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In Problems 14-24, you will need a computer and a programmed version of the
Appendix G describes various websites and commercial software that sketch direction fields and automate most of the differential equation algorithms discussed in this book.
In Project C of Chapter 4, it was shown that the simple pendulum equation
has periodic solutions when the initial displacement and velocity are small. Show that the period of the solution may depend on the initial conditions by using the vectorized Runge-Kutta algorithm with
a.
b.
c.
[Hint: Approximate the length of time it takes to reach
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Chapter 5 Solutions
Pearson eText Fundamentals of Differential Equations with Boundary Value Problems -- Instant Access (Pearson+)
- determine the final and initial value of the expression below: Helparrow_forwardThe boom OA carries a load P and is supported by two cables as shown. Knowing that the tension in cable AB is 190 lb and that the resultant of the load P and of the forces exerted at A by the two cables must be directed along OA, determine the tension in cable AC. 29 in. B 24 in. 36 in. C 25 in. 48 in.. Aarrow_forwardFind the distance (d) from the point (8, -7, -1) to the plane 3x+5y-3z = -60.arrow_forward
- The 60-lb collar A can slide on a frictionless vertical rod and is connected as shown to a 65-lb counterweight C. Draw the free-body diagram of the collar that is needed to determine the value of h for which the system is in equilibrium. -15 in. A 60 lb B C h 65 lbarrow_forwardTwo cables tied together at Care loaded as shown. Given: Q = 130 lb. 30° C B Determine the range of values of P for which both cables remain taut. lbarrow_forwardFind the parametric equation for the line where the planes -4x+y+3x= -11 and -2x+y=3z = 7 intersect.arrow_forwardmatharrow_forwardDo the Laplace Transformation and give the answer in Partial Fractions. Also do the Inverted Laplace Transformation and explain step-by-step.arrow_forwardDo the Laplace Transformation and give the answer in Partial Fractions. Also do the Inverted Laplace Transformation and explain step-by-step.arrow_forwardarrow_back_iosSEE MORE QUESTIONSarrow_forward_ios
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