The doubling time of a city's population is 13 years. How long does it take for the population to quadruple.
5
3
=
10
q
start fraction, 3, divided by, 5, end fraction, equals, start fraction, q, divided by, 10, end fraction
q =q=q, equals
toward the right
B
С
D
-100
0
100
Which point represents Maya walking 50 feet from her home toward the left?
O Point A
Point B
Point C
O Point D
Answer: a is the correct answer
Step-by-step explanation:
Answer:
a
Step-by-step explanation:
A. The set of all integers between 0 and 750 inclusive
B. The set of integers
C.the set of whole numbers
D. The set of all real numbers between 0 and 750 inclusive
E the set of real numbers
Answer:
E.
Step-by-step explanation:
not sure sorry...anyone help this
B. 250
C. 3,000
D. 3,600
The number of individual eggs that were sold is (a) 36,000
From the question, we have the following parameters that can be used in our computation:
Eggs = 3000 dozen
By defintiion
1 dozen = 12
substitute the known values in the above equation, so, we have the following representation
Eggs = 3000 * 12
Evaluate
Eggs = 36000
Hence, a total of (a) 36000 individual eggs were sold
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Answer:
The producer will have maximum profit when x is 5000.
Step-by-step explanation:
Given C(x) = 0.000002x³ - 0.03x² + 400x + 80000
To find the level of production that will yield the maximum profit for the manufacturer, firstly, we differentiate C(x) to obtain C'(x), we then set the resulting quadratic expression to zero and solve. Whichever of the two values obtained from the quadratic equation will be tested to see what we want to find.
Differentiate C(x)
C'(x) = 3(0.000002)x² - 2(0.03)x + 400
= 0.000006x² - 0.06x + 400
Set C'(x) = 0
0.000006x² - 0.06x + 400 = 0
Solve using quadratic formula.
x = [-b ± √(b² - 4ac)]/2a
a = 0.000006
b = -0.06
c = 400
x = [-(-0.06) ± √((-0.06)² - 4(0.000006 × 400)]/2(0.000006)
= [0.06 ± √(0.0036 - 0.0096]/0.000012
= (0.06/0.000012) ± i√(0.006)/0.000012
= 5000 ± 6454.97i
x = 5000 + 6454.97i
Or
x = 5000 - 6454.97i