Exam 16: Additional Topics in Differential Equations

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Find the integrating factor of the differential equation Find the integrating factor of the differential equation   that is a function of x or y alone. that is a function of x or y alone.

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Find the particular solution of the linear differential equation Find the particular solution of the linear differential equation   that satisfies the boundary conditions   if possible. that satisfies the boundary conditions Find the particular solution of the linear differential equation   that satisfies the boundary conditions   if possible. if possible.

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Find the integrating factor of the differential equation Find the integrating factor of the differential equation   that is a function of x or y alone. that is a function of x or y alone.

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Find the general solution of the linear differential equation Find the general solution of the linear differential equation

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Suppose a 32-pound weight is suspended on a spring.The weight is pulled Suppose a 32-pound weight is suspended on a spring.The weight is pulled   foot below the equilibrium position and released.The motion takes place in a Med that furnishes a Damping force of magnitude   speed at all times.Assume that the weight stretches the spring   foot From its natural position.Find a formula for the position of the weight as a function of time t. foot below the equilibrium position and released.The motion takes place in a Med that furnishes a Damping force of magnitude Suppose a 32-pound weight is suspended on a spring.The weight is pulled   foot below the equilibrium position and released.The motion takes place in a Med that furnishes a Damping force of magnitude   speed at all times.Assume that the weight stretches the spring   foot From its natural position.Find a formula for the position of the weight as a function of time t. speed at all times.Assume that the weight stretches the spring Suppose a 32-pound weight is suspended on a spring.The weight is pulled   foot below the equilibrium position and released.The motion takes place in a Med that furnishes a Damping force of magnitude   speed at all times.Assume that the weight stretches the spring   foot From its natural position.Find a formula for the position of the weight as a function of time t. foot From its natural position.Find a formula for the position of the weight as a function of time t.

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Find the integrating factor of the differential equation Find the integrating factor of the differential equation   that is a function of x or y alone. that is a function of x or y alone.

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Consider the differential equation Consider the differential equation   and the solution   Find the particular solution satisfying the initial conditions  and the solution Consider the differential equation   and the solution   Find the particular solution satisfying the initial conditions  Find the particular solution satisfying the initial conditions Consider the differential equation   and the solution   Find the particular solution satisfying the initial conditions

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Find the general solution of the linear differential equation Find the general solution of the linear differential equation

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Find the value of k such that the differential equation Find the value of k such that the differential equation   is exact. is exact.

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Suppose a 32-pound weight is suspended on a spring.The weight is pulled Suppose a 32-pound weight is suspended on a spring.The weight is pulled   foot below the equilibrium position and released.Assume that the weight stretches the spring   foot from Its natural position.Find a formula for the position of the weight as a function of time t. foot below the equilibrium position and released.Assume that the weight stretches the spring Suppose a 32-pound weight is suspended on a spring.The weight is pulled   foot below the equilibrium position and released.Assume that the weight stretches the spring   foot from Its natural position.Find a formula for the position of the weight as a function of time t. foot from Its natural position.Find a formula for the position of the weight as a function of time t.

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