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Research Seminar in Deep Sea Archaeology, Spring 2002
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CC BY-NC-SA
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Examines the intellectual foundations of the new discipline of deep sea archaeology, a convergence of oceanography, archaeology, and engineering. How best are robots and submarines employed for archaeological work? How do new technologies change operations plans, research designs, and archaeological questions? Covers oceanography, history and technology of underwater vehicles, search strategies, technology development, archaeological technique, sociology of scientific knowledge. Case studies of deep-sea projects include the wrecks of the Titanic and Monitor, Roman trading vessels in the Mediterranean, and deep research in the Black Sea.

Subject:
Archaeology
Earth and Space Science
Oceanography
Social Studies
Material Type:
Full Course
Provider:
M.I.T.
Provider Set:
M.I.T. OpenCourseWare
Author:
Mindell, David A.
Date Added:
01/01/2002
Researching, Constructing, and Testing (Student Made) Solar Ovens
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CC BY-NC-SA
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This activity requires students to research, design, construct, and test a solar oven. Students will collect data from their own individual oven to combine with research of "real-life" solar ovens in an activity ending scientific paper.

Subject:
Career and Technical Education
Technology and Engineering
Material Type:
Activity/Lab
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Pedagogy in Action
Author:
Mara Gould
Date Added:
02/10/2023
Resistance in a Wire
Unrestricted Use
CC BY
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Learn about the physics of resistance in a wire. Change its resistivity, length, and area to see how they affect the wire's resistance. The sizes of the symbols in the equation change along with the diagram of a wire.

Subject:
Physical Science
Physics
Material Type:
Simulation
Provider:
University of Colorado Boulder
Provider Set:
PhET Interactive Simulations
Author:
Adams, Wendy
Dubson, Michael
Gratny, Mindy
Michael Dubson
Mindy Gratny
PhET Interactive Simulations
Wendy Adams
Date Added:
11/16/2007
Resolving Force Vectors: Interactive Demonstration
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CC BY-NC-SA
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This is an Interactive Lecture Demonstration for resolving force vectors using the suspended block demonstration (1J30.10).

Subject:
Physical Science
Physics
Material Type:
Activity/Lab
Simulation
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Pedagogy in Action
Author:
Marsha Hobbs
Date Added:
02/10/2023
Reversible Reactions
Unrestricted Use
CC BY
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Watch a reaction proceed over time. How does total energy affect a reaction rate? Vary temperature, barrier height, and potential energies. Record concentrations and time in order to extract rate coefficients. Do temperature dependent studies to extract Arrhenius parameters. This simulation is best used with teacher guidance because it presents an analogy of chemical reactions.

Subject:
Chemistry
Physical Science
Material Type:
Simulation
Provider:
University of Colorado Boulder
Provider Set:
PhET Interactive Simulations
Author:
Adams, Wendy
Barbera, Jack
Jack Barbera
Koch, Linda
LeMaster, Ron
Linda Koch
PhET Interactive Simulations
Ron LeMaster
Wendy Adams
Date Added:
09/01/2005
The Rise of Modern Science, Fall 2010
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CC BY-NC-SA
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This subject introduces the history of science from antiquity to the present. Students consider the impact of philosophy, art, magic, social structure, and folk knowledge on the development of what has come to be called "science" in the Western tradition, including those fields today designated as physics, biology, chemistry, medicine, astronomy and the mind sciences. Topics include concepts of matter, nature, motion, body, heavens, and mind as these have been shaped over the course of history. Students read original works by Aristotle, Vesalius, Newton, Lavoisier, Darwin, Freud, and Einstein, among others.

Subject:
Ancient History
Fine Arts
Philosophy
Psychology
Social Studies
Material Type:
Full Course
Provider:
M.I.T.
Provider Set:
M.I.T. OpenCourseWare
Author:
Jones, David
Kaiser, David
Date Added:
01/01/2011
Robo Clock
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Educational Use
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Students learn various topics associated with the circle through studying a clock. Topics include reading analog time, understanding the concept of rotation (clockwise vs. counter-clockwise), and identifying right angles and straight angles within circles. Many young students have difficulty telling time in analog format, especially with fewer analog clocks in use (compared to digital clocks). This includes the ability to convert time written in words to a number format, for example, making the connection between "quarter of an hour" to 15 minutes. Students also find it difficult to convert "quarter of an hour" to the number of degrees in a circle. This activity incorporates a LEGO® MINDSTORMS® NXT robot to help students distinguish and visualize the differences in clockwise vs. counter-clockwise rotation and right vs. straight angles, while learning how to tell time on an analog clock. To promote team learning and increase engagement, students work in teams to program and control the robot.

Subject:
Career and Technical Education
Mathematics
Physical Science
Physics
Technology and Engineering
Material Type:
Activity/Lab
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Author:
AMPS GK-12 Program,
Akim Faisal
TeachEngineering.org
Date Added:
09/18/2014
Robotic Perimeter
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Educational Use
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Students learn and practice how to find the perimeter of a polygonal shape. Using a ruler, they measure model rooms made of construction paper walls. They learn about other tools, such as a robot, that can help them take measurements. Using a robot built from a LEGO® MINDSTORMS® NXT kit that has been programmed to move along a wall and output the length of that wall, students record measurements and compare the perimeter value found with the robot to the perimeter found using a ruler. In both cases, students sketch maps to the scale of the model room and label the measured lengths. A concluding discussion explores the ways in which using a robot may be advantageous or disadvantageous, and real-world applications.

Subject:
Career and Technical Education
Physical Science
Physics
Technology and Engineering
Material Type:
Activity/Lab
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Author:
AMPS GK-12 Program,
Rezwana Uddin
TeachEngineering.org
Date Added:
09/18/2014
Rock, Paper, Scissors Probability!
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Educational Use
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Students learn about probability through a LEGO® MINDSTORMS® NTX-based activity that simulates a game of "rock-paper-scissors." The LEGO robot mimics the outcome of random game scenarios in order to help students gain a better understanding of events that follow real-life random phenomenon, such as bridge failures, weather forecasts and automobile accidents. Students learn to connect keywords such as certainty, probable, unlikely and impossibility to real-world engineering applications.

Subject:
Career and Technical Education
Mathematics
Technology and Engineering
Material Type:
Activity/Lab
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Author:
AMPS GK-12 Program,
Akim Faisal, Janet Yowell
TeachEngineering.org
Date Added:
09/18/2014
Rockets Educator Guide
Conditional Remix & Share Permitted
CC BY-NC
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Few classroom topics generate as much excitement as rockets. The scientific, technological, engineering and mathematical foundations of rocketry provide exciting classroom opportunities for authentic hands-on, minds-on experimentation. The activities and lesson plans contained in this educator guide emphasize hands-on science, prediction, data collection and interpretation, teamwork, and problem solving. The guide also contains background information about the history of rockets and basic rocket science. The rocket activities in this guide support national curriculum standards for science, mathematics and technology.

Subject:
Career and Technical Education
Mathematics
Physical Science
Physics
Technology and Engineering
Material Type:
Activity/Lab
Lesson
Lesson Plan
Author:
2018 NASA Official: Brian Dunbar
National Aeronautics and Space Administration Page Last Updated: Aug. 23
Date Added:
11/14/2018
Rotary Encoders & Human-Computer Interaction
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Educational Use
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Students learn about rotary encoders and discover how they operate through hands-on experimentation. Rotary encoders are applied in tools to determine angle measurements and for translations of angular motion. One common rotary encoder application is in a computer's ball-type mouse—the ball itself is a type of rotary encoder. In this activity, students experiment with two rotary encoders, including one from a computer mouse and one created using a LEGO® MINDSTORMS® NXT kit. They collect data to define and graph the relationship between the motion of the rotary encoder and its output.

Subject:
Career and Technical Education
Life Science
Mathematics
Technology and Engineering
Material Type:
Activity/Lab
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Author:
AMPS GK-12 Program,
Chris Leung
Janet Yowell
Paul Phamduy
TeachEngineering.org
Date Added:
09/18/2014
Rutherford Scattering
Unrestricted Use
CC BY
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How did Rutherford figure out the structure of the atom without being able to see it? Simulate the famous experiment in which he disproved the Plum Pudding model of the atom by observing alpha particles bouncing off atoms and determining that they must have a small core.

Subject:
Physical Science
Physics
Material Type:
Simulation
Provider:
University of Colorado Boulder
Provider Set:
PhET Interactive Simulations
Author:
Adams, Wendy
Carl Wieman
Chris Malley
Dubson, Michael
Kathy Perkins
Malley, Chris
McKagan, Sam
Michael Dubson
Perkins, Kathy
PhET Interactive Simulations
Sam McKagan
Wendy Adams
Wieman, Carl
Date Added:
03/01/2007
S2 E9: TIL about cleaning up clean tech
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CC BY-NC-SA
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Technologies like solar panels and batteries help us slow down climate change, but they’re not inherently perfect. In this episode of TILclimate (Today I Learned Climate), Suzanne Greene of the MIT Center for Transportation and Logistics and the MIT Environmental Solutions Initiative sits down with host Laur Hesse Fisher to help us navigate how to massively scale up clean tech while making a conscious and dedicated effort to ensure people’s rights, health, and safety.

Subject:
Atmospheric Science
Earth and Space Science
Material Type:
Lesson
Provider:
MIT
Provider Set:
TILclimate Educator Hub
Date Added:
02/10/2023
SIK Keyboard Instrument
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Educational Use
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Students work as if they are electrical engineers to program a keyboard to play different audible tones depending on where a sensor is pressed. They construct the keyboard from a soft potentiometer, an Arduino capable board, and a small speaker. The soft potentiometer “keyboard” responds to the pressure of touch on its eight “keys” (C, D, E, F, G, A, B, C) and feeds an input signal to the Arduino-capable board. Each group programs a board to take the input and send an output signal to the speaker to produce a tone that is dependent on the input signal—that is, which “key” is pressed. After the keyboard is working, students play "Twinkle, Twinkle, Little Star" and (if time allows) modify the code so that different keys or a different number of notes can be played.

Subject:
Career and Technical Education
Computer Science
Material Type:
Activity/Lab
Provider:
TeachEngineering
Author:
Lauchlin Blue, University of Colorado Boulder
Shawn Hymel, SparkFun
SparkFun Education
Date Added:
10/13/2017
STEM Curriculum for an Electrathon America Car
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This resource was developed by the Kent Career and Technical Center through seed funding from the CAAT and is a project-based curriculum that revolves around the construction of a working electric powered vehicle that will be entered into an Electrathon America race. This curriculum guides students through the design, build, and test process with their electric powered vehicle. Curriculum experiences include a combination of classroom, lab learning, on-site work experiences, and exposure to emerging green career pathways. The curriculum developed includes mathematics and science standards for Physics, P1-P4, with an emphasis on forces and motion, energy, and electricity for grades 9-12.

Subject:
Career and Technical Education
Education
Physical Science
Physics
Technology and Engineering
Material Type:
Full Course
Lesson Plan
Provider:
Center for Automotive Technology - Macomb
Provider Set:
Center for Advanced Automotive Technology
Author:
Kent Intermediate School District
Date Added:
06/25/2014
Salts & Solubility
Unrestricted Use
CC BY
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Add different salts to water, then watch them dissolve and achieve a dynamic equilibrium with solid precipitate. Compare the number of ions in solution for highly soluble NaCl to other slightly soluble salts. Relate the charges on ions to the number of ions in the formula of a salt. Calculate Ksp values.

Subject:
Chemistry
Physical Science
Material Type:
Simulation
Provider:
University of Colorado Boulder
Provider Set:
PhET Interactive Simulations
Author:
Adams, Wendy
Danielle Harlow
Excellence Center of Science and Mathematics Education at King Saud University
Harlow, Danielle
Kathy Perkins
Koch, Linda
LeMaster, Ron
Linda Koch
Loeblein, Trish
National Science Foundation
O'Donnell Foundation
Perkins, Kathy
PhET
PhET Interactive Simulations
Ron LeMaster
The William and Flora Hewlett Foundation
Trish Loeblein
Wendy Adams
Date Added:
04/01/2006
Satellite Images
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In this online, interactive module, students learn about the three types of satellite images (visible, infrared, and water vapor); how to identify basic cloud types and storm systems in satellite images; and demonstrate the basic knowledge necessary to interpret satellite observations. The module is part of an online course for grades 7-12 in satellite meteorology, which includes 10 interactive modules. The site also includes lesson plans developed by teachers and links to related resources. Each module is designed to serve as a stand-alone lesson, however, a sequential approach is recommended. Designed to challenge students through the end of 12th grade, middle school teachers and students may choose to skim or skip a few sections.

Subject:
Atmospheric Science
Career and Technical Education
Earth and Space Science
Technology and Engineering
Material Type:
Activity/Lab
Data Set
Full Course
Lecture Notes
Unit of Study
Provider:
NASA
Provider Set:
NASA Wavelength
Date Added:
10/13/2017
Satellite Winds
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In this online, interactive module, students learn about the using successive satellite observations of clouds to determine wind direction and speed. The module is part of an online course for grades 7-12 in satellite meteorology, which includes 10 interactive modules. The site also includes lesson plans developed by teachers and links to related resources. Each module is designed to serve as a stand-alone lesson, however, a sequential approach is recommended. Designed to challenge students through the end of 12th grade, middle school teachers and students may choose to skim or skip a few sections.

Subject:
Atmospheric Science
Career and Technical Education
Earth and Space Science
Technology and Engineering
Material Type:
Activity/Lab
Data Set
Full Course
Lecture Notes
Unit of Study
Provider:
NASA
Provider Set:
NASA Wavelength
Date Added:
10/13/2017
The Science of Collisons: Using Newton's Laws in Forensics & the Courtroom
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CC BY-NC-SA
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This activity is a forensic based physical science inquiry investigation where students collaborate in groups and use observations to determine how Newton's Laws of Motion are applied in finding evidence in a car and truck trailer accident. Their evidence will be used in a presentation to verify consistency in police and witness reports to support the plantiff or defendent in the court case.

Subject:
Physical Science
Physics
Material Type:
Activity/Lab
Assessment
Lesson Plan
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Pedagogy in Action
Date Added:
02/10/2023
The Science of Spring Force
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Educational Use
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Students use data acquisition equipment to learn about force and displacement in regard to simple and complex machines. In the engineering world, materials and systems are tested by applying forces and measuring the resulting displacements. The relationship between the force applied on a material, and its resulting displacement, is a distinct property of the material, which is measured in order to evaluate the material for correct use in structures and machines.

Subject:
Career and Technical Education
Life Science
Physical Science
Physics
Technology and Engineering
Material Type:
Activity/Lab
Provider:
TeachEngineering
Provider Set:
TeachEngineering
Author:
AMPS GK-12 Program,
Irina Igel
Ronald Poveda
TeachEngineering.org
Date Added:
09/18/2014