Answer:
(6^(n-1))/6
Step-by-step explanation:
The nth term of a geometric series is a function of the number n, the common ratio between each successive number in the series r and the first term a. This may be expressed mathematically as
= a(r)^n-1
Given the series,
a = 1/6,
r = T2/T1 = 1/1/6 = 6
The nth term
= (1/6)(6)^n-1
= (6^(n-1))/6
B. y=-3
C. x=7
D. y=7
Answer:
B- y=-3
Step-by-step explanation:
Answer: There are 74 students of third grade attend an assembly .
Step-by-step explanation:
The number of students in third grade classes = 26
The number of third classes in the school = 3
Therefore, the total number of students of third grade in the school =
Now, it 4 students are absent then the number of third grade students in the school =
Hence, there are 74 students of third grade attend an assembly .
The number of bacterial population after 5 hours is; 816
N(t) = N_o(1 + r)^(t)
Where;
N(t) is number of bacteria after t hours
N_o is number of bacteria initially
r is growth rate
t is time
N_o = 480
r = 11.2% = 0.112
t = 5
N(5) = 480(1 + 0.112)^(5)
N(5) = 816.14
Read more about exponential growth at; brainly.com/question/15316908
The bacterial population after 5 hours with an exponential growth rate of 11.2% per hour and an initial population of 480 bacteria would be approximately 947.1 bacteria.
To calculate the bacterial population after 5 hours with an exponential growth rate of 11.2% per hour and an initial population of 480 bacteria, we can use the formula
P = P0 * (1 + r)^t.
P is the final population, P0 is the initial population, r is the growth rate expressed as a decimal, and t is the time in hours.
Using the given values, the formula becomes: P = 480 * (1 + 0.112)^5.
Solving this equation, the bacterial population after 5 hours would be approximately 947.1 bacteria.
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Answer:
a situation of proportionality is assumed
35 words 140 words
1min(1*140)/35=4min
it takes 4min to type 140 words
Step-by-step explanation:
Answer:
number 10 (5/6)
Step-by-step explanation:
hope this helped ^^