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:
Answer is D) As X---> negative infinity, y --> positive infinity and as x--> positive infinity, y---> positive infinity
Step-by-step explanation:
Just took the test and got it right!!
Hope this helps!!!!
a. 7x-14x^4 +19x^3 +26x^5-18
Standard form:
degree:
name based on degree:
Answer:
Sure, I'd be happy to help!
The polynomial you provided is:
7x - 14x^4 + 19x^3 + 26x^5 - 18
To put this polynomial in standard form, we need to factor it. Here's the factored form of the polynomial:
7x(1 - 14x^3 + 19x^2 + 26x^4) - 18
Now, we can see that the degree of the polynomial is 4, so it is a quartic polynomial.
Based on the degree of the polynomial, we can classify it as a quartic polynomial.
Step-by-step explanation:
The fraction is the fraction, which is not greater than the fraction given as . They are equal.
Given are two fractions.
and
It is required to find the relationship between these fractional numbers.
In order to find the relationship between two fractions, it is first required to make the denominators of the fraction equal.
Here, the denominator of one fraction is 6 and the other fraction is 12.
Since 6 is a factor of 12, multiply the numerator and the denominator by 2 to make it 12.
So, , can be multiplied by both the numerator and denominator to get So, the fractions are equal.
Learn more about Fractions here :
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