Answer:
The ball will go over the net when she's standing 2 feet away from the net, but not at 4 ft from the net
Explanation:
Suppose then when the player is 2ft from the net, we can plug in x = 2:
As 8 feet > 7 ft 4 in, the ball will go over the net
If the player moves back so that she's 4 feet from the net, plug in x = 4:
As 7 ft < 7 ft 4 in, this time the ball will NOT go over the net
The function models the path of a volleyball when the player is 2 feet from the net and will the ball go over the net at different distances.
The function f(x) = -0.25(x-2)^2 + 8 models the path of a volleyball when the player is 2 feet from the net. To determine if the ball will go over the net, we need to compare the height of the ball's path with the height of the net.
First, let's convert the height of the net to feet. The height, 7 ft 4 in, is equivalent to 7.33 feet. Now, substitute x = 2 into the function to find the height of the ball when the player is 2 feet from the net. f(2) = -0.25(2-2)^2 + 8 = 8 ft.
The ball will go over the net because the height of the ball, 8 feet, is greater than the height of the net, 7.33 feet.
If the player moves back so she is 4 feet from the net, substitute x = 4 into the function: f(4) = -0.25(4-2)^2 + 8 = 10 ft. The ball would still go over the net, as the height of the ball, 10 feet, is greater than the net's height.
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B. Pass the solution through a filter to let the dissolved substance separate.
C. Use a magnet to draw out the solid substance from the water.
D. Pour the liquid along a rough surface that would catch the solid particles but not the water.
Boiling the water away, leaving the substance behind in the beaker is the way to separate the mixture. The correct option is A.
A mixture is basically a substances comprised of two or many distinct chemical substances which are indeed not linked covalently.
A mixture is the usually physicalcombination of two or more substances that retain their identities as well as are mixed in the way to form solutions, suspensions, along with colloids.
When two or more distinct substances are physically combined, a mixture is formed that can be distinguished back into its original substances.
When two or more substances combine to form a new substance that cannot be separated back into its original substances, a chemical reaction occurs.
The mixture can be separated by boiling the water away and leaving the substance in the beaker.
Thus, the correct option is A.
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Answer:
I think the answer is a because boiling water cleans it
B. only at negative accelerations
C. only at zero acceleration
D. only at constant accelerations
B. A school locker room
C. A bank lobby
D. A study area
What is the hottest layer in the Sun's atmosphere?
Corona.