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seropon [69]
3 years ago
10

the population of bacteria in an experiment has been increasing by 50% each day. If there were 100 bacteria at the beginning of

the experiment, predict the number of bacteria in 4 days
Mathematics
1 answer:
nikklg [1K]3 years ago
8 0

Answer:

  506

Step-by-step explanation:

The count is multiplying by 1.5 each day, so after 4 days, it will have multiplied by 1.5^4 = 5.0625

Then the count is predicted to be ...

  100·5.0625 ≈ 506.25

The count will be 506 after 4 days.

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Aneli [31]

Answer:

5

Step-by-step explanation:

not you deleting it

5 0
3 years ago
I could use some assistance!!!
salantis [7]
D=6b Since that you want to know the cost of the amount of boxes of strawberries you have bought. The cost is dependent on the number of boxes you have which is why the equation is d=6b. Hope this helps. :)
7 0
4 years ago
Evaluate \dfrac14c+3d
Crank

Answer:  \frac{45}{2}

Step-by-step explanation:

<h3> The exercise is: " Evaluate \frac{1}{4}c + 3d when c = 6 and   d = 7</h3>

Given the following expression:

 \frac{1}{4}c + 3d

You can follow these steps in order to evaluate it:

 1. Substitute c = 6 and   d = 7 into the expression provided in the exercise:

  \frac{1}{4}(6) + 3(7)

2. Solve the multiplications. Remember that:

 \frac{a}{b}*\frac{c}{d}=\frac{ac}{bd}

Then:

 =\frac{6}{4} +21

3. Reduce the fraction. Notice that the numerator 6 and the denomiantor 4 can be both divided by 2. Then:

=\frac{3}{2} +21

4. Solve the addition:

=\frac{3}{2} +\frac{21}{1}

 Since the number 21 has a denominator 1, the Least Common Denominator is:

LCD=2

Then, the sum is:

=\frac{3+42}{2}=\frac{45}{2}

5 0
3 years ago
Read 2 more answers
HELPPPPP RNNN PLEASEEEE
Veseljchak [2.6K]
I will help if you mark me brainlyest
6 0
3 years ago
What is this limit equal to?
Nadya [2.5K]

Since the cotangent function is defined as

\cot(x) = \dfrac{\cos(x)}{\sin(x)}

we have that the cotangent equals zero at \frac{\pi}{2}, because we have

\cot\left(\dfrac{\pi}{2}\right) = \dfrac{\cos\left(\frac{\pi}{2}\right)}{\sin\left(\frac{\pi}{2}\right)} = \dfrac{0}{1} =0

So, the limit simply becomes

\dfrac{\pi}{2}\cdot 0 = 0

4 0
4 years ago
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