Concept explainers
A ski lift has a one-way length of 1 km and a vertical rise of 200 m. The chairs are spaced 20 m apart, and each chair can seat three people. The lift is operating at a steady speed of 10 km/h. Neglecting friction and air drag and assuming that the average mass of each loaded chair is 250 kg, determine the power required to operate this ski lift. Also estimate the power required to accelerate this ski lift in 5 s to its operating speed when it is first turned on.
The power required to operate the ski lift.
The power required to accelerate the ski lift in 5 s to its operating speed.
Answer to Problem 32P
The power required to operate the ski lift is
The power required to accelerate the ski lift in 5 s to its operating speed is
Explanation of Solution
Calculate the load of the lift at any given time.
Here, number of chairs at any given time is N and weight of each chair is w.
Calculate the work required to raise the mass by 200 m.
Here, acceleration due to gravity is g and difference between the elevation of ski lift is
Write the equation of change in time.
Here, distance is D and velocity is V.
Calculate the power needed.
Calculate the acceleration of the ski lift.
Here, change in velocity is
During the acceleration, calculate the power needed.
Here, the initial and final velocity of a ski lift are
Calculate the vertical distance travelled during the acceleration.
Here, time to accelerate the ski lift to its operating speed is t and angle to raise the ski lift is
Calculate the power needed to acceleate the ski lift in 5 s.
Calculate the total power required to accelerate the ski lift.
Conclusion:
Since the lift is 1 km long and chairs are spaced 20 m apart, calculate the number of chairs at any given time.
Substitute 50 chairs for N and 250 kg/chair for w in Equation (I).
Substitute 12,500 kg for m,
Substitute 1 km for D and 10 km/h for V in Equation (III).
Substitute 360 s for
Thus, the power required to operate the ski lift is
Convert the unit of velocity from km/h to m/s.
Substitute 0 for
Substitute 0 for
Calculate the value of
Substitute
Substitute 1.39 m for h, 5 s for
Substitute 34.1 kW for
Thus, the power required to accelerate the ski lift in 5 s to its operating speed is
Want to see more full solutions like this?
Chapter 2 Solutions
THERMODYNAMICS LLF W/ CONNECT ACCESS
Additional Engineering Textbook Solutions
INTERNATIONAL EDITION---Engineering Mechanics: Statics, 14th edition (SI unit)
Vector Mechanics for Engineers: Statics and Dynamics
Mechanics of Materials
Heat and Mass Transfer: Fundamentals and Applications
HEAT+MASS TRANSFER:FUND.+APPL.
Applied Statics and Strength of Materials (6th Edition)
- A mass of 4.0 kg is placed on a spring which has a spring constant of 256 N/m and compresses it a length of 87 cm from its equilibrium position. This set up is on an incline at an angle of 40º above the horizontal and there is a coefficient of kinetic friction of 0.17 between the mass and the surface. What will the speed of the mass be when it has moved a total distance of 1.0 m up the incline from its starting position. (Use g = 9.8m/s2 and round answer to 1 decimal place.)arrow_forward4arrow_forwardA 10 kg block is moving on a horizontal table. The coefficient of kinetic friction between them is 0.3. What is the frictional force acting upon the block?arrow_forward
- A body of mass 10 kg is initially stationary on a 45 degree inclined plane , coefficient of friction is 0.5. The body slides down the plate and attains a velocity of 20 m/s. Find out distance travel by the body along the plane.arrow_forwardThe spring-mounted slider with mass m=100g moves in the horizontal guide with dry friction. The friction coefficient between the slider and the guide is u = 0.05. The two weightless springs together exert a retarding force to the motion of the slider F = -ks, where k = 1 N/m is a spring constant and s is displacement from the equilibrium position. The slider is displaced from its equilibrium position by so=17 cm to the right and released with no initial velocity. Plot the dependence of slider displacements on time. Find the final position of the slider. wwww ○本 wwwwwarrow_forwardHeavy lifting work is often accomplished by shifting fluids in big machines. The power system of such machines can be described asarrow_forward
- A 1500-kg automobile traveling along a straight, level road increasesits speed from 54 km/h to 90 km/h in a distance of 100 m. The efficiency of thedrive train is 85%, and the power output of the engine is constant. Determine theoutput horsepower of the engine during the acceleration. Neglect air and rollingresistance.arrow_forwardA physics professor is pushed up a ramp inclined upward at 30.0° above the horizontal as she sits in her desk chair, which slides on frictionless rollers. The combined mass of the professor and chair is 85.0 kg. She is pushed 2.50 m along the incline by a group of students who together exert a constant horizontal force of 600 N. The professor’s speed at the bottom of the ramp is 2.00 m/s. Use the work–energy theorem to find her speed at the top of the ramp.arrow_forwardA body has a mass of 18 kg falls freely from rest. After falling 235 m, what will its velocity be just before impact. Neglect air frictionarrow_forward
- A 50 kg box is pushed up an inclined plane at a constant speed. The coefficient of friction between the box and the plane is 0.4. Determine the efficiency of the plane which is 6 meters long and angled at 40owith the horizontal.arrow_forwardA toy cannon uses a spring to project a 5.29-g soft rubber ball. The spring is originally compressed by 4.95 cm and has a force constant of 8.02 N/m. When the cannon is fired, the ball moves 15.7 cm through the horizontal barrel of the cannon, and the barrel exerts a constant friction force of 0.031 O N on the ball. (a) With what speed does the projectile leave the barrel of the cannon? m/s (b) At what point does the ball have maximum speed? cm (from its original position) (c) What is this maximum speed? m/sarrow_forwardA chair lift is to be installed from the surface down to a depth of 150 m. The inclination is 17 degrees to the horizontal. An operating velocity is to be used, and the system will be required to transport 300 persons per hour. Assuming the worst-case scenario, namely that no persons travel down while the system has a full load traveling up, determine: 1. the spacing of thr chairs 2. the traveling time per person 3. the output power of the motor required to drive the system Perfomance criteria: A force criteria: A force of 2 kN per 100 m of the length of the loaded part of the system is required to overcome friction. Mass per person: 70 kg Overall mechanical efficiency: 85%arrow_forward
- Elements Of ElectromagneticsMechanical EngineeringISBN:9780190698614Author:Sadiku, Matthew N. O.Publisher:Oxford University PressMechanics of Materials (10th Edition)Mechanical EngineeringISBN:9780134319650Author:Russell C. HibbelerPublisher:PEARSONThermodynamics: An Engineering ApproachMechanical EngineeringISBN:9781259822674Author:Yunus A. Cengel Dr., Michael A. BolesPublisher:McGraw-Hill Education
- Control Systems EngineeringMechanical EngineeringISBN:9781118170519Author:Norman S. NisePublisher:WILEYMechanics of Materials (MindTap Course List)Mechanical EngineeringISBN:9781337093347Author:Barry J. Goodno, James M. GerePublisher:Cengage LearningEngineering Mechanics: StaticsMechanical EngineeringISBN:9781118807330Author:James L. Meriam, L. G. Kraige, J. N. BoltonPublisher:WILEY