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There is no square root of -75.

If it's 75, that is 5 square root 3.

Q: What is 20 plus the square root of -75 all divided by 10?

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root 3 - 1 all over 2

It isn't. √22 + √23 = 9.486. √21 + √24 =9.482. its not that its more than that!!! its..... NOTHING!!! you got that??? NOTHING at all!!!

X2+5x-6. a=1, b=5, and c=-6 The formula is: -b plus or minus the square root of b squared minus 4ac all over 2a. -b+square root of b2-4ac ---- 2a -5 plus or minus the square root of 5 squared minus 4(1)(-6) -5 plus or minus the square root of 25-4(-6) -5 plus or minus the square root of 25+24 -5 plus or minus the square root of 49 -5 plus or minus 7 Here is where you split into two different answers: Number 1: -5 plus 7= 2 Number 2: -5 minus 7= -12 Your answer is X=2, -12

the square root of 5 = 2.2360679 The Square root of 3 = 1.7320508 Answer is 3.8729825 0 Because 5 divided by 5 is 0 youcan't divid 5 and the same thing with 3 first of all, you can't is two words and divide has an e am most likely he is looking for the square root answer, as of most teachers want, anyone can use a calculator to plug and chug the answer is sqrt15 you multiply 5*3

it is 18 because when you put all the numbers back into the square root it becomes the square root of 18 and the square root of 18 squared would be 18

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root 3 - 1 all over 2

"Square root of a triangle" has no meaning. Neither has "divided by all sides".

It isn't. √22 + √23 = 9.486. √21 + √24 =9.482. its not that its more than that!!! its..... NOTHING!!! you got that??? NOTHING at all!!!

The quadric equation is: negative b plus or minus the square root of b squared minus 4ac all over(divided by) 2a

It's a bit unclear what you wish done with these numbers. Possibly you are describing three different problems. Or you wish all three final numbers multiplied together into an answer. In any case: 1. The square root of 24 plus 3 is approximately equal to 7.8989794855663561963945681494118. 2. The square root of 90 plus 2 is approximately equal to 11.486832980505137995996680633298. 3. The square root of 150 is approximately equal to 12.247448713915890490986420373529.

The answer is 2 on the square root of 3, all divided by 4. You come to this conclusion by multiplying the square root of three quarters by the square root of four divided by the square root of four, since there can't be a square root in the denominator. This will cancel out the "4" in the square root of three quarters, causing it to be now the square root of 12 over a normal four (the square root of four times the square root of four equals four). Then you simplify the square root of twelve by taking it's radical form, knowing that it takes 4 and 3 to multiply to get 12, and 4 is a perfect square, you take its perfect square which is 2, and put it outside of the square root of 3, all over 4. Hope this helped

if this is x squared -6x+6=0 then -6=b, a=1, c=6 6+ square root of -6 squared-4(6x1) - 6+ square root of (36-24) - 6+ square root of 12 - 6+ square root of 4 x square root of 3 - 6 + (2x square root of 3) - that is all divided by 2 multiplied by a meaning it is divided by 2. so x= 6 + or - (2 square root 3) divided by 2 srry steps are jmbled -

This is a difficult one to answer without being able to use math type. You have to multiply the top and bottom of this expression by the conjugate to solve the problem. But since I can't show you that, I will just give you the answer without the work included.The numerator is a-2sqrt(ab)+bThe denominator is a-bI will solve all your math problems. Check my profile for more info.

10 - (5 x 2 x 2) + (16 x 4) + 20 + 1000 - 100 10 - 20 + 64 + 20 + 1000 - 100 All of that equals 974. You didn't indicate what the square root was of or how it applies.

None because square numbers have more than two factors

The general quadratic equation is ax2 + bx + c = 0 The two solutions are: x = [ (negative b) plus or minus the square root of (b2 - 4ac) ] all divided by (2a).

Its when a number for example 100 is divided by its root which is 10, because 10 times 10 equals 100 and that follows all other numbers.