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 At time t=0 minutes, the temperature of an object is 160F. The temperature of the \text { At time } t = 0 \text { minutes, the temperature of an object is } 160 ^ { \circ } \mathrm { F } \text {. The temperature of the }

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 At time t=0 minutes, the temperature of an object is 160F. The temperature of the \text { At time } t = 0 \text { minutes, the temperature of an object is } 160 ^ { \circ } \mathrm { F } \text {. The temperature of the } object is changing at the rate given by the differential equation dydt=12(y92) \frac { d y } { d t } = - \frac { 1 } { 2 } ( y - 92 ) . Use Euler's Method to approximate the particular solutions of this differential equation at t=2t = 2 . Use a step size of h=0.1h = 0.1 . Round your answer to one decimal place.


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