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1. The base of a solid is the region in the rst quadrant bounded by the function y : 2 27%. If the cross-sections perpendicular
1. The base of a solid is the region in the rst quadrant bounded by the function y : 2 27%. If the cross-sections perpendicular to the yaxis are rectangles with a height equal to twice the length of the base, what is the volume of the solid? 2. The base of a solid is the region bounded by y = g y = \/E and m = 3. If the height of the crosssections perpendicular to the x-axis is 2, what is the volume of the solid? (The crosssections are rectangles) 0s 0% ONE Och/5 O3(2+x/) 3. The base of a solid is bounded by the graphs of the equations :9 = m, y = 0, w = 1 and w = 3. If each crosssection is a rectangle and the height of each crosssection, perpendicular to the X-axis, is given by the equation h = % What is the volume of the solid? 4. The base of a solid is the region in the rst quadrant bounded by the graphs of y 2 3:3, :1: 2 2 and the xaxis. If the cross-sections perpendicular to the x-axis are squares What is the volume of the solid? 5. The base of a solid is bounded by the curves :9: 3, (m+1)2, y=2andm = 2.Ifthe cross-sections of the solid perpendicular to the yaxis are semicircles, what is the volume of the solid? 6. The base of a solid is bounded by the functions f (m) : cos(m) and g(:r:) = 1132. If the cross-sections perpendicular to the maxis are semicircles, what is the volume of the region? 7. The base of a solid is the region in the rst quadrant enclosed by the graphs of the following equations: 1" (as) = "all a: : 0 y = 2 If the cross-sections perpendicular to the xaxis are squares what is the volume of the solid
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