The graph of the given values is required.
Option B is correct.
The points are
Let us find if the points are in the form of a line by finding the slope.
So, the function is not linear.
Therefore, A and C are incorrect.
Also the function is not decreasing so option D is also eliminated.
Hence, option B is correct.
Learn more:
From the attached diagram you can see that regression that best fits given data is quadratic (not linear).
Answer: correct choice is B.
Answer:
The 3rd choice.
Step-by-step explanation:
The third choice has what it takes to be a scientific notation.
The missile's change in altitude from the starting point 290 feet below sea level to the final position of height 17800 feet is calculated by subtracting the initial position from the final position, resulting in a change of 18090 feet.
The subject of this question falls under the domain of Mathematics, specifically involving numerical operations. It pertains to the calculation of change in altitude. Here's your step-by-step explanation:
1. The missile's starting point is 290 feet below sea level. We represent below sea level as a negative number, so the starting altitude of the missile is -290 feet.
2. The missile then ascended to a height of 17800 feet, which is above sea level and hence positive.
3. To find the change, we subtract the initial position from the final position: 17800 - (-290) = 17800 + 290 = 18090 feet.
So, the change in altitude of the missile is 18090 feet.
#SPJ2
The angle of elevation of the sun is approximately 40 degrees
The scenario forms a right angle triangle.
The height of the tree is the opposite side of the right angle triangle formed .
The shadow casted on the ground is the adjacent side of the triangle.
Therefore, using trigonometric ratio, the angle of elevation can be found as follows:
height of the tree = 109 ft
length of the shadow = 130 ft
let
the angle = ∅
tan ∅ = opposite / adjacent
tan ∅ = 109 / 130
∅ = tan⁻¹ 0.83846153846
∅ = 39.978520842
∅ ≈ 40°
learn more on trigonometry here: brainly.com/question/24303045