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5b. Democracy Is Born
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In Athenian democracy, every citizen was required to participate or suffer punishment. This practice stands in stark contrast to modern democratic governments in which citizens can choose whether or not they wish to participate. In Athenian democracy, all citizens pulled their weight.

Subject:
Ancient History
History
Material Type:
Diagram/Illustration
Reading
Provider:
Independence Hall Association
Provider Set:
Ancient Civilizations
Date Added:
03/15/2022
5c. Gods, Goddesses, and Heroes
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The ancients Greeks were polytheistic — that is, they worshipped many gods. Their major gods and goddesses lived at the top of Mount Olympus, the highest mountain in Greece, and myths described their lives and actions. In myths, gods often actively intervened in the day-to-day lives of humans. Myths were used to help explain the unknown and sometimes teach a lesson.

Subject:
Ancient History
History
Material Type:
Diagram/Illustration
Reading
Provider:
Independence Hall Association
Provider Set:
Ancient Civilizations
Date Added:
03/15/2022
5e. Art and Architecture
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The arts reflect the society that creates them. Nowhere is this truer than in the case of the ancient Greeks. Through their temples, sculpture, and pottery, the Greeks incorporated a fundamental principle of their culture: arete. To the Greeks, arete meant excellence and reaching one's full potential.

Subject:
Ancient History
Applied Science
Architecture and Design
History
Material Type:
Diagram/Illustration
Reading
Provider:
Independence Hall Association
Provider Set:
Ancient Civilizations
Date Added:
03/15/2022
5h. The Olympic Games
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The ancient Greeks loved competition of all sorts. Each year, the various city-states of Greece sent athletes to festivals of games, which were held to honor the gods. The most important and prestigious were the games held at Olympia to honor Zeus, the king of the gods. These Olympic games took place in the summer only once every four years.

Subject:
Ancient History
History
Material Type:
Diagram/Illustration
Reading
Provider:
Independence Hall Association
Provider Set:
Ancient Civilizations
Date Added:
03/15/2022
5 volt power distribution board
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CC BY-NC-SA
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In this video we hack apart a bread board to create a 5 volt power distribution strip. The 5 volts comes from the center pin in the motor controller and the negative or ground comes from the ground pin on the motor controller. Created by Karl Wendt.

Subject:
Applied Science
Engineering
Material Type:
Lesson
Provider:
Khan Academy
Provider Set:
Khan Academy
Author:
Karl Wendt
Date Added:
10/08/2012
6.1 Area and Surface Area (Teacher Materials).
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In this unit, students learn to find areas of polygons by decomposing, rearranging, and composing shapes. They learn to understand and use the terms “base” and “height,” and find areas of parallelograms and triangles. Students approximate areas of non-polygonal regions by polygonal regions. They represent polyhedra with nets and find their surface areas.

Subject:
Geometry
Mathematics
Material Type:
Unit of Study
Provider:
Illustrative Mathematics
Date Added:
06/15/2021
6.1 Light & Matter
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How does a one-way mirror work? Though most everyone knows that one-way mirrors exist, having students model how they work turns out to be a very effective way to develop their thinking about how visible light travels and how we see images. Initial student models reveal a wide variety of ideas and explanations that motivate the unit investigations that help students figure out what is going on and lead them to a deeper understanding of the world around them.

As the first unit in the OpenSciEd program, during the course of this unit, students also develop the foundation for classroom norms for collaboration that will be important across the whole program.

Subject:
Physical Science
Material Type:
Lesson
Lesson Plan
Unit of Study
Provider:
OpenSciEd
Date Added:
07/15/2021
6.2 Thermal Energy
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Unit Summary
This unit on thermal energy transfer begins with students testing whether a new plastic cup sold by a store keeps a drink colder for longer compared to the regular plastic cup that comes free with the drink. Students find that the drink in the regular cup warms up more than the drink in the special cup. This prompts students to identify features of the cups that are different, such as the lid, walls, and hole for the straw, that might explain why one drink warms up more than the other. 
Students investigate the different cup features they conjecture are important to explaining the phenomenon, starting with the lid. They model how matter can enter or exit the cup via evaporation However, they find that in a completely closed system, the liquid inside the cup still changes temperature. This motivates the need to trace the transfer of energy into the drink as it warms up. Through a series of lab investigations and simulations, students find that there are two ways to transfer energy into the drink: (1) the absorption of light and (2) thermal energy from the warmer air around the drink. They are then challenged to design their own drink container that can perform as well as the store-bought container, following a set of design criteria and constraints.
This unit builds toward the following NGSS Performance Expectations (PEs) as described in the OpenSciEd Scope & Sequence: MS-PS1-4*, MS-PS3-3, MS-PS3-4, MS-PS3-5, MS-PS4-2*, MS-ETS1-4. The OpenSciEd units are designed for hands-on learning and therefore materials are necessary to teach the unit. These materials can be purchased as science kits or assembled using the kit material list.

Subject:
Physical Science
Material Type:
Activity/Lab
Lesson
Module
Provider:
OpenSciEd
Date Added:
07/15/2021
6.3 Weather, Climate & Water Cycling
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The goals of OpenSciEd are to ensure any science teacher, anywhere, can access and download freely available, high quality, locally adaptable full-course materials. REMOTE LEARNING GUIDE FOR THIS UNIT NOW AVAILABLE!

This unit on weather, climate, and water cycling is broken into four separate lesson sets. In the first two lesson sets, students explain small-scale storms. In the third and fourth lesson sets, students explain mesoscale weather systems and climate-level patterns of precipitation. Each of these two parts of the unit is grounded in a different anchoring phenomenon.

Subject:
Applied Science
Atmospheric Science
Environmental Science
Physical Science
Material Type:
Full Course
Lesson
Lesson Plan
Module
Teaching/Learning Strategy
Unit of Study
Provider:
OpenSciEd
Author:
OpenSciEd
Date Added:
07/15/2021
6.3 Weather, Climate & Water Cycling - Unit Overview
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This unit on weather, climate, and water cycling is broken into four separate lesson sets. In the first two lesson sets, students explain small-scale storms. In the third and fourth lesson sets, students explain mesoscale weather systems and climate-level patterns of precipitation. Each of these two parts of the unit is grounded in a different anchoring phenomenon.

Subject:
Atmospheric Science
Physical Science
Material Type:
Unit of Study
Provider:
OpenSciEd
Date Added:
07/15/2021
6. Ancient Rome
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The Roman Empire's tentacles stretched from England to Egypt, from Spain to Iraq, and from southern Russia to Morocco. More significantly, ancient Roman civilization thrived for nearly one thousand years. The influence of the Romans over all of those peoples over that span of time defies measure.

Subject:
Ancient History
History
Material Type:
Diagram/Illustration
Reading
Provider:
Independence Hall Association
Provider Set:
Ancient Civilizations
Date Added:
03/15/2022
6. Binomial coefficient
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CC BY-NC-SA
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Let's put everything together. Get ready for a really powerful formula: the binomial coefficient (warning: you may need to watch this a few times!).

Subject:
Applied Science
Arts and Humanities
Computer Science
Graphic Arts
Material Type:
Lesson
Provider:
Khan Academy
Provider Set:
Pixar
Author:
Disney Pixar
Khan Academy
Date Added:
07/15/2021
6.EE,G Sierpinski's Carpet
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CC BY
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This is a task from the Illustrative Mathematics website that is one part of a complete illustration of the standard to which it is aligned. Each task has at least one solution and some commentary that addresses important asects of the task and its potential use. Here are the first few lines of the commentary for this task: Take a square with area 1. Divide it into 9 equal-sized squares. Remove the middle one. What is the area of the figure now? Take the remaining 8 square...

Subject:
Mathematics
Material Type:
Activity/Lab
Provider:
Illustrative Mathematics
Provider Set:
Illustrative Mathematics
Author:
Illustrative Mathematics
Date Added:
08/06/2013