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Sphinxa [80]
3 years ago
7

A company has 50 employees all working in the same building. As part of their safety procedures, a fire drill is carried out wit

h the total number of employees who have left the building recorded every 10 seconds. the results are displayed in the cumulative frequency diagram below. the company has the following policy "in event of a fire at least 90% of the employees must have left the building within 1 minute"
Did the fire drill meet the policy above? you must show all your working.

Mathematics
1 answer:
Novay_Z [31]3 years ago
8 0

Answer:

yes

Step-by-step explanation:

if you see the diagram go to 60 s and you see it untop of 45 percent so it 95% so they meet the policy

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Answer:

i(t)=(2/3)(1-e^{-300t})

Step-by-step explanation:

Before we even begin it would be very helpful to draw out a simple layout of the circuit. Then we go ahead and apply kirchoffs second law(sum of voltages around a loop must be zero) on the circuit and we obtain the following differential equation,

-V +Ldi/dt+Ri=0

where V is the electromotive force applied to the LR series circuit, Ldi/dt is the voltage drop across the inductor and Ri is the voltage drop across the resistor. we can re write the equation as,

di/dt+Ri/L=V/L

Then we first solve for the homogeneous part given by,

di/dt+Ri/L=0

we obtain,

i(t)_{h} =I_{max}e^{-Rt/L}

This is only the solution to the homogeneous part, The final solution would be given by,

i(t)=i(t)_{h} +c

where c is some constant, we added this because the right side of the primary differential equation has a constant term given by V/R. We put this in the main differential equation and obtain the value of c as c=V/R by comparing the constants on both sides.if we put in our initial condition of i(0)=0, we obtain I_{max} =V/R, so the overall equation becomes,

I(t)=(V/R)(1-e^{-Rt/L})

where if we just plug in the values given in the question we obtain the answer given below,

i(t)=(2/3)(1-e^{-300t})

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Answer:

Step-by-step explanation:

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Step-by-step explanation:

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mariarad [96]

Answer:

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Step-by-step explanation:

Given that,

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