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One Model for the Spread of an Epidemic Is That

Question 3

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One model for the spread of an epidemic is that the rate of spread is jointly proportional to the number of infected people and the number of uninfected people. In an isolated town of One model for the spread of an epidemic is that the rate of spread is jointly proportional to the number of infected people and the number of uninfected people. In an isolated town of   inhabitants,   people have a disease at the beginning of the week and   have it at the end of the week. How long does it take for   of the population to be infected? A)    B)    C)    D)    E)   inhabitants, One model for the spread of an epidemic is that the rate of spread is jointly proportional to the number of infected people and the number of uninfected people. In an isolated town of   inhabitants,   people have a disease at the beginning of the week and   have it at the end of the week. How long does it take for   of the population to be infected? A)    B)    C)    D)    E)   people have a disease at the beginning of the week and One model for the spread of an epidemic is that the rate of spread is jointly proportional to the number of infected people and the number of uninfected people. In an isolated town of   inhabitants,   people have a disease at the beginning of the week and   have it at the end of the week. How long does it take for   of the population to be infected? A)    B)    C)    D)    E)   have it at the end of the week. How long does it take for One model for the spread of an epidemic is that the rate of spread is jointly proportional to the number of infected people and the number of uninfected people. In an isolated town of   inhabitants,   people have a disease at the beginning of the week and   have it at the end of the week. How long does it take for   of the population to be infected? A)    B)    C)    D)    E)   of the population to be infected?


A) One model for the spread of an epidemic is that the rate of spread is jointly proportional to the number of infected people and the number of uninfected people. In an isolated town of   inhabitants,   people have a disease at the beginning of the week and   have it at the end of the week. How long does it take for   of the population to be infected? A)    B)    C)    D)    E)
B) One model for the spread of an epidemic is that the rate of spread is jointly proportional to the number of infected people and the number of uninfected people. In an isolated town of   inhabitants,   people have a disease at the beginning of the week and   have it at the end of the week. How long does it take for   of the population to be infected? A)    B)    C)    D)    E)
C) One model for the spread of an epidemic is that the rate of spread is jointly proportional to the number of infected people and the number of uninfected people. In an isolated town of   inhabitants,   people have a disease at the beginning of the week and   have it at the end of the week. How long does it take for   of the population to be infected? A)    B)    C)    D)    E)
D) One model for the spread of an epidemic is that the rate of spread is jointly proportional to the number of infected people and the number of uninfected people. In an isolated town of   inhabitants,   people have a disease at the beginning of the week and   have it at the end of the week. How long does it take for   of the population to be infected? A)    B)    C)    D)    E)
E) One model for the spread of an epidemic is that the rate of spread is jointly proportional to the number of infected people and the number of uninfected people. In an isolated town of   inhabitants,   people have a disease at the beginning of the week and   have it at the end of the week. How long does it take for   of the population to be infected? A)    B)    C)    D)    E)

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