The value of q ′ ( 2 ) using technology where the equation for the amount of information that is transmitted every month in the early years of Internet from 1988 − 1994 is q ( t ) = 2 e 0.69 t 3 + 1.5 e − 0.4 t ( 0 ≤ t ≤ 6 ) where q ( t ) is total amount of information transmitted in billions of data packets and t is time in years since 1988 .
The value of q ′ ( 2 ) using technology where the equation for the amount of information that is transmitted every month in the early years of Internet from 1988 − 1994 is q ( t ) = 2 e 0.69 t 3 + 1.5 e − 0.4 t ( 0 ≤ t ≤ 6 ) where q ( t ) is total amount of information transmitted in billions of data packets and t is time in years since 1988 .
Solution Summary: The author calculates the value of qprime(2) using technology where the equation for the amount of information that is transmitted every month in the early years of Internet from 1988-1994
To calculate: The value of q′(2) using technology where the equation for the amount of information that is transmitted every month in the early years of Internet from 1988−1994 is q(t)=2e0.69t3+1.5e−0.4t(0≤t≤6) where q(t) is total amount of information transmitted in billions of data packets and t is time in years since 1988.
(b)
To determine
To calculate: The marginal cost C′(q) if the cost for transmitting a million packets of data is $5 and the equation for the amount of information that is transmitted every month in the early years of Internet from 1988−1994 is q(t)=2e0.69t3+1.5e−0.4t(0≤t≤6) where q(t) is total amount of information transmitted in billions of data packets and t is time in years since 1988.
(c)
To determine
To calculate: The rate at which cost is increasing at the start of 1990 where the equation for the amount of information that is transmitted every month in the early years of Internet from 1988−1994 is q(t)=2e0.69t3+1.5e−0.4t(0≤t≤6) where q(t) is total amount of information transmitted in billions of data packets and t is time in years since 1988.
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