The instantaneous speed equation is v = at, where a is 9.81 meters per second squared. The instantaneous speed is then 78.48 meters per second. The distance is equal to d = 1/2 a t t. The distance is then 313.92 meters.
The object will move a total distance of 80 meters, which is calculated by multiplying the speed (10 m/s) by the time (8 seconds).
The speed of an object in free fall after 6 seconds is approximately 58.8 m/s. This can be calculated using the formula v = gt, where v is the final velocity, g is the acceleration due to gravity (9.81 m/s^2), and t is the time in seconds.
59m/s
An object dropped from rest will have a downward velocity of (9 g) = 88.2 meters per second after 9 seconds. Ignoring air resistance, the mass of the object is irrelevant. All masses fall with the same acceleration, and have the same downward velocity after any given period of time.
The speed of an object in free fall can be calculated using the formula v = gt, where v is the final velocity, g is the acceleration due to gravity (9.8 m/s^2), and t is the time. Plugging in the values, v = 9.8 m/s^2 * 6 s = 58.8 m/s.
(9.8 m/s2)(8 s) = 78.4 m/s
The object will move a total distance of 80 meters, which is calculated by multiplying the speed (10 m/s) by the time (8 seconds).
IF the object begins from rest, then it travels 1.5 x 10^8 meters. (rounded)
The speed of an object in free fall after 6 seconds is approximately 58.8 m/s. This can be calculated using the formula v = gt, where v is the final velocity, g is the acceleration due to gravity (9.81 m/s^2), and t is the time in seconds.
320 meters
59m/s
1.067 miles
An object dropped from rest will have a downward velocity of (9 g) = 88.2 meters per second after 9 seconds. Ignoring air resistance, the mass of the object is irrelevant. All masses fall with the same acceleration, and have the same downward velocity after any given period of time.
An object dropped from rest will have a downward velocity of (9 g) = 88.2 meters per second after 9 seconds. Ignoring air resistance, the mass of the object is irrelevant. All masses fall with the same acceleration, and have the same downward velocity after any given period of time.
8 seconds at light speed.
The speed of an object in free fall can be calculated using the formula v = gt, where v is the final velocity, g is the acceleration due to gravity (9.8 m/s^2), and t is the time. Plugging in the values, v = 9.8 m/s^2 * 6 s = 58.8 m/s.
880 feet.