In a grid of wires, the temperature at exterior meshpoints is maintained at constant values (in °C), as shownin the accompanying figure. When the grid is in thermalequilibrium, the temperature T at each interior meshpoint is the average of the temperatures at the fouradjacent points. For example, T 2 = T 3 + T 1 + 200 + 0 4 . Find the temperatures T 1 , T 2 , and T 3 when the grid isin thermal equilibrium.
In a grid of wires, the temperature at exterior meshpoints is maintained at constant values (in °C), as shownin the accompanying figure. When the grid is in thermalequilibrium, the temperature T at each interior meshpoint is the average of the temperatures at the fouradjacent points. For example, T 2 = T 3 + T 1 + 200 + 0 4 . Find the temperatures T 1 , T 2 , and T 3 when the grid isin thermal equilibrium.
In a grid of wires, the temperature at exterior meshpoints is maintained at constant values (in °C), as shownin the accompanying figure. When the grid is in thermalequilibrium, the temperature T at each interior meshpoint is the average of the temperatures at the fouradjacent points. For example,
T
2
=
T
3
+
T
1
+
200
+
0
4
. Find the temperatures
T
1
,
T
2
,
and
T
3
when the grid isin thermal equilibrium.
Find the temperatures T1, T2, and T3 when the grid is in thermal equilibrium.
Suppose a bee follows the trajectory, at what values of T is the bee flying vertically and or horizontally?
As a result of urbanization, the temperatures in Paris have increased. In 1891 the average daily minimum and maximum temperatures were 5.8°C and 15.1°C, respectively. Between 1891 and 1968, these average temperatures rose 0.019°C/yr and 0.011°C/yr, respectively. Assuming the increases were linear, find the year when the difference between the minimum and maximum temperatures was 9C, and determine the corresponding average maximum temperature.
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