28/2
102 miles to 4 minute = 51 miles to 2 minutes
275/33 x 21 = 175 Therefore, 175 balls would be produced at the same rate in 21 minutes as there would be in 33 minutes.
A fraction is a numerical constant. Being a fraction does not alter that. And, as a constant, its rate of change is precisely zero.
She would run 2.4 miles in 18 minutes.
Counting to 1000 in 6 minutes means counting at a rate of 1000/6 = 166.67 numbers per minute. To count to 100,000 at this rate, you would divide 100,000 by 166.67 to get approximately 600 minutes. Therefore, it would take around 600 minutes or 10 hours to count to 100,000 at the same rate as counting to 1000 in 6 minutes.
4/1
An investment's rate of return is expressed as a percentage.
102 miles to 4 minute = 51 miles to 2 minutes
Rate is the amount of something per unit time. Miles per hour and gallons per minute are examples of rates. Ten miles per hour, expressed as a fraction, is 10 mi/hr. Five meters per second: 5 m/s. Example Problem If you run a 26.2-mile marathon in four hours and 15 minutes, then your average rate was 26.2/4.25 = 6.16 mi/hr.
275/33 x 21 = 175 Therefore, 175 balls would be produced at the same rate in 21 minutes as there would be in 33 minutes.
Both would increase
A million minutes...
It is the percentage rate of change!
A fraction is a numerical constant. Being a fraction does not alter that. And, as a constant, its rate of change is precisely zero.
No it cannot.
She would run 2.4 miles in 18 minutes.
I predict that the heart rate after walking will be higher than the resting heart rate. I predict that the heart rate after running will be higher than the heart rate after walking.