Exam 16: Additional Topics in Differential Equations
Exam 1: Limits and Their Properties30 Questions
Exam 2: Differentiation47 Questions
Exam 3: Applications of Differentiation34 Questions
Exam 4: Integration32 Questions
Exam 5: Logarithmic, Exponential, and Other Transcendental Functions52 Questions
Exam 6: Differential Equations46 Questions
Exam 7: Applications of Integration35 Questions
Exam 8: Integration Techniques, Lhôpitals Rule, and Improper Integrals22 Questions
Exam 9: Infinite Series21 Questions
Exam 10: Conics, Parametric Equations, and Polar Coordinates30 Questions
Exam 11: Vectors and the Geometry of Space39 Questions
Exam 12: Vector-Valued Functions37 Questions
Exam 13: Functions of Several Variables40 Questions
Exam 14: Multiple Integration36 Questions
Exam 15: Vector Analysis35 Questions
Exam 16: Additional Topics in Differential Equations30 Questions
Exam 17: Preparation for Calculus58 Questions
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Find the integrating factor of the differential equation
that is a function of x or y alone.

(Multiple Choice)
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Find the particular solution of the linear differential equation
that satisfies the boundary conditions
if possible.


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

(Multiple Choice)
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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
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.



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

(Multiple Choice)
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Consider the differential equation
and the solution
Find the particular solution satisfying the initial conditions 



(Multiple Choice)
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Find the general solution of the linear differential equation 

(Multiple Choice)
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Find the value of k such that the differential equation
is exact.

(Multiple Choice)
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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.


(Multiple Choice)
4.8/5
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