. The distance decreased.
You divide the number of miles traveled by the number of hours and the result - the constant of variation - is 3.66 (recurring) miles per hour.
Think about it. If you travel for more time, would you advance a greater distance (that would be a direct proportion), or less distance (that would be an inverse proportion)?
To find the distance traveled by Adams' plane, you can use the formula: distance = speed × time. If the plane traveled at a constant speed of 375 miles per hour for six hours, the calculation would be 375 miles/hour × 6 hours = 2,250 miles. Therefore, the plane traveled a total of 2,250 miles.
Distance/time = speed
Please use the formula: distance = speed x time
Rate of travel = (distance traveled) divided by (time traveled)
The equation for constant speed is distance = speed x time, where distance is the total distance traveled, speed is the constant speed at which the object is moving, and time is the duration of travel.
The distance traveled would depend on the spacecraft's speed and the escape velocity of the planet. The formula to calculate the distance traveled with constant acceleration is D = (1/2)at^2, where D is distance, a is acceleration, and t is time. By plugging in the values, you can find the distance traveled.
3 hours and 36 minutes.
velocity
You divide the number of miles traveled by the number of hours and the result - the constant of variation - is 3.66 (recurring) miles per hour.
Think about it. If you travel for more time, would you advance a greater distance (that would be a direct proportion), or less distance (that would be an inverse proportion)?
To find the distance traveled by Adams' plane, you can use the formula: distance = speed × time. If the plane traveled at a constant speed of 375 miles per hour for six hours, the calculation would be 375 miles/hour × 6 hours = 2,250 miles. Therefore, the plane traveled a total of 2,250 miles.
this will result in speed
speed
Distance/time = speed
velocity.