Answer:
Step-by-step explanation:
This is asking for you to use the Pythagoras's theorem, which says that if you are given a height of a right triangle (h) and the length of that right triangle (L), then, the hypotenuse, or the distance between them (d), is:
Here, we are given that the height is 3m and the length is 5m. The distance, then will be given by:
So, the distance between the ladder and the bottom of the slide is 4 meters. Hope I could help! :)
f(x) = -0.805x + 38.967
f(x) = 0.805x + 38.967
f(x) = -0.001x2 - 0.543x + 37.389
f(x) = 0.001x2 - 0.543x + 37.389
The correct answer for the data is (d) f(x) = 0.001x² - 0.543x + 37.389.
To determine which function most appropriately models the data, we need to examine the characteristics of the data and compare them with the characteristics of the functions.
The data represents the revenue from Tallahassee theaters, which means that the revenue is likely to increase as the number of theaters and the number of people attending the theaters increases. Therefore, we can eliminate options (a) and (b) because they have negative coefficients on x, which would indicate a decreasing revenue as x increases.
Option (c) is a quadraticfunction, which allows for a more complex relationship between the revenueand the number of theaters. However, the coefficient on the x² term is very small (0.001), which suggests that the quadratic term has little effect on the revenue compared to the linear term. In addition, the constant term (37.389) is relatively low, which would imply a low revenue even when the number of theaters is zero.
Option (d) is also a quadratic function, but it has a larger coefficient on the x² term (0.001) and a higher constant term (37.389), which would result in a higher revenue even when the number of theaters is zero. Therefore, option (d) is the most appropriate function to model the data.
So, the correct answer is (d) f(x) = 0.001x² - 0.543x + 37.389.
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Answer:
its c
Step-by-step explanation:
Solution of an equation is .
The solution of an equation is the array of all values that, when replaced for unknowns, make an equation true.
Given
Solution of an equation is .
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Answer:
the solution of:
x²=20
√x² = √(2² × 5)
x=2√5
So the answer is
A. x= ±2√5