Answer:
1/3
Step-by-step explanation:
To find the rate at which the lawn sprinkler would fill the pool if used alone, subtract the rate of the hose from the combined rate. The equation is rs = 1/5 - 1/8.
To determine the rate at which the lawn sprinkler would fill the pool if used alone, we can set up an equation using the concept of rates. Let r be the rate at which the sprinkler fills the pool. If it takes 8 minutes for Byron to fill the pool with just the hose, then the rate of the hose alone is 1 pool/8 minutes, or rh = 1/8. If it takes 5 minutes to fill the pool when both the hose and sprinkler are used together, then the combined rate is 1 pool/5 minutes, or rc = 1/5.
The rate of the sprinkler alone, rs, can be determined by subtracting the rate of the hose from the combined rate. Thus, we have rs = rc - rh. Substituting the given values, we have rs = 1/5 - 1/8.
Therefore, the equation that can be used to determine the rate at which the lawn sprinkler would fill the pool if used alone is rs = 1/5 - 1/8.
#SPJ12
To determine the coordinates of the points that satisfy the condition of being 10 units from (1,8) on the x-axis, we can set up two equations based on the distance formula.
Let's assume the coordinates of the points are (x, 0), where y = 0 represents the x-axis.
Using the distance formula, we have:
√[(x - 1)^2 + (0 - 8)^2] = 10
Simplifying the equation, we get:
√[(x - 1)^2 + 64] = 10
Squaring both sides, we have:
(x - 1)^2 + 64 = 100
Now, you can solve this equation to find the possible x-coordinates of the points.
Based on what you just explained about determining the coordinates of points that satisfy a given condition, let's move on to a related concept
9:12
12 to 16
15/20
24:36
16 to 24
Answer:
9:12
12 to 16
15/20
Hope this helps
Answer: The ordered pairs are (2,1) and (7,2).
Step-by-step explanation:
Since we have given that
if y=1
we get that
If x= 7, we get that
So, the ordered pairs are (2,1) and (7,2).