Answer:
Is this pure simplification? If it is, here you go. :)
Step-by-step explanation:
= 12ab - 16ad - 24ab + 3ad
= (12ab - 24ab) + (-16ad + 3ad)
= (-12ab) + (-13ad)
= -12ab - 13ad
Step-by-step explanation:
-4(-3ab +4ad) -6(4ab)-(-3ab)
12ab-16ad-24ab+3ad
12ab-24ab-16ad+3ad
-12ab -13ad
7a + 18 = 102
a =
Answer:
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Answer:
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Answer:
Fourth option: (x-4)(x+4)
Step-by-step explanation:
x^2-16
Using a^2-b^2=(a-b)(a+b) with:
a^2=x^2→sqrt(a^2)=sqrt(x^2)→a=x
b^2=16→sqrt(b^2)=sqrt(16)→b=4
Then:
x^2-16=(x-4)(x+4)
Answer:
The number of zero pairs that will be added to the board is
✔ 4
The equivalent factored form of x2 – 16 is
✔ (x – 4)(x + 4) (D)
.
Answer: 3.5
Step-by-step explanation:
Log(10)(3.5) = 3.5
log(10)=1
1(3.5) = 3.5
The common logarithm, or log base 10, of 3.5 is about 0.544068. However, when rounded to two decimal places, it is 0.54.
The question is asking for the value of log_(10)(3.5). To find this, you would need to use a calculator that has a logarithm function. This value does not have a simple, exact decimal representation, but it can be approximated. Using a calculator, we find the common logarithm, or log base 10, of 3.5 to be approximately 0.54.
However, the question asks us to round this answer to two decimal places. So, using the rules of rounding numbers, we can round 0.544068 to 0.54.
Remember, when you're rounding numbers, if the digit after the place to which you're rounding is 5 or greater, you round up, otherwise, you round down.
Note: Before the days of calculators, we used log tables. Nowadays, we have a simple and easy way to calculate logs - calculators! If you are using a scientific or graphing calculator, there is typically a 'log' button that enables you to calculate logs at the push of a button.
Learn more about Logarithm here:
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