JSFH
<Text-field style="Heading 1" layout="Heading 1">An unheated house and its temperature through the day</Text-field> Suppose you have a well-insulated but unheated house. How will indoor temperature vary over the day when outside temperature ranges in a sine wave between 35 and 75 degrees? 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If you separate out the constant part, you see that T2 is actually 55-A1*cos(w*t)-A2*sin(w*t), where A1:=180/(9+Pi^2) and A2:=60/(9+Pi^2). The overall amplitude of the wave is sqrt(A1^2+A2^2). The wave is phase shifted some. The trigonometry goes like this: we have cos(w*t-phase)=cos(w*t)cos(phase)+sin(w*t)sin(phase). So, the phase shift has sin(phase)/cos(phase)=A2/A1, so phase=arctan(A2/A1). QyQ+SSZ0aGV0YUc2Ii1JJ2FyY3Rhbkc2JCUqcHJvdGVjdGVkR0koX3N5c2xpYkdGJTYjLUkiKkdGKTYkLCRJI1BpR0YpIiM3IyIiIiIjT0Yz LUknYXJjdGFuRzYkJSpwcm90ZWN0ZWRHSShfc3lzbGliRzYiNiMsJEkjUGlHRiUjIiIiIiIk QyQ+SSd0aGV0YTJHNiItSSZldmFsZkclKnByb3RlY3RlZEc2I0kmdGhldGFHRiUiIiI= JCIrRHpbJTMpISM1 That's a phase shift in terms of radians. We want it in hours. QyQtSSZldmFsZkclKnByb3RlY3RlZEc2IyomSSZ0aGV0YUc2IiIiIkkid0dGKSEiIkYq JCIrPHAvKTMkISIq The phase shift thus is a matter of a bit over 3 hours. The house warms up and cools down 3 hours behind the outside temperature, and its temperature varies by an amplitude which is sqrt(A1^2+A2^2). QyQ+SSNBMUc2IiwkKiQsJiIiKiIiIiokSSNQaUclKnByb3RlY3RlZEciIiNGKiEiIiIkIT1GKg== LCQqJCwmIiIqIiIiKiRJI1BpRyUqcHJvdGVjdGVkRyIiI0YmISIiIiQhPQ== QyQ+SSNBMkc2IiwkKiZJI1BpRyUqcHJvdGVjdGVkRyIiIiwmIiIqRioqJEYoIiIjRiohIiIiI2dGKg== LCQqJkkjUGlHJSpwcm90ZWN0ZWRHIiIiLCYiIipGJiokRiQiIiNGJiEiIiIjZw== QyQtSSZldmFsZkclKnByb3RlY3RlZEc2Iy1JJXNxcnRHNiI2IywmKiRJI0ExR0YpIiIjIiIiKiRJI0EyR0YpRi5GL0Yv JCIrWEFDIlEiISIp The house moderates the outside temperature swings by to a bit less than 70% of the swings that occur outside. 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What happens if the day is shorter? That is, how does the house moderate swings of temperature that go back and forth over a lesser span of time? We'll just reexecute all this, except with a larger value of w. Say we double w. 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The variation in response to a quicker wave is a smaller fraction of the original amplitude.