With this problem you just look at the graph and answer it that way. Look at where the heart rate is at its max and then look at the beginning and end, the shape of the graph. Then answer the question.
You'll set the two expressions equal to 95.
So 2x+119=95
Then 2x=-24
Finally x=-12
See attachment for the graph of the function f(x) = cos(x) - 3
<h3>How to graph the function?</h3>
The equation of the cosine function is given as:
f(x) = cos(x) - 3
The above function is a cosine function, and the parent function of the cosine function is
f(x) = cos(x)
This means that the function f(x) = cos(x) is translated 3 units down to get the function f(x) = cos(x) -3
Next, we plot the graph of the function f(x) = cos(x) - 3
See attachment for the graph of the function f(x) = cos(x) - 3
Read more about cosine functions at:
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Step-by-step explanation:
I think answer A should be the correct answer
Using the weighted average method, the equivalent units to
be considered would only be that which is completed within the month and those
completed in the ending inventory. Since the ending inventory is only ¼ or 25%
completed, therefore the total equivalent units is:
total equivalent units = 127,500 units + (0.25)*40,000 units
total equivalent units = 137,500 units
Since the direct labor costs is given to be $24,000
therefore the direct labor cost per equivalent unit is:
direct labor cost per equivalent unit = $24,000 / 137,500
units
direct labor cost per equivalent unit = $0.1745
<span>direct
labor cost per equivalent unit </span>= $0.17
Answer:
$0.17