order to escape Earth's gravity is
given by v2 = 2GM, where G is a
constant. Solve for the object's
mass M.
Earth's gravity for the object's mass M is .
Here,
The velocity v that an object r units from Earth's center must have in order to escape Earth's gravity is given by,
We have to find, Earth's gravity for the object's mass M.
What is Velocity?
The distance covered by a body in a unit time in a particular direction is called velocity.
Now,
Earth's gravity is given by,
In terms of mass M,
⇒ .
So, Earth's gravity for the object's mass M is .
Learn more about the Velocity visit:
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Answer:
M=v^2r / 2G
Step-by-step explanation:
Open the file, it is solved for you, your welcome.
(1 + 3i)(6i)
(1 + 3i)(2 – 3i)
(1 + 3i)(1 – 3i)
(1 + 3i)(3i)
we will proceed to verify each case to determine the solution
remember that
case A)
applying distributive property
------> is not a real number
therefore
the case A) is not a real number product
case B)
applying distributive property
------> is not a real number
therefore
the case B) is not a real number product
case C)
applying difference of square
------> is a real number
therefore
the case C) is a real number product
case D)
applying distributive property
------> is not a real number
therefore
the case D) is not a real number product
the answer is
Answer: 2 4 6 4 55567890
3x-2y=2
5x=5y+10
Answer:
solution is (-2, -4)
Step-by-step explanation:
I assume you want the solution?
so we want to find the intersection.
3x - 2y = 2
5x = 5y + 10
simplify the last equation
x = y + 2 by dividing out the 5
substitute
3*(y + 2) - 2y = 2
3y + 6 - 2y = 2
y + 6 = 2
y = -4
x = -4 + 2 = -2
solution is (-2, -4)
The bicyclist traveled 40 miles in 8 hours so the answer is D) 40 miles it is correct i took the test