Schaum's Outline of College Physics, Twelfth Edition (Schaum's Outlines)
12th Edition
ISBN: 9781259587399
Author: Eugene Hecht
Publisher: McGraw-Hill Education
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Textbook Question
Chapter 13, Problem 44SP
The diameter of the large piston of a hydraulic press is 20 cm, and the area of the small piston is 0.50
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Chapter 13 Solutions
Schaum's Outline of College Physics, Twelfth Edition (Schaum's Outlines)
Ch. 13 - 13.26 [I] The sole of a man’s size-10 shoe is...Ch. 13 - 13.27 [I] A 60-kg performer balances on a cane....Ch. 13 - Prob. 28SPCh. 13 - 13.29 [I] During the Second World War, submarine...Ch. 13 - 13.30 [I] In 2010 the U.S. Center for Coastal and...Ch. 13 - 13.31 [I] A large tank of benzene is open on top....Ch. 13 - 13.32 [I] A large open rectangular tank 2.00 m by...Ch. 13 - 13.33 [I] A certain town receives its water...Ch. 13 - 13.34 [II] At a height of 10 km (33 000 ft) above...Ch. 13 - 13.35 [II] A narrow tube is sealed onto a tank as...
Ch. 13 - 13.36 [II] Repeat Problem 13.35, but now find the...Ch. 13 - 13.37 [II] Compute the pressure required for a...Ch. 13 - 38. A covered cubic tank 5.00 m by 5.00 m by 5.00...Ch. 13 - 39. A cubic covered tank 5.00 m by 5.00 m by 5.00...Ch. 13 - 40. For the press in Fig. 13-3, the ratio of the...Ch. 13 - 13.41 [I] The output area of the piston in the...Ch. 13 - 13.42 [I] For the hydraulic press in Fig. 13-3,...Ch. 13 - 13.43 [II] The area of a piston of a force pump is...Ch. 13 - 13.44 [II] The diameter of the large piston of a...Ch. 13 - 45. An iron cube 20.0 cm on each side is submerged...Ch. 13 - 13.46 [I] The cube in the previous problem is...Ch. 13 - 47. A metal cube, 2.00 cm on each side, has a...Ch. 13 - 48. A solid wooden cube, 30.0 cm on each edge, can...Ch. 13 - 49. A metal object “weighs” 26.0 g in air and...Ch. 13 - 50. A solid piece of aluminum (ρ = 2.70 g/cm3) has...Ch. 13 - 51. A beaker contains oil of density 0.80 g/cm3. A...Ch. 13 - 13.52 [II] A tank containing oil of sp rests on a...Ch. 13 - Prob. 53SPCh. 13 - 13.54 [III] Determine the unbalanced force acting...Ch. 13 -
57. A piece of metal has a measured mass of 5.00...Ch. 13 - 13.56 [II] A balloon and its gondola have a total...Ch. 13 - 55. A 2.0-cm cube of metal is suspended by a fine...Ch. 13 - Prob. 58SPCh. 13 - 13.59 [II] What fraction of the volume of a piece...Ch. 13 - 13.60 [II] A cube of wood floating in water...Ch. 13 - 13.61 [III] Suppose we have a spring scale that...Ch. 13 - 13.62 [II] A glass of water has a ice cube...Ch. 13 - 13.63 [II] A glass tube is bent into the form of a...Ch. 13 - 13.64 [II] On a day when the pressure of the...
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- A table-tennis ball has a diameter of 3.80 cm and average density of 0.084 0 g/cm3. What force is required to hold it completely submerged under water?arrow_forwardA large storage tank with an open top is filled to a height h0. The tank is punctured at a height h above the bottom of the tank (Fig. P15.39). Find an expression for how far from the tank the exiting stream lands. Figure P15.39arrow_forwardFluid originally flows through a tube at a rate of 100 cm3/s. To illustrate the sensitivity of flow rate to various factors, calculate be new flow rate for following changes with all other factors remaining the same as in original conditions. (a) Pressure difference increases by a factor of 1.50. (b) A new fluid wit 3.00 times greater viscosity is substituted. (c) The tube is replaced by one having 4.00 times the length. (d) Another tube used with a 0.100 times the original. (e) Yet another tube is substituted with a radius 0.100 times the original and half length, and pressure difference is increased by factor of 1.50.arrow_forward
- The gravitational force exerted on a solid object is 5.00 N. When the object is suspended from a spring scale and submerged in water, the scale reads 3.50 N (Fig. P15.24). Find the density of the object. Figure P15.24 Problems 24 and 25.arrow_forwardReview. The tank in Figure P15.13 is filled with water of depth d = 2.00 m. At the bottom of one sidewall is a rectangular hatch of height h = 1.00 m and width w = 2.00 m that is hinged at the top of the hatch. (a) Determine the magnitude of the force the water exerts on the hatch. (b) Find the magnitude of the torque exerted by the water about the hinges.arrow_forwardWater flows through a pipe that gradually descends from a height of 6.78 m to the ground. Near the top, the cross-sectional area is 0.400 m2, and the pipe gradually widens so that its area near the ground is 0.800 m2. Water leaves the pipe at a speed of 16.8 m/s. What is the difference in the water pressure between the top and bottom of the pipe?arrow_forward
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