Answer:
12 candy pieces per package.
Step-by-step explanation:
Rate of change is the change in y over the change in x. The change in y based on the plotted points is 12, and the change in x is just 1. So, 12/1=12.
Answer:
Estimate angle of elevation = 15.4°
Step-by-step explanation:
Given:
Start elevation = 9,400 ft
Ends near the summit = 14,255 ft
horizontal distance = 17,625 ft
Find:
Estimate angle of elevation.
Computation:
⇒ Total elevation distance = Ends near the summit - Start elevation
⇒ Total elevation distance = 14,255 - 9,400
⇒ Total elevation distance = 4,855 ft
⇒ Tan A = 4,855 / 17,625
⇒ Tan A = 0.2754
⇒ Tan A = 15.4°
Estimate angle of elevation = 15.4°
What will most likely be Wilson's approximate science score if he does science homework for 6 hours a week?
33 points
42 points
52 points
55 points
Answer:
55 points
Step-by-step explanation:
equation is close to y = 7.1x + 15
y = 7.1(6) + 15 comes closest to 55
What is 6
in radical form?
(B) 1 2 3 4 5 6
Find the chance that
(a) one of the number is 2 and the other is 5
(b) sum of the numbers is 7
(c) one number is bigger than twice the other
Answer:
a.1/15
b.1/6
c.1/3
Step-by-step explanation:
number of outcomes from box 1=5
number of outcomes from box 2=6
therefore total number of outcomes=6×5
=30
a. number of times receiving a ticket 2 and the other 5 =2
therefore probability= 2/30
=1/15
b.number of combinations for 7= 5 (1+6, 2+5,5+2,4+3,3+4.)
therefore probability= 5/30
=1/6
c.number of times one number was bigger than twice the other=10 (1+3,3+1,1+4,4+1,1+5,5+1,1+6,2+5,5+2,2+6)
therefore probability= 10/30
=1/3
Answer:
what's the question tell please
Answer:
The angle that the ramp makes with the ground is 11.54°
Step-by-step explanation:
From the image attached, we can see that the length of 17 1/2 ft corresponds to the hypotenuse in a right triangle, the length of 3 1/2 ft corresponds to the opposite side.
We can use the fact that the sin(θ) = to find the angle that the ramp makes with the ground.
The angle is equal to
The angle that the ramp makes with the ground can be found using the concept of tangent in trigonometry. By dividing the height of the loading platform by the length of the ramp and taking the inverse tangent of the result, we find the angle to be approximately 11.3 degrees.
This question can be solved by using trigonometric principles, specifically the tangent of an angle in a right triangle. The tangent of an angle θ (theta) can be defined as the ratio of the side opposite the angle to the side adjacent to it.
In this scenario, the ramp forms a right triangle with the ground and the vertical line from the loading platform to the ground directly below it. The height of the platform, or the 'opposite' side, is 3 1/2 feet, and the ramp, or the 'adjacent' side, is 17 1/2 feet.
Therefore, we can say that: tan θ = (3.5 / 17.5)
To find the value of θ, we take the inverse tangent (or arc tangent) of the quotient. Using a calculator to do this (remember to set your calculator to degree mode), we find θ to be approximately 11.3 degrees.
Thus, the angle that the ramp makes with the ground is about 11.3 degrees.
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