Since there is zero acceleration, the net force is also zero.
100
The force of impact in a vehicle is related to the square of its speed, according to the principles of physics. Therefore, if a car traveling at 20 miles per hour impacts a surface, the force is four times greater than that of a car traveling at 10 miles per hour. This is because ( (20^2) / (10^2) = 4 ). Thus, the impact force increases significantly with speed.
Speed and velocity have both changed.
Both the speed and velocity have increased as a result of acceleration.
Significantly faster. At a force march pace, a person walking will travel four to five miles in an hour. In a car, you can travel much faster. For instance, the nearest Interstate to me has a speed limit of 75 miles per hour, so, if you were to compare the two traveling up that stretch of road, the car (moving at the speed limit) would be traveling at 15 times the speed that the person walking (at a brisk force march pace) would be traveling at.
You have already stated its speed in the question !
You can not equate miles per hour to G forces. If you were traveling at 1000 mph, for example, but at a constant speed, you would fell no extra force since you are not accelerating.
Jesse is traveling at 154 feet per second.
The speed of the car is 96 kilometers per hour.
The average speed of that particular vehicle is precisely 65 kilometers per hour.
72.42Km/hr
The distance covered in 1 hour and 20 minutes would depend on the speed at which you are traveling. If you are traveling at a constant speed of 60 miles per hour, then in 1 hour and 20 minutes (or 1.33 hours), you would cover 80 miles (60 miles/hour * 1.33 hours). However, if you are traveling at a different speed, you would cover a different distance. To calculate the distance covered, you would multiply the speed (in miles per hour) by the time traveled (in hours).