Answer:
True
Explanation:
As per the gravitational law, the gravitational force (F) can be expressed as
------------- (1)
where,
Gravitational force
Gravitational constant
Mass of the Earth
Mass of the object
Distance between Earth and object
Also, the force due to gravity,
------------- (2)
where,
Gravitational force
Acceleration due to gravity
Mass of the object
Deducing both the equations
From the above equation it is clear that the acceleration due to gravity is independent of the mass of the object.
Answer:
398.3 m, 334.2 m
Explanation:
The magnitude of the displacement vector is
v = 520 m
And its direction is
measured as north of east.
The x-component of this vector is given by:
While the y-component is given by
The x-component of the displacement vector (east-west direction) is approximately 398 m and the y-component (north-south direction) is approximately 334 m.
Displacement vectors contain both magnitude and direction information. In the case of a displacement vector 520 m long, pointing 40 degrees North of East, we can break it down into x and y components using trigonometric functions, specifically cosine and sine.
For the x-component (east-west direction), we can use the cosine function because it gives us the adjacent side in a right triangle, which is the east-west direction in our case. Therefore, the x-component will be:
520 m * cos(40) = 398m (rounded to nearest unit).
For the y-component (north-south direction), we can use the sine function because it gives us the opposite side in a right triangle, which is the north-south direction in our case. Hence the y-component will be:
520 m * sin(40) = 334 m (rounded to nearest unit).
#SPJ11
Answer:
B) A Compound machine
Explanation: I just took this quiz