NASA
Chasing Down a Satellite
Calculate the speed of the International Space Station. By reading the article, pupils learn about the concept of orbits. Scholars work through a formula to determine how fast the International Space Station is traveling to stay in...
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Orbits Worksheet #2
Brief, but beneficial, this resource draws space scientists into the orbit of a moon around its planet. Assignees answer five multiple choice style questions using a diagram of the planet, the moon's orbit, its focal points, and the...
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Satellite Technology
In this satellite technology learning exercise, students read about Low Earth Orbit satellites and the frictional drag from the Earth's atmosphere that causes them to fall back towards the Earth. Students use given data of the years the...
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Unit VIII: Worksheet 4 - Central Force
Send physics learners into orbit by assigning this seven-problem learning exercise. They will calculate the mass of a satellite, construct a force diagram, determine the radius of the orbit, and more. Physics worksheets can become...
CCSS Math Activities
Satellite
This isn't rocket science, you know. A performance task has learners use right triangle trigonometry to calculate distances from stations on Earth to a satellite. It also requires finding the distance between two stations along the...
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Unit VIII Worksheet 5: Circular Motion
Seven problems send physics stars out of this world! Challenge learners to calculate centripetal force, time to complete revolutions, circular speed, and acceleration. They also are asked to explain scenarios and draw a force diagram for...
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Cryosat Mission
Beginning with general information on satellites and seasons, concluding with polar ice and the Cryosat Mission, this worksheet gives your earth scientists an opportunity to conduct some research. Most of the assignment consists of short...
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A Problem in Satellite Synchrony
In this satellite synchrony worksheet, students use a spreadsheet or Least Common Multiples to solve 4 problems related to the satellite orbits, orbital periods and their synchronicity. Students determine when the satellites launched in...
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A High-Resolution Satellite Photo
In this high resolution satellite photograph worksheet, high schoolers observe a photograph taken by the Lunar Reconnaissance Orbiter of the Tennessee Court House. Students use the photograph to solve 4 problems about the scale of the...
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Hinode Satellite Power
In this Hinode satellite learning exercise, students find the area of the solar panels that cover the Hinode satellite to provide power. They determine the amount of power produced by the solar cells and if it is enough to keep all the...
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Artificial Satellites and Space Probes
In this satellites worksheet, learners match the list of facts given with the artificial satellite or space probe that it describes. This worksheet has 12 matching questions.
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ISS-Orbit Altitude Changes
In this ISS-Orbit worksheet, learners read about the International Space Station and determine the altitude of the station on April 2009 given the re-boosting necessary to prevent the Space Station from burning up in the atmosphere.
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The Universe
In this space science worksheet, middle schoolers use the clues given at the bottom of the sheet to complete the crossword puzzle relating to the universe. There are 16 clues to solve in the puzzle.
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Satellite Drag and the Hubble Space Telescope
In this satellite drag and Hubble space telescope worksheet, students solve two problems using a graph showing the altitude of the satellite vs. the year with two lines showing two different types of re-boost and one line without...
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Unit VIII: Worksheet 3 - Central Force
Beginning physicists imagine being aerospace engineers by solving seven centripetal force problems. They calculate the work, speed, time, and acceleration of objects in orbit: a satellite around Earth, and Earth around the sun. This is a...
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A Matter of Timing
In this orbital period activity, learners solve 2 problems about satellites and their orbits. They determine how many days it takes for two satellites to be in "opposition", they find the least common factor between their orbit periods...
NASA
Rendezvous For Two
Imagine the challenge of getting the space shuttle to rendezvous with the International Space Station. Groups must determine the elliptical transfer orbit needed to get the space shuttle from its orbit to the orbit of the International...
NASA
It All Comes Full Circle
How long does it take spacecraft go around the earth? Using the circular orbits of the space shuttle and the International Space Station, groups determine the distance traveled in one revolution, then calculate the distance traveled...
International Technology Education Association
Pixel This!
Did the image I drew match the image you saw? By simulating a satellite and a ground station, teams of two transmit data in the form of pixels in order to recreate an image. They use four different levels of brightness, creating slightly...
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Plasmasphere
In this plasmasphere worksheet, students determine how long the plasmasphere takes to rotate around the Earth using two satellite images taken three hours apart.
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Our Solar System
For this space science worksheet, students use the clues at the bottom of the sheet to solve the crossword puzzle on our solar system. They identify the different planets and their location in relation to the sun.
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Solar Eclipse
In this solar eclipse worksheet, learners solve seven problems about solar eclipses after making a model following five steps. They determine the different orbits for satellites, they determine the lengths of Earth's shadow and they find...
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Introduction to Radiation Shielding
In this radiation shielding worksheet, students use a graph of the dosage of radiation versus the thickness of aluminum shielding using data from the MIR spacecraft and ISO satellite to solve 3 problems. They determine how thick the...
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Kepler's Law-Worksheet #2
In this Kepler's Law worksheet, students answer 8 questions about the orbits of satellites, the rotation of planets, the eccentricity of the moon's orbit and the distance planets are from the sun using Kepler's laws.