Answer:
The area at time t is given by
Step-by-step explanation:
We know the radius of the oil spill as a function of time, and we know the area as a function of radius, and we want the area at time t. In other words we are looking for area as a function of time
We find by putting into as a substitute to r:
Which is our answer.
To find the composite function for the area of the oil spill over time, replace 'r' in A(r) = πr2 with the function r(t). The function becomes A(t) = π(0.5 + 2t)2.
In order to find the function that represents the area of the oil spill over time, we need to write a composite function. This means we plug the function r(t) into A(r). Since r(t) = 0.5 + 2t, you can replace every instance of 'r' in A(r) = πr2 with (0.5 + 2t) to get the area as a function of time 't'. So, the composite function becomes A(t) = π(0.5 + 2t)2. Now we have a composite function that represents the area of the oil spill, denoted by A(t), as a function of time. The function is: A(t) = π(0.5 + 2t)2.
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There are two $5 bills and ten $10 bills in Neil's wallet and this can be determined by forming the linear equation in two variables.
Given :
Let the total number of $5 bills be 'a' and the total number of $10 bills be 'b'. Then the total number of bills will be:
--- (1)
It is given that Neil has 5 times as many $10 bills as $5 dollar bills, that is:
---- (2)
Now, substitute the value of 'b' in equation (1).
a + 5a = 12
6a = 12
a = 2
Now, put the value of 'a' in equation (2).
b = 10
There are two $5 bills and ten $10 bills in Neil's wallet.
For more information, refer to the link given below:
8x-15=17
Answer:
The answer is D. You divide the shape into 3 rectangles.
Step-by-step explanation: