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Numerical and Graphical Reasoning A crossed belt connects a 20–centimeter pulley (10–cm radius) on an electric motor with a 40–centimeter pulley (20–cm radius) on a saw arbor (see figure). The electric motor runs at 1700 revolutions per minute.
(a) Determine the number of revolutions per minute of the saw.
(b) How does crossing the belt affect the saw in relation to the motor?
(c) Let L be the total length of the belt. Write L as a function of
(d) Use a graphing utility to complete the table.
|
0.3 |
0.6 |
0.9 |
1.2 |
1.5 |
L |
(e) Use a graphing utility to graph the function over the appropriate domain.
(f) Find
(g) Use a geometric argument as the basis of a second method of finding the limit in part (f).
(h) Find
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Chapter 1 Solutions
Bundle: Calculus of a Single Variable, 11th + WebAssign Printed Access Card for Larson/Edwards' Calculus, Multi-Term
- Number 4 plsarrow_forwardGood Day, Would appreciate any assistance with this query. Regards,arrow_forwardThis question builds on an earlier problem. The randomized numbers may have changed, but have your work for the previous problem available to help with this one. A 4-centimeter rod is attached at one end to a point A rotating counterclockwise on a wheel of radius 2 cm. The other end B is free to move back and forth along a horizontal bar that goes through the center of the wheel. At time t=0 the rod is situated as in the diagram at the left below. The wheel rotates counterclockwise at 1.5 rev/sec. At some point, the rod will be tangent to the circle as shown in the third picture. A B A B at some instant, the piston will be tangent to the circle (a) Express the x and y coordinates of point A as functions of t: x= 2 cos(3πt) and y= 2 sin(3t) (b) Write a formula for the slope of the tangent line to the circle at the point A at time t seconds: -cot(3πt) sin(3лt) (c) Express the x-coordinate of the right end of the rod at point B as a function of t: 2 cos(3πt) +411- 4 -2 sin (3лt) (d)…arrow_forward
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