[ T ] A set 0f buzzing stunt magnets (or “rattlesnake eggs”) includes two sparkling, polished, super strong spheroid-shaped magnets well-known for children’s entertainment. Each magnet is 1.625 in. long and 0.5 in. wide at the middle. While tossing them jute the air, they create a buzzing sound as they attract each other. Write the equation of the prolate spheroid centered at the origin that describes the shape of one of the magnets. Write the equations 0f the prolate spheroids that model the shape of the buzzing stunt magnets. Use a CAS to create the graphs.
[ T ] A set 0f buzzing stunt magnets (or “rattlesnake eggs”) includes two sparkling, polished, super strong spheroid-shaped magnets well-known for children’s entertainment. Each magnet is 1.625 in. long and 0.5 in. wide at the middle. While tossing them jute the air, they create a buzzing sound as they attract each other. Write the equation of the prolate spheroid centered at the origin that describes the shape of one of the magnets. Write the equations 0f the prolate spheroids that model the shape of the buzzing stunt magnets. Use a CAS to create the graphs.
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A set 0f buzzing stunt magnets (or “rattlesnake eggs”) includes two sparkling, polished, super strong spheroid-shaped magnets well-known for children’s entertainment. Each magnet is
1.625
in. long and
0.5
in. wide at the middle. While tossing them jute the air, they create a buzzing sound as they attract each other.
Write the equation of the prolate spheroid centered at the origin that describes the shape of one of the magnets.
Write the equations 0f the prolate spheroids that model the shape of the buzzing stunt magnets. Use a CAS to create the graphs.
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