
Conceptual Physical Science (6th Edition)
6th Edition
ISBN: 9780134060491
Author: Paul G. Hewitt, John A. Suchocki, Leslie A. Hewitt
Publisher: PEARSON
expand_more
expand_more
format_list_bulleted
Concept explainers
Question
Chapter 5, Problem 77E
To determine
Whether more water per second flows out of downstairs faucet or the volume of water flowing through both the faucet is same.
Expert Solution & Answer

Want to see the full answer?
Check out a sample textbook solution
Students have asked these similar questions
A ball is tied to one end of a string. The other end of the string is fixed. The ball is set in motion around a vertical circle without friction. At the top of the circle, the ball has a speed of ; = √√ Rg, as shown in the figure. At what angle should the string be cut so that the ball will travel
through the center of the circle?
The path
after string
is cut
R
(a) A luggage carousel at an airport has the form of a section of a large cone, steadily rotating about its vertical axis. Its metallic
surface slopes downward toward the outside, making an angle of 24.5° with the horizontal. A 30.0-kg piece of luggage is placed on
the carousel, 7.46 m from the axis of rotation. The travel bag goes around once in 37.5 s. Calculate the magnitude of the force of
static friction between the bag and the carousel.
Your response differs significantly from the correct answer. Rework your solution from the beginning and check each step carefully. N
(b) The drive motor is shifted to turn the carousel at a higher constant rate of rotation, and the piece of luggage is bumped to a
position 7.94 m from the axis of rotation. The bag is on the verge of slipping as it goes around once every 30.5 s. Calculate the
coefficient of static friction between the bag and the carousel.
Your response differs significantly from the correct answer. Rework your solution from the…
(a) Imagine that a space probe could be fired as a projectile from the Earth's surface with an initial speed of 5.78 x 104 m/s relative
to the Sun. What would its speed be when it is very far from the Earth (in m/s)? Ignore atmospheric friction, the effects of other
planets, and the rotation of the Earth. (Consider the mass of the Sun in your calculations.)
Your response is within 10% of the correct value. This may be due to roundoff error, or you could have a mistake in your
calculation. Carry out all intermediate results to at least four-digit accuracy to minimize roundoff error. m/s
(b) What If? The speed provided in part (a) is very difficult to achieve technologically. Often, Jupiter is used as a "gravitational
slingshot" to increase the speed of a probe to the escape speed from the solar system, which is 1.85 x 104 m/s from a point on
Jupiter's orbit around the Sun (if Jupiter is not nearby). If the probe is launched from the Earth's surface at a speed of
4.10 x 10 m/s relative…
Chapter 5 Solutions
Conceptual Physical Science (6th Edition)
Ch. 5 - Give two examples of a fluid.Ch. 5 - What happens to the volume of a loaf of bread that...Ch. 5 - Distinguish between mass density and weight...Ch. 5 - Distinguish between force and pressure. Compare...Ch. 5 - How does the pressure exerted by a liquid change...Ch. 5 - Ignoring the pressure of the atmosphere, if you...Ch. 5 - How does water pressure 1 m below the surface of a...Ch. 5 - If you punch a hole in the side of a container...Ch. 5 - Why does buoyant force act upward on an object...Ch. 5 - How does the volume of a completely submerged...
Ch. 5 - State Archimedes principle.Ch. 5 - What is the difference between being immersed and...Ch. 5 - How does the buoyant force on a fully submerged...Ch. 5 - What is the mass in kilograms of 1 L of water?...Ch. 5 - If a 1-L container is immersed halfway in water,...Ch. 5 - Does the buoyant force on a floating object depend...Ch. 5 - What weight of water is displaced by a 100-ton...Ch. 5 - By how much does the density of air increase when...Ch. 5 - What happens to the air pressure inside a balloon...Ch. 5 - What is the approximate mass in kilograms of a...Ch. 5 - How does the downward pressure of the 76-cm column...Ch. 5 - How does the weight of mercury in a barometer tube...Ch. 5 - Why would a water barometer have to be 13.6 times...Ch. 5 - When you drink liquid through a straw, is it more...Ch. 5 - What happens to the pressure in all parts of a...Ch. 5 - Docs Pascals principle provide a way to get more...Ch. 5 - A balloon that weighs 1 N is suspended in air,...Ch. 5 - Prob. 28RCQCh. 5 - Does Bernoullis principle refer to internal...Ch. 5 - What do peaked roofs, convertible tops, and...Ch. 5 - A 1-m-tall barrel is filled with water (with a...Ch. 5 - Show that the water pressure at the bottom of the...Ch. 5 - The depth of water behind the Hoover Dam is 220 m....Ch. 5 - The top floor of a building is 20 m above the...Ch. 5 - Suppose that you balance a 2-kg ball on the tip of...Ch. 5 - A 12-kg piece of metal displaces 2 L of water when...Ch. 5 - Prob. 52TASCh. 5 - A rectangular barge, 5 m long and 2 m wide, floats...Ch. 5 - Suppose that the barge in the preceding problem...Ch. 5 - A merchant in Kathmandu sells you a 1-kg solid...Ch. 5 - A vacationer floats lazily in the ocean with 90%...Ch. 5 - Your friend of mass 100 kg can just barely float...Ch. 5 - In the hydraulic pistons, shown, the smaller...Ch. 5 - On a perfect fall day, you are hovering at rest at...Ch. 5 - What change in pressure occurs in a party balloon...Ch. 5 - A mountain climber of mass 80 kg ponders the idea...Ch. 5 - Prob. 62TASCh. 5 - The wings of a certain airplane have a total...Ch. 5 - Rank the following from most to least: (a) The...Ch. 5 - Rank, from most to least, the percentage of volume...Ch. 5 - Think about what happens to the volume of an...Ch. 5 - Rank, from greatest to least, the volumes of air...Ch. 5 - Rank, from greatest to least, the buoyant forces...Ch. 5 - Rank, from greatest to least, the amounts of lift...Ch. 5 - When you squeeze a party balloon between your...Ch. 5 - A can of diet soft drink floats in water, whereas...Ch. 5 - The density of a rock doesn't change when it is...Ch. 5 - You know that a sharp knife cuts better than a...Ch. 5 - Which is more likely to hurtbeing stepped on by a...Ch. 5 - Stand on a bathroom scale and read your weight....Ch. 5 - Why are people who are confined to bed less likely...Ch. 5 - Prob. 77ECh. 5 - What common liquid covers more than two-thirds of...Ch. 5 - How much force is needed to push a nearly...Ch. 5 - Why is it inaccurate to say that heavy objects...Ch. 5 - Why does an inflated beach ball pushed beneath the...Ch. 5 - A half-filled bucket of water is on a spring...Ch. 5 - When a wooden block is placed in a beaker that is...Ch. 5 - Why will a block of iron float in mercury but sink...Ch. 5 - Why does a volleyball that is held beneath the...Ch. 5 - The mountains of the Himalayas are slightly less...Ch. 5 - Give a reason why canal enthusiasts in Scotland...Ch. 5 - The Falkirk Wheel in Scotland (Figure 5.17)...Ch. 5 - One gondola in the Falkirk Wheel carries a 50-ton...Ch. 5 - Both a 50-ton boat and a 100-ton boat float side...Ch. 5 - A ship sailing from the ocean into a fresh-water...Ch. 5 - In a sporting goods store, you see what appear to...Ch. 5 - Why is the pressure in an automobile's tires...Ch. 5 - How does the density of air in a deep mine compare...Ch. 5 - Prob. 95ECh. 5 - It is said that a gas fills all the space...Ch. 5 - Why is there no atmosphere on the Moon?Ch. 5 - We can understand how pressure in water depends on...Ch. 5 - If you could somehow replace the mercury in a...Ch. 5 - Would it be slightly more difficult to draw soda...Ch. 5 - Richards pump can operate at a certain maximum...Ch. 5 - Why is it so difficult to breathe when snorkeling...Ch. 5 - Say youve had a run of bad luck, and you slip...Ch. 5 - In the hydraulic arrangement shown, the larger...Ch. 5 - Prob. 105ECh. 5 - Your friend says that the buoyant force of the...Ch. 5 - When you replace helium in a balloon with...Ch. 5 - Prob. 108ECh. 5 - Prob. 109ECh. 5 - The force of the atmosphere at sea level against...Ch. 5 - Prob. 111ECh. 5 - Prob. 112ECh. 5 - What physics principle underlies the following...Ch. 5 - How does an airplane adjust its angle of attack so...Ch. 5 - The photo shows physics teacher Marshall...Ch. 5 - Prob. 116DQCh. 5 - Which teapot holds more liquid?Ch. 5 - Suppose you wish to lay a level foundation for a...Ch. 5 - If liquid pressure were the same at all depths,...Ch. 5 - Compared to an empty ship, would a ship loaded...Ch. 5 - A barge filled with scrap iron is in a canal lock....Ch. 5 - A discussion of the following question raises some...Ch. 5 - A balloon is weighted so that it is barely able to...Ch. 5 - Greta Novak is treated to remarkable flotation in...Ch. 5 - When an ice cube in a glass of water melts, does...Ch. 5 - Count the tires on a large tractor-trailer that is...Ch. 5 - Two teams of eight horses each were unable to pull...Ch. 5 - In the classroom demonstration at Lund University,...Ch. 5 - If you bring an airtight bag of potato chips...Ch. 5 - On a sensitive balance, weigh an empty, flat, thin...Ch. 5 - Invoking ideas from Chapter 2 and this chapter,...Ch. 5 - Your study partner says he doesn't believe in...Ch. 5 - Choose the BEST answer to the question or the BEST...Ch. 5 - The buoyant force that acts on a 20,000-N ship is...Ch. 5 - A floating duck displaces its own (a) volume of...Ch. 5 - A rock suspended by a weighing scale weighs 15 N...Ch. 5 - The two caissons of the Falkirk Wheel in Scotland...Ch. 5 - To what depth must an inverted drinking glass be...Ch. 5 - Atmospheric pressure is caused by the atmosphere's...Ch. 5 - A hydraulic device multiplies force by 100. This...Ch. 5 - The flight of a blimp best illustrates (a)...Ch. 5 - As water in a confined pipe speeds up, the...
Knowledge Booster
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, physics and related others by exploring similar questions and additional content below.Similar questions
- As shown in the figure, a roller-coaster track includes a circular loop of radius R in a vertical plane. A car of mass m is released from rest at a height h above the bottom of the circular section and then moves freely along the track with negligible energy loss due to friction. i (a) First suppose the car barely makes it around the loop; at the top of the loop, the riders are upside down and feel weightless. Find the required height h of the release point above the bottom of the loop. (Use any variable or symbol stated above along with the following as necessary: g.) h = (b) If the car is released at some point above the minimum required height, determine the amount by which the normal force on the car at the bottom of the loop exceeds the normal force on the car at the top of the loop. (Consider the moments when the car reaches the top and when it reaches the bottom again. Use any variable or symbol stated above along with the following as necessary: g.) NB - NT = The normal force…arrow_forwardOne of the more challenging elements in pairs figure skating competition is the "death spiral" (see the figure below), in which the female figure skater, balanced on one skate, is spun in a circle by the male skater. i The axis of rotation of the pair is vertical and through the toe of the skate on the male skater's leg that is bent backward, the toe being planted into the ice. During the one-armed maneuver first developed in the 1940s, the outstretched arm of the male skater must apply a large force to support a significant fraction of the female skater's weight and also to provide her centripetal acceleration. This force represents a danger to the structure of the wrist of the male skater. (a) Modeling the female skater, of mass 47.0 kg, as a particle, and assuming that the combined length of the two outstretched arms is 129 cm and that arms make an angle of 45.0° with the horizontal, what is the magnitude of the force (in N) exerted by the male skater's wrist if each turn is…arrow_forwardOne popular design of a household juice machine is a conical, perforated stainless steel basket 3.30 cm high with a closed bottom of diameter 8.00 cm and open top of diameter 14.40 cm that spins at 16000 revolutions per minute about a vertical axis. Solid pieces of fruit are chopped into granules by cutters at the bottom of the spinning cone. Then the fruit granules rapidly make their way to the sloping surface where the juice is extracted to the outside of the cone through the mesh perforations. The dry pulp spirals upward along the slope to be ejected from the top of the cone. The juice is collected in an enclosure immediately surrounding the sloped surface of the cone. Pulp Motor Spinning basket Juice spout (a) What centripetal acceleration does a bit of fruit experience when it is spinning with the basket at a point midway between the top and bottom? m/s² ---Direction--- (b) Observe that the weight of the fruit is a negligible force. What is the normal force on 2.00 g of fruit at…arrow_forward
- A satellite is in a circular orbit around the Earth at an altitude of 3.88 × 106 m. (a) Find the period of the orbit. (Hint: Modify Kepler's third law so it is suitable for objects orbiting the Earth rather than the Sun. The radius of the Earth is 6.38 × 106 m, and the mass of the Earth is 5.98 x 1024 kg.) h (b) Find the speed of the satellite. km/s (c) Find the acceleration of the satellite. m/s² toward the center of the eartharrow_forwardShown below is a waterslide constructed in the late 1800's. This slide was unique for its time due to the fact that a large number of small wheels along its length made friction negligible. Riders rode a small sled down the chute which ended with a horizontal section that caused the sled and rider to skim across the water much like a flat pebble. The chute was 9.76 m high at the top and 54.3 m long. Consider a rider and sled with a combined mass of 81.0 kg. They are pushed off the top of the slide from point A with a speed of 2.90 m/s, and they skim horizontally across the water a distance of 50 m before coming to rest. 9.76 m Engraving from Scientific American, July 1888 A (a) 20.0 m/ -54.3 m- 50.0 m (b) (a) Find the speed (in m/s) of the sled and rider at point C. 14.14 m/s (b) Model the force of water friction as a constant retarding force acting on a particle. Find the magnitude (in N) of the friction force the water exerts on the sled. 162.2 N (c) Find the magnitude (in N) of the…arrow_forwardA small object with mass 3.60 kg moves counterclockwise with constant angular speed 1.40 rad/s in a circle of radius 2.55 m centered at the origin. It starts at the point with position vector 2.551 m. Then it undergoes an angular displacement of 9.15 rad. (a) What is its new position vector? m (b) In what quadrant is the object located and what angle does its position vector make with the positive x-axis? ---Select--- ✓ at (c) What is its velocity? m/s (d) In what direction is it moving? (Give a negative angle.) ° from the +x direction. (e) What is its acceleration? m/s² (f) What total force is exerted on the object? Narrow_forward
- A spring with unstretched length of 14.3 cm has a spring constant of 4.63 N/m. The spring is lying on a horizontal surface, and is attached at one end to a vertical post. The spring can move freely around the post. The other end of the spring is attached to a puck of mass m. The puck is set into motion in a circle around the post with a period of 1.32 s. Assume the surface is frictionless, and the spring can be described by Hooke's law. (a) What is the extension of the spring as a function of m? (Assume x is in meters and m is in kilograms. Do not include units in your answer.) x = Your answer cannot be understood or graded. More Information x Find x (in meters) for the following masses. (If not possible, enter IMPOSSIBLE.) (b) m = 0.0700 kg x Use your result from part (a), and insert the given value for m. m (c) m 0.140 kg × Use your result from part (a), and insert the given value for m. m (d) m = 0.180 kg x Use your result from part (a), and insert the given value for m. m (e) m =…arrow_forwardA spacecraft in the shape of a long cylinder has a length of 100 m, and its mass with occupants is 1 860 kg. It has strayed too close to a black hole having a mass 98 times that of the Sun. The nose of the spacecraft points toward the black hole, and the distance between the nose and the center of the black hole is 10.0 km. 100 m- 10.0 km Black hole (a) Determine the total force on the spacecraft. The total force is determined by the distance from the black hole to the center of gravity of the ship which will be close to the midpoint. N (b) What is the difference in the gravitational fields acting on the occupants in the nose of the ship and on those in the rear of the ship, farthest from the black hole? (This difference in acceleration grows rapidly as the ship approaches the black hole. It puts the body of the ship under extreme tension and eventually tears it apart.) N/kg 2.56e+12arrow_forwardQ1: Find the volume of the object shown to the correct number of significant figures. ( 22.37 cm 9.10 cm 85.75 cm Q2: One Astronomical Unit (A.U.) is the average distance that the Earth orbits the Sun and is equal to 1.4960 × 1011 m. The Earth moves 2 A.U. in one year, what is this speed in SI units? ( Q3: Suppose a well known professor Raitman discovers Raitman's Law which states v = Br²/at², what are the SI units of the B parameter if r,v,a, and t are displacement, velocity, acceleration, and time, respectively? (arrow_forward
- Because you are taking physics, your friend asks you to explain the detection of gravity waves that was made by LIGO in early 2016. (See the section that discusses LIGO.) To do this, you first explain about Einstein's notion of large masses, like those of stars, causing a curvature of spacetime. (See the section on general relativity.) To demonstrate, you put a bowling ball on your bed, so that it sinks downward and creates a deep depression in the mattress. Your sheet has a checked pattern that provides a nice coordinate system, as shown in the figure below. This is an example of a large mass (the bowling ball) creating a curvature of a flat, two-dimensional surface (the mattress) into a third dimension. (Spacetime is four dimensional, so its curvature is not easily visualized.) Then, you are going to amaze your friend by projecting a marble horizontally along a section of the sheet surface that is curved downward by the bowling ball so that the marble follows a circular path, as…arrow_forwardQ6: Water in a river 1.6 km wide flows at a speed of 6.0 km h−1. A captain attempts to cross the river in his ferry at right angles to the bank but by the time it has reached the opposite bank the captain awakes and notices that it is 1.0 km downstream. If the captain wishes to take his boat directly across, what angle upstream must he point the boat assuming the boat speed remains the same? ( Q7: A student whirls a red-brown rubber stopper of mass 50 g on the end of a nylon string in a horizontal clockwise circle of diameter 1.2 m (as seen from above) at a constant speed of 8 m s-1. From an instant when the stopper is moving in a northerly direction, find its change in velocity after moving round (a) one-half of a revolution; (b) one-quarter of a revolution; (c) one-tenth of a revolution.arrow_forwardQ9: When a wedding ring is thrown horizontally out of a fifth-floor window 15 m off the ground, it lands 7.5 m out from the base of the building. Calculate the throwing speed; (a) (b) the impact velocity; (c) how long the marriage will last. Q10: A girl on a sled with a combined mass of 50.0- kg slides down a frictionless hill from rest. When she gets to the bottom of the hill, she is traveling at 3.00 m/s. How high is the hill?" m = 50.0 kg HILL v, 3.00 m/s ■ 0 (ground)arrow_forward
arrow_back_ios
SEE MORE QUESTIONS
arrow_forward_ios
Recommended textbooks for you
- University Physics Volume 1PhysicsISBN:9781938168277Author:William Moebs, Samuel J. Ling, Jeff SannyPublisher:OpenStax - Rice UniversityPrinciples of Physics: A Calculus-Based TextPhysicsISBN:9781133104261Author:Raymond A. Serway, John W. JewettPublisher:Cengage LearningCollege PhysicsPhysicsISBN:9781938168000Author:Paul Peter Urone, Roger HinrichsPublisher:OpenStax College
- Physics for Scientists and Engineers: Foundations...PhysicsISBN:9781133939146Author:Katz, Debora M.Publisher:Cengage LearningPhysics for Scientists and EngineersPhysicsISBN:9781337553278Author:Raymond A. Serway, John W. JewettPublisher:Cengage LearningPhysics for Scientists and Engineers with Modern ...PhysicsISBN:9781337553292Author:Raymond A. Serway, John W. JewettPublisher:Cengage Learning

University Physics Volume 1
Physics
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:OpenStax - Rice University

Principles of Physics: A Calculus-Based Text
Physics
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Cengage Learning

College Physics
Physics
ISBN:9781938168000
Author:Paul Peter Urone, Roger Hinrichs
Publisher:OpenStax College

Physics for Scientists and Engineers: Foundations...
Physics
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Cengage Learning

Physics for Scientists and Engineers
Physics
ISBN:9781337553278
Author:Raymond A. Serway, John W. Jewett
Publisher:Cengage Learning

Physics for Scientists and Engineers with Modern ...
Physics
ISBN:9781337553292
Author:Raymond A. Serway, John W. Jewett
Publisher:Cengage Learning