence
The Geometry Unit 4: Triangle Congruence unit module contains five lessons—each with a video, teacher reference, practice packets, solutions, and corrective assignments. To begin, scholars review the types of triangles, then investigate...
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Geometry Unit 3: Parallel and Perpendicular Lines
The Geometry Unit 3: Parallel and Perpendicular Lines Unit Module contains seven lessons, each with a video, teacher reference, practice packets and solutions, and corrective assignments. In the first lesson, pupils learn eight...
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Geometry Unit 2: Reasoning and Proof
The four lessons in the Geometry Unit 2 module are all about reasoning and proof. In the first lesson pupils watch a video introducing conditional statements and their related statements. Learners find out how to identify the hypothesis...
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American Literary Humor: Mark Twain, George Harris, and Nathaniel Hawthorne
A three-lesson curriculum unit examines the history and conventions in the American literary humor of Mark Twain, George Washington Harris, and Nathaniel Hawthorne. In Lesson One, scholars read “The Celebrated Jumping Frog of Calaveras...
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TeachEngineering: Floaters and Sinkers
Why do some objects sink while others float? That’s the question young engineers tackle in a unit module of two lessons and three activities. With some help from Archimedes (and his principle) and the principle of buoyancy, scholars...
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Teach Engineering: The Science and Engineering Behind Harry Potter
Maybe young wizards shouldn’t tickle sleeping dragons; but, three lessons and two activities are sure to tickle young science wizards as they study the science and engineering behind the Harry Potter series. Through interactive, hands-on...
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TeachEngineering: Earthquakes Living Lab
Seven activities make up the TeachEngineering: Earthquakes Living Lab Collection. Activities designed for grades K-8 include “Geology and the 1906 San Francisco Quake,” “Designing for Disaster,” and “The Theory of Plate Tectonics.”...
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Earthquakes Living Lab: Geology and Earthquakes in Japan
Class members use the online resources provided through the Earthquakes Living Lab to investigate why large earthquakes occur in Japan. Pairs work together to research tectonic plates and fault lines and determine whether other locations...
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Earthquakes Living Lab: Geology and the 1906 San Francisco Earthquake
Class members look at two historical earthquakes: San Francisco, California, and Kobe, Japan. Pairs compare the two earthquakes and their impacts, then determine how engineers may use the information gleaned from previous earthquakes to...
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Earthquakes Living Lab: Designing for Disaster
Pairs research building design in earthquake-prone areas and use computer simulations to see the effects of earthquakes on buildings. They sketch and explain a building design that would withstand a strong earthquake.
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Earthquakes Living Lab: The Theory of Plate Tectonics
Class members research the theory of continental drift, examine evidence of plate tectonics, connect this information to engineering, then write an essay on whether they support the theory of continental drift.
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Earthquakes Living Lab: FAQs about P Waves, S Waves and More
Using the Internet, pupils research what causes earthquakes, how scientists measure them, their locations, and their effects.
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Earthquakes Living Lab: Locating Earthquakes
Pairs research current earthquakes to see if there are any patterns. They determine the mean, median, and mode of the earthquake data, along with the maximum and minimum. Using that information, they make earthquake predictions for a year.
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Earthquakes Living Lab: Finding Epicenters & Measuring Magnitudes
Pairs use an online simulation to determine the epicenter and magnitude of an earthquake. Using actual data about the earthquake's maximum S wave amplitudes, they then determine the magnitude.