Respuesta :
The correct answer to this question is this one: "B) 1 to 3√(3/2)^2 "
The fact that Satellite A orbits the earth at a height 3.00 times the earth's radius and  Satellite B orbits the earth at a height 2.00 times the earth's radius. The ratio of the of the period of Satellite B to the period of Satellite A is 1 : 3√(3/2)^2Â
The fact that Satellite A orbits the earth at a height 3.00 times the earth's radius and  Satellite B orbits the earth at a height 2.00 times the earth's radius. The ratio of the of the period of Satellite B to the period of Satellite A is 1 : 3√(3/2)^2Â
Answer:
A) 1: √(3/2)^3
Explanation:
The formula for the period of the satellite is given by:
T = 2Ï€ √(r^3/GM) Â
For satellite A,
T1 = 2π √((3r)^3/GM)  ………. (i)
For satellite B,
T2 = 2π √((2r)^3/GM) ……….. (ii)
Dividing equation (ii) by (i), we get
T2/T1  = √(2)^3/√(3)^3
Further Simplification results in
T2:T1 =1: √(3/2)^3