The pyramid usually get thinner as you go up it because if you start off with one producer and 8 consumers there will be less secondary consumers because then there will be more food. I hope this helped!
It sounds like the goal is for each box to have an odd number of pencils. At first it seems impossible, but if one of the boxes can go inside another so that the larger box holds an even # plus the odd number in the smaller box (for a total of an odd number), then you can do it.
Smaller numbers always go to the left of larger number on the number line.
There is no smallest whole number - negative numbers go on forever. Therefore, there are infinitely many whole numbers that are smaller than the greatest 2-digit number.
Ok, there are nine boxes made by the matches, so a total of 24 matches. You're suppose to remove eight matches and end up with two boxes that don't touch. You take out the ones in the middle that go like this (kinda): _l l_ _ _ l l then you should have one big square circling a smaller one.
Integers: 6001. Real numbers: There is no such number. You can get closer and closer, yet there will always be a smaller number (6000.1, 6000.01, 6000.001, ... you can go on and on).
You go through smaller numbers to see which can go into your number without remainder.You go through smaller numbers to see which can go into your number without remainder.You go through smaller numbers to see which can go into your number without remainder.You go through smaller numbers to see which can go into your number without remainder.
it will come less
2 and 11
It sounds like the goal is for each box to have an odd number of pencils. At first it seems impossible, but if one of the boxes can go inside another so that the larger box holds an even # plus the odd number in the smaller box (for a total of an odd number), then you can do it.
All numbers that are bigger than zero and smaller than 50 can go into 50 at least one time. There are an infinite number of them.
Go to the thousandths place or smaller. There is plenty of room.
Just start typing and the numbers will go into the next box automatically
like you go to James then chapter 1 and then there are smaller numbers go to the number 9
It would go up like a pyramid :)
i think it depends on which play it is and i dont think you can go in the boxes
You go through each number, starting with 2, 3, 4, ... and check if the number has any smaller factors. If it has no smaller factors, you conclude it is a prime number. Continue until you have 10 prime numbers.
u cant go behind it