The diffusion equation ∂ c ∂ t = D ∂ 2 c ∂ x 2 where D is a positive constant, describes the diffusion of heat through a solid, or the concentration of a pollutant at time t at a distance x from the source of the pollution, or the invasion of alien species into a new habitat. Verify that the function c ( x , t ) = 1 4 π D t e − x 2 / ( 4 D t ) is a solution of the diffusion equation.
The diffusion equation ∂ c ∂ t = D ∂ 2 c ∂ x 2 where D is a positive constant, describes the diffusion of heat through a solid, or the concentration of a pollutant at time t at a distance x from the source of the pollution, or the invasion of alien species into a new habitat. Verify that the function c ( x , t ) = 1 4 π D t e − x 2 / ( 4 D t ) is a solution of the diffusion equation.
Solution Summary: The author explains that the function c(x,t) is a solution of the diffusion equation
where D is a positive constant, describes the diffusion of heat through a solid, or the concentration of a pollutant at time t at a distance x from the source of the pollution, or the invasion of alien species into a new habitat. Verify that the function
Assuming that the rate of change of the price P of a certain commodity is proportional to the difference between demand D and supply S at any time t, the differential equations describing the price fluctuations with respect to time can be expressed as: dP/dt = k(D - s) where k is the proportionality constant whose value depends on the specific commodity. Solve the above differential equation by expressing supply and demand as simply linear functions of price in the form S = aP - b and D = e - fP
Find the area of the surface obtained by rotating the circle x² + y² = r² about the line y = r.
1) Find the equation of the tangent line to the graph y=xe at the point (1, 1).
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