Answer:
0.5 seconds (at 100 feet in the air).
Step-by-step explanation:
So, the height of the ball can be modeled by the function:
Where h(t) represents the height in feet after t seconds.
And we want to find its maximum height.
Notice that our function is a quadratic.
Therefore, the maximum height will occur at the vertex of our function.
The vertex of a quadratic function in standard form is given by the formula:
In our function, a=-16; b=16; and c=96.
Find the x-coordinate of the vertex:
So, the ball reaches its maximum height after 0.5 seconds of its projection.
Notes:
To find it’s maximum height, we can substitute 1/2 for our function and evaluate. So:
Evaluate:
So, the ball reaches its maximum height of 100 feet 0.5 seconds after its projection.
Answer:
y = 22
Step-by-step explanation:
Consecutive Angles of a parallelogram are supplementary
y + 4y -70 = 180
5y - 70 = 180
5y = 110
y = 22
grade 7 math
Answer:
4.5 pounds of ground beef
Answer:
4.5
Step-by-step explanation:
You would divide 72 by 16 to get 4.5 as the answer.
Answer:
Ratio of cost of a pen to cost of a ball pen is 15:7
Step-by-step explanation:
Given that:
Cost of dozen pens = ₹180
Unit rate =
Unit rate = ₹ 15 per pen
Cost of 8 ball pens = ₹ 56
Unit rate =
Unit rate = ₹7 per ball pen
Ratio of cost of a pen to cost of a ball pen,
15 : 7
Hence,
Ratio of cost of a pen to cost of a ball pen is 15:7
It can be written as 5 x 10^ -11 or 0.5 x 10^ -10
Hope it helps.
5x-y=6
-2x+y=8