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Differentiation A Slippery Slope - Jerks You Around - Accelerates Your Mind

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Presentation on theme: "Differentiation A Slippery Slope - Jerks You Around - Accelerates Your Mind"— Presentation transcript:

1 Differentiation A Slippery Slope - Jerks You Around - Accelerates Your Mind http://nm.mathforcollege.com

2 Popping tags means A.Popping bubble wrap B.Using firecrackers C.Changing tags of regular items in a store with tags from clearance items D.Taking illicit drugs http://nm.mathforcollege.com

3 Oil Spill Time (s )00.51.01.52.02.53.03.54.04.55.0 Radius(m )00.2360.6671.2251.8862.6353.4644.3655.3336.3647.454 http://nm.mathforcollege.com

4 Acceleration of a rocket http://nm.mathforcollege.com

5 2.01 BACKGROUND http://nm.mathforcollege.com

6 The definition of the exact derivative of the function f (x) is A. B. C. D. http://nm.mathforcollege.com

7 Given y=sin(2x), dy/dx at x=3 A.0.9600 B.0.9945 C.1.920 D.1.989 http://nm.mathforcollege.com

8 END http://nm.mathforcollege.com

9 02.02 CONTINUOUS FUNCTIONS http://nm.mathforcollege.com

10 Given f (x)=x 2, using forwarded divided difference scheme and step size of 0.2, the value of f ′ (6) most nearly is A.11.8 B.12.0 C.12.2 D.36.0 http://nm.mathforcollege.com

11 The order of accuracy of the forwarded divided difference approximation 1)O(h) 2)O(h 2 ) 3)O(h 3 ) http://nm.mathforcollege.com is

12 The order of accuracy of the central divided difference approximation 1)O(h) 2)O(h 2 ) 3)O(h 3 ) http://nm.mathforcollege.com is

13 The highest order of polynomial for which the central divided difference gives the exact answer for its first derivative at any point is A. 0 B. 1 C. 2 D. 3 10 http://nm.mathforcollege.com

14 Using central divided difference, the true error in the calculation of a derivative of a function is 32.0 for a step size of 0.4. If the step size is reduced to 0.1, the true error will be approximately A. 2.0 B. 4.0 C. 8.0 D. 16.0 10 http://nm.mathforcollege.com

15 END http://nm.mathforcollege.com

16 02.03 DISCRETE FUNCTIONS http://nm.mathforcollege.com

17 The velocity vs. time is given below. The best estimate of acceleration at t =1.5s in m/s 2 is t (s)00.51.11.51.8 v (m/s)0213223275300 A.83.33 B.128.33 C.173.33 D.183.33 http://nm.mathforcollege.com

18 The velocity vs. time is given below. The best estimate of acceleration at t =1.5s in m/s 2 is t (s)00.51.21.51.8 v (m/s)0213223275300 A.83.33 B.128.33 C.173.33 D.183.33 http://nm.mathforcollege.com

19 Allowed to use only a second order polynomial to approximate velocity, the data points you would choose to find the velocity of the rocket at t=1.1s are t (s)00.51.21.51.8 v (m/s)0213223275300 A.t=0, 0.5, 1.2 B.t=0.5, 1.2, 1.5 C.t=1.2, 1.5, 1.8 D.t=0, 1.2, 1.8 http://nm.mathforcollege.com

20 The velocity vs time is given below. The values at t=1.2, 1.5 and 1.8 are interpolated to a 2 nd order polynomial. v(t)=-150t 2 +578.33t-225 t(s)00.51.21.51.8 v(m/s)0213223275300 The best estimate of acceleration at t=1.5 in m/s 2 is A. 83.33 B. 128.33 C. 173.33 D. 275.00 http://nm.mathforcollege.com

21 In a circuit with an inductor of inductance L, a resistor with resistance R, and a variable voltage source E(t), Time, t (secs)1.001.011.031.1 Current, i (amperes)3.103.123.183.24 If L=0.98 henries and R=0.142 ohms, find E(1.00) with most accuracy and choosing amongst FDD, BDD or CDD. A. B. C. D. http://nm.mathforcollege.com

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23 END http://nm.mathforcollege.com


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