Q: List the single digit divisors of 1680?

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6, 8, 10, 14, 15

Answer: 2008. d(n) is number of divisors of n. I give number of divisors and list them also. The divisors of n = 2008: 1, 2, 4, 8, 251, 502, 1004, 2008 d(2008) = 8 The divisors of n = 2009: 1, 7, 41, 49, 287, 2009 d(2009) = 6

The hundreds digit is 2; the tens digit is 5; the ones digit is 8; the tenths digit is 1; the hundredths digit is 7; the thousandths digit is 6.

4325345788645890575987695867t85967864364854955985743676797y58hffbvefvbu4765437856585687654.0

Nope, look at 1000, this is a 4 digit number and we can't list it with 1,2,3, and 4

It is not a single digit. It is the combination of numbers that the dealers system can use to match up to a build list.

6677

-- List all the divisors (factors) of 36. The factors of 36 are 1, 2, 3, 4, 6, 9, 12, 18, and 36 . -- Check over the list, and mark all the ones that are prime numbers. There are only two of them, so I'll let you handle that part.

What you are trying to do is called the tau function - the number of positive divisors of a natural number, n, is written as tau(n). How to do it: Simplify your number into its prime factors. For example, 84 = 4 * 3 * 7 = (2^2) * (3^1) * (7^1). Then, make a list of all the powers from the previous step. This gives us a list of 2, 1, and 1. Add one to every number in the list. Our list is now 3, 2, and 2. Multiply all the numbers in the list together, and you're done. 3 * 2 * 2 = 12. 84 has 12 positive divisors, which is easily verified: 1, 2, 3, 4, 6, 7, 12, 14, 21, 28, 42, and 84.

That is a list of the proper divisors of 588. Most definitions of proper factors do not include the number 1.

In a single link list, you have only a pointer pointing to the next node. While in a double link list, you have previous and next pointers. Hence you can traverse only in a single direction in a single linked list while in a double linked list, you can traverse in either directions. Hence operations like deleting a successor or a predecessor, printing the list in reverse order, etc can be easily done in double linked list compared to a single link list.

List the odd four-digit numerals,each containing the digits ,4,5 and 6.

Test each number from 1 to 9. Keep a list of the ones that go into 18 evenly without a remainder.

8

No, I don't.

-- List the digits that are used to write the number. -- Add up the list.

I would not like a list all possible 4 digit combination using 0-9.

You have 9 options for the first digit; whichever digit you choose you have 8 options for the second digit, 7 for the third digit, 6 for the fourth digit - so you have a total of 9 x 8 x 7 x 6 different combinations. Sure I could make a list, but that would be rather boring - and utterly useless as well.

127.869 In ones place is 7 In tenths place is 8 In tens place is 2

245.17086 Digit in thousandths place is 0 Digit in ten thousandths place is 8 Digit in tenths place is 1

6, 8, 10, 14, 15

mh

spongebob

There is no such thing as "intergers".The complete list of two-digit positive whole numbers lists 90 of them.

1, 2, 3, 5, 7, 10, 14, 15, 21, 30, 42, 70, 105, 210

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