To the nearest year, it will take about 10.7 years to double the original investment.
In this case, the principal P is $1,000, the interest rate r is 6.5% or 0.065 (in decimal form), the number of times compounded per year n is 12 (compounded monthly), and we want to find the time t when the investment doubles, so A is $2,000.
ln(2) = 12t * ln(1 + 0.065/12)
t = ln(2) / (12 * ln(1 + 0.065/12))
t ≈ 10.7
Read more on compounded monthly here brainly.com/question/31242519
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Answer: edgen
B 2=(1+0.065/12)^12t
Step-by-step explanation:
answers:
1: D 2: C
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Answer:
The answer is 91
Step-by-step explanation:
~Hoped this helped~
x 5
Answer:
A
Step-by-step explanation:
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Answer:
A
Step-by-step explanation:
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Answer:
4 and -2
Step-by-step explanation:
Answer:
1/2
Step-by-step explanation:
the slope = rise /run
Look at the graph to find 2 points that are easy to read for example (0, -2) and (4, 0).
How did you got from (0, -2 ) to (4, 0) by rising 2 and run 4 so your slope is
m=2/4=1/2
Figure EFGHK as shown below is to be transformed to figure E'F'G'H'K' using the rule (x, y) (x+8, y + 5):
Answer:
H' (4, 8 )
Step-by-step explanation:
the transformation rule (x, y ) → (x + 8, y + 5 )
means add 8 to the original x- coordinate and add 5 to the original y- coordinate, then
H (- 4, 3 ) → H' (- 4 + 8, 3 + 5 ) → H' (4, 8 )
The number of bacteria that exist in the culture after 8 hours will be 1024.
Consider the function:
y = a (1 ± r) ˣ
Where x is the number of times this growth/decay occurs, a = initial amount, and r = fraction by which this growth/decay occurs.
If there is a plus sign, then there is exponential growth happening by r fraction or 100r %
If there is a minus sign, then there is exponential decay happening by r fraction or 100r %
A bacteria culture begins with 4 bacteria which double in size every hour.
Then the equation will be
y = 4 (2)ⁿ
Where n is the number of hours.
Then the number of the bacteria that exist in the culture after 8 hours will be
y = 4 (2)⁸
y = 4 x 256
y = 1024
More about the exponent link is given below.
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