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kodGreya [7K]
2 years ago
10

The results of an experiment are in the table below. Which statement is true?

Mathematics
2 answers:
timurjin [86]2 years ago
6 0

Answer:

answer is D

Step-by-step explanation:

because to even it out, you would need ore ones to have rolled to make an average

vlada-n [284]2 years ago
6 0
D you need to even it out because there are more 1’s
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A rectangle has a length of 11.8 centimeters and a width of 8.2 centimeters.
kodGreya [7K]

Answer:

I think it is 96.76 cm

Step-by-step explanation:

Correct me if I am wrong

5 0
2 years ago
Plz ANWSER no one else will amwser this
RoseWind [281]

Answer:

1. 80.5

2. 432

3. 310.5

4. 26

Step-by-step explanation:

6 0
3 years ago
Tickets to a play are priced as follows:
Aneli [31]
£72 plus £18 equals £90 and 10% makes it £81.00 and with the 2% it’s £82.62
3 0
3 years ago
Read 2 more answers
Answer the question based on the data in the two-way table.
Masteriza [31]

Answer:

d

Step-by-step explanation:

3 0
3 years ago
A model for tumor growth is given by the Gompertz equation dV dt = a (In b-, In V) V where a >0 and b >0 are constants and
Xelga [282]

Answer:

V(t) = b^{(1-e^{-at})}

Step-by-step explanation:

We are given the following information in the question:

\displaystyle\frac{dV}{dt} = a (In b - In V) V

where a > 0 and b > 0.

\displaystyle\frac{dV}{dt} = a (In b-In V) V\\\\\displaystyle\frac{dV}{dt} = -aV(ln\frac{V}{b})\\\\\frac{dV}{V(ln\frac{V}{b})} = (-a)dt\\\\\text{Put } ln\frac{V}{b} = z\\\\\text{Integrating both sides}\\\\\int \frac{dV}{V(ln\frac{V}{b})} = \int (-a)dt\\\\\text{We get}\\\\\int \frac{dz}{z} = \int (-a)dt\\\\\\\text{where C is the constant of integration}

V(0) = 1~ mm^3\\V(t) = b.e^{e^{-at+C}}\\\text{Putting t =0, V(0) = 1}\\\\V(0) = 1 = b.e^{e^{C}}\\\\V(t) = b^{(1-e^{-at})}

where v(t) is the required tumor volume as a function of time that has an initial tumor volume of V(0) = 1 cubic mm.

5 0
3 years ago
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