The function that represents the area of the rectangle is: B. (L × W)(x) = 10x³ - 20x² + 65x.
Area of a rectangle = (length × width)
Applying the area of a rectangle formula, the area of the rectangle would be:
(L × W)(x) = 5x(2x² - 4x + 13)
Apply the distributive property
(L × W)(x) = 10x³ - 20x² + 65x
The area in terms of x is: (L × W)(x) = 10x³ - 20x² + 65x.
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g(x) = x − 24
Answer:
Let f(x) and g(x) be the function then;
Given the functions:
Solve for :
.....[1]
Put x = 3 in f(x) and g(x) we have;
and
Substitute these values in [1] we have;
Therefore, the value of is 6
Answer:
False
Step-by-step explanation:
Law of cosines:
If you know two sides and an included angle, or all the three sides of the triangle, then law of cosines can be applied as:
where C is an included angle.
Acute triangle:
A triangle whose all the three angles are less than 90 degrees.
Thus, it is not necessary that the law of cosines will be applied to only acute triangles. Law of cosines can be applied to any triangle as to use it, we only need two sides and an included angle.
Thus, the given statement that is the law of cosines can only be applied to acute triangles is false.
Answer:
False
Step-by-step explanation:
The answer is false
Answer:
The answer is trade association.
Step-by-step explanation:
Such organizations are founded to encourage trade and collaboration between companies. These are also known as industry trade group or business association and is funded by businesses that operate in a particular industry.
Answer:
108
Step-by-step explanation:
Mike's current age, be M
Then Brandon's is: M - 27
Also, M = 4(M - 27)
M = 4M - 108
M - 4M = - 108
- 3M = - 108
Hello!
Answer:
Step-by-step explanation:
→ We want to find if the expression (xy)² is equal to x²y².
→ Let's simplify the expression:
→ We know that is equal to .
In our expression:
→ So the expression is equal to:
Conclusion:
The expression (xy)² is equal to x²y².
So the answer is true.
Answer:
True
Step-by-step explanation:
(xy)²
= xy × xy
= x × x × y × y
= x² × y²
= x²y² ← True