Examples of using Positive integer in English and their translations into Hebrew
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Colloquial
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Computer
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Programming
A positive integer, possibly 0.
LOW, is there any positive integer less than 1?
Positive integer such that M n={0}.
For every positive integer$ n.$.
Because you can't keep taking away from a positive integer.
How many positive integers n are there such that n^2+ 96 is a perfect square?
The product of two consecutive positive integers is 90.
Every positive integer can be written as a sum of atmost three triangular numbers.
The product of two consecutive positive integers is 90.
The factorial of a positive integer number is found by multiplying it with all the previouspositive integers together.
Are there infinitely many pairs of positive integers(m, n)".
So we just have to find a positive integer that is not divisible by 2 or 3, by neither 2 nor 3.
Where p represents an odd prime and α{\displaystyle\alpha} a positive integer.
So it's not choice B. 57 is another positive integer that's divisible by 2 or 3.
Write a function to return an array containing all elementscommon to two given arrays containing distinct positive integers.
For example, this array formula sums just the positive integers in a range named Sales.
The Q number(or Tmid), which can be any positive integer, specifies the number of triangles, composed of asymmetric subunits, that make up the 10 triangles of the cylinder.
Are there infinitely many pairs of positive integers(m, n) such…".
The Motzkin number for n is also the number of positive integer sequences n- 1 long in which the opening and ending elements are either 1 or 2, and the difference between any two consecutive elements is- 1, 0 or 1.
I have come to believe that for Ramanujan, every single positive integer is one of his personal friends.
The binary representation of integers makes it possible to apply avery fast test to determine whether a given positive integer x is a power of two.
Mr. Littlewood once told me that"every positive integer is one of Ramanujan's personal friends.".
The term“numbers” brings to our mind what are generally classified as positive integer values greater than zero.
As a general rule, the factorial of any positive integer is calculated as the product of that same integer and all smaller integers down to one.
The first two aren't very interesting: all ones, and then the positive integers, also known as natural numbers.
For example, this array formula sums just the positive integers in a range named Sales, which represents cells E9:E24 in the example above.
To encode an entire formula, which is a sequence of symbols, Gödel used the following system. Given a sequence( x 1, x 2, x 3,…, x n){\displaystyle(x_{1}, x_{2}, x_{3 x_{n})}of positive integers, the Gödel encoding of the sequence is the product of the first n primes raised to their corresponding values in the sequence.
Lagrange's four-square theorem states that any positive integer can be written as the sum of four or fewer perfect squares.
The least common multiple is the smallest positive integer that is a multiple of all integer arguments number1, number2, and so on.