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No, there are a lot of exceptions to that statement.

(1/2) times (1/4) = 1/8 (less than 1/2 and less than 1/4)

(5) times (-1) = -5 (less than 5 and less than -1)

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โˆ™ 2010-08-31 02:13:43
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Q: Is the product of two numbers is never less than either of the numbers?
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Is the product of two numbers never less than either of the numbers?

infinity


Can the product of two numbers never be less than either of the numbers?

The statement is false. if any or both of numbers are less than 1, the product is less than the greater (or both) of the numbers. Eg. 1/2 x 1/3 = 1/6 ; 1/6 < 1/2 and 1/6 < 1/3


Is it true that when you multiply two natural numbers the product is never less than either of the two numbers?

Yes. Natural numbers are counting numbers, equal to or greater than 0. The only ways a product can be less than its multiplicands is when multiplying fractions by fractions or multiplying a positive number by a negative number.


Is the product of two positive mixed numbers ever less than one?

No, the product of two positive mixed numbers can never be less than one.


Is the product of two numbers is always greater than either number. a math question.?

No. If one of the numbers is 0 it is less; if one of the numbers is 1 it is the same as one of them; otherwise the product is greater than either


How can you tell from the prim factorizations whether the least common multiple of two numbers is a product of two numbers or is less than the product of two numbers?

If there are no prime factors in common, the LCM will be the product of the two numbers. If common factors exist, the LCM will be less. It will never be more.


If the product of n positive numbers is unity then find their sum?

never less than n


Can the product of two numbers be less than either of the numbers?

If one of the numbers is negative, but the other is positive, then the product is negative - and therefore smaller than both numbers in the question. For example, 2 x -4 = -8. ===================================== Another contributor added: Also, whenever the absolute magnitude of both factors is less than ' 1 ', the absolute magnitude of the product is less than either factor.


How can you determine whether the LCM of two numbers is the product of the numbers or is less than the product of the numbers?

If the two numbers have no prime factors in common, their LCM will be their product. If there are prime factors in common, their LCM will be less than their product.


Product of prime numbers less than 100?

The product of the prime numbers less than 100 is 2.3055679639455188e+36


How can yo determine whether the LCM of two numbers is the product of the numbers or less than the product of the numbers?

If their GCF is 1, their LCM is their product. If their GCF is greater than 1, their LCM is less than their product.


The product of two numbers that are less than zero is also less than zero.?

No. The product of two negative numbers is positive.


How can you determine whether the LCM of two numbers is the product of the numbers or is less than the product of the numbers explain?

If the two numbers have no common factors other than 1, the LCM will be their product. If there are other common factors, the LCM will be less.


How can you determine from the prime factorizations whether the least common multiple of two numbers is the product of the numbers or is less that the product of the two numbers?

If there are no prime factors in common, the LCM will be the product. If there are prime factors in common, the LCM will be less than the product.


How can you determine if the least common multiple of 2 numbers is the product of the 2 numbers or less than the product of the 2 numbers?

If the GCF is 1, the LCM is the product. If the GCF is more than 1, the LCM is less than the product.


How can you tell if the least common multiple of two numbers is less than or equal to the product of the numbers?

If the GCF of the two numbers is 1, the LCM will be their product. IF the GCF is greater than one, the LCM will be less than the product.


How can determine from the prime factorizations wheather the least common multiple of two numbers of the product of numbers or is less then the product of two numbers?

If the prime factorizations have no numbers in common, the LCM is their product.


Is the product of 2 positive numbers greater than either number?

Not always. Here are counterexamples: Cases involving 1: 1 x 1 = 1 1 x 3 = 3 Cases involving positive numbers less than 1: 0.5 x 10 = 5 0.5 x 0.5 = 0.25 Note that here we have positive numbers that are less than or equal to 1. When either number is less than 1, the product will not be greater than both numbers. Also, if either number is equal to 1, the product will be equal to the larger of the original numbers. A modified statement is the product P of two positive real numbers x and y such that x, y > 1, is greater than both x and y.


Numbers less than 30 expresed as a product number of three prime numbers?

No


What is the product of the composite numbers that are less than 10?

27


How can you determine whether the LCM of two numbers is the product of the numbers or is less than the product if the numbers?

By finding out whether they have any factors in common. If the only factor they have in common is 1, the LCM will be their product. If they have more factors in common, their LCM will be less than their product.


When is then product of a negative integer and a positive integer less than both of its factors?

This is a clever question. I would say: "Always". To be more precise: The product is never greater than either factor, and if neither factor is ' 1 ', then the product is always less than both.


Is the product of two numbers that are less than zero also less than zero?

No. Their product is always greater than 0.


What is the product of all the prime numbers less than 10?

The primes less than 10 are 2,3,5 and 7 with a product of 210.


What are all the numbers less than 100 that are the product of exactly three different prime numbers?

All the numbers less than 100 that are the product of exactly three different prime numbers are 30, 42, 66, 70, and 78.