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Algebra

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A polynomial of degree zero is a constant term

The grouping method of factoring can still be used when only some of the terms share a common factor A True B False

The sum or difference of p and q is the of the x-term in the trinomial

A number a power of a variable or a product of the two is a monomial while a polynomial is the of monomials

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Q: Is 125 a square root 3 irrational?
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Related questions

Is a square root of 3 rational or irrational?

The square root of 3 is an irrational number


Is the square root of -3 irrational?

The square root of -3 is an imaginary number and the square root of 3 is an irrational number that can't be expressed as a fraction


Is the square root of 3 irrational or rational?

It is irrational.


Is the square root of 3 an irrational number?

YES.... squre root of 3 is in irrational number..


Is square root 3 rational?

No, because the square root of 3 is an irrational number


Are root 2 and root 3 rational or irrational?

The square roots of 2 and 3 are irrational but not transcendent.


How can you prove that the square root of three is an irrational number?

Because 3 is a prime number and as such its square root is irrational


Is the square root of 3 a rational number?

No. 3 is not a perfect square, so its square root is irrational.


How do you prove that root 2 root 3 is an irrational number?

It is known that the square root of an integer is either an integer or irrational. If we square root2 root3 we get 6. The square root of 6 is irrational. Therefore, root2 root3 is irrational.


Is the square root of 3 irrational?

Yes


Can multiplying two irrational numbers give you an irrational number?

Yes. For example, the square root of 3 (an irrational number) times the square root of 2(an irrational number) gets you the square root of 6(an irrational number)


Is the product of two irrational numbers irrational?

Sometimes it is and sometimes it isn't. The square root of 2 and the square root of 3 are both irrational, as is their product, the square root of 6. The square root of 2 and the square root of 8 are both irrational, but their product, the square root of 16, is rational (in fact, it equals 4).

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