3, 5, 9, 11, 13 5 of them.
If by between, you mean not counting the endpoints, then consider this:Look at 14 and 15 which are consecutive integers. There are no integers between them. Now lets look at the difference: 15 - 14 = 1. So the difference is 1, but 0 integers between. We could guess that the number of integers between is |x - y| -1. So |15 - 14| - 1 = 0.How about others. Take 10 and 15: the integers between are 11, 12, 13, 14 {4 total}. So |15 - 10| - 1 = 4. So it seems to work [in fact that is it]Since we are counting integers, we want the absolute value.So |15 - -15| - 1 = 29. Now lets see if this makes sense. We have 1 to 14 then -1 down to -14 so that's 28, and then you have zero, which makes 29.What if you meant inclusive. So if you looked at 14 and 15 you wanted to include the endpoints and get the answer 2.Go through the procedure again and you find the formula for that is |x-y|+1, so your answer is |15 - -15|+1 = 31. Go through the other way and you have 15 twice makes 30 then add 1 for zero to get 31.
333 integers.
All numbers from 1 to 100 which are whole numbers are integers
There are 5390 such integers.
3, 5, 9, 11, 13 5 of them.
There are 30 such integers.
If by between, you mean not counting the endpoints, then consider this:Look at 14 and 15 which are consecutive integers. There are no integers between them. Now lets look at the difference: 15 - 14 = 1. So the difference is 1, but 0 integers between. We could guess that the number of integers between is |x - y| -1. So |15 - 14| - 1 = 0.How about others. Take 10 and 15: the integers between are 11, 12, 13, 14 {4 total}. So |15 - 10| - 1 = 4. So it seems to work [in fact that is it]Since we are counting integers, we want the absolute value.So |15 - -15| - 1 = 29. Now lets see if this makes sense. We have 1 to 14 then -1 down to -14 so that's 28, and then you have zero, which makes 29.What if you meant inclusive. So if you looked at 14 and 15 you wanted to include the endpoints and get the answer 2.Go through the procedure again and you find the formula for that is |x-y|+1, so your answer is |15 - -15|+1 = 31. Go through the other way and you have 15 twice makes 30 then add 1 for zero to get 31.
There are four integers between -2 and 3. They are -1, 0, 1 and 2.
333 integers.
The integers between -4 and 3: -3, -2, -1, 0, 1, & 2
All numbers from 1 to 100 which are whole numbers are integers
There are 5390 such integers.
Infinate
98
31.how do you solve?
There is only 1.