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The domain of the function is
.
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To find the domain of the function
, we need the expression inside the square root to be non-negative. This means:
Since -6 is negative, the fraction will be non-negative when
(which makes the denominator negative, thus flipping the sign of the inequality). Therefore, we solve:
Let’s also remember that
cannot be equal to 1 because that would make the denominator zero. Thus, the domain of
is all values of
less than 1, or in interval notation,
.
Now, isn’t it interesting that in this scenario, we’re not just dealing with simple square roots? It’s like a little treasure hunt where we have to find a negative number hiding behind that gaping hole of
! In essence, determining the domain requires a bit of logical deduction.
Furthermore, did you know that square root functions often help in representing real-world scenarios as well? For instance, when dealing with physical quantities like distance or speed where you can only have non-negative results, the domain plays a crucial role in defining valid input values—like ensuring you’re not trying to calculate the square root of a negative number when measuring a distance! It’s math working harmoniously with the real world!

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