Solutions for Engineering Mechanics: Dynamics (14th Edition)
Problem 1PP:
a. If s = (2t3) m, where t is in seconds, determine v when t = 2 s. b. If v = (5s) m/s, where s is...Problem 1FP:
Initially, the car travels along a straight road with a speed of 35 m/s. If the brakes are applied...Problem 3FP:
A particle travels along a straight line with a velocity of v = ( 4t 3t2) m/s, where t is in...Problem 4FP:
A particle travels along a straight line with a speed v = (0.5t3 8t) m/s, where t is in seconds....Problem 5FP:
Determine the time when the velocity of the particle is zero, and the total distance traveled by the...Problem 6FP:
A particle travels along a straight line with an acceleration of a = (10 0.2s) m/s2, where s is...Problem 7FP:
A particle moves along a straight line such that its acceleration is a = ( 4t2 2) m/s2 , where t is...Problem 2P:
If a particle has an initial velocity of v0 = 12 ft/s to the right, at s0 = 0, determine its...Problem 3P:
When t = 1 s, the particle is located 10m to the left of the origin. Determine the acceleration when...Problem 4P:
When s =4ft, v = 3ft/s and when s = 10ft, v = 8 ft/s. Determine the velocity as a function of...Problem 5P:
If s = 0 when t = 0, determine the particles deceleration and position when t = 3 s. How far has the...Problem 6P:
Determine the position of the particle when t = 6 s and the total distance it travels during the 6-s...Problem 7P:
Determine the average velocity, the average speed, and the acceleration of the particle when t = 6...Problem 8P:
Determine (a) the displacement of the particle during the time interval from t = 1 s to t = 5 s, (b)...Problem 9P:
If s = 1 m and v = 2 m/s when t = 0, determine the particles velocity and position when t = 6 s....Problem 10P:
Determine the particles velocity when s = 2 m, if it starts from rest when s = 1 m. Use a numerical...Problem 11P:
Then in another 5 s it moves from SB to SC = 6 m. Determine the particles average velocity and...Problem 12P:
How long will it take to reach a speed of 120 km/h? Also, through what distance does the car travel...Problem 13P:
It takes about 3 s for a driver having 0.1% alcohol in his system to do the same. If such drivers...Problem 14P:
Determine the total distance traveled when t = 10 s. What are the particles average velocity,...Problem 15P:
If it is subjected to a deceleration of a = kv3, where k is a constant, determine its velocity and...Problem 17P:
It takes the driver of car A 0.75 s to react (this is the normal reaction time for drivers). When he...Problem 18P:
Determine the time needed for the rocket to reach an altitude of s =100 m. Initially, v = 0 and s =...Problem 19P:
Afterwards it travels with a constant velocity for 15 min. It then decelerates at 1 m/s2 until it is...Problem 20P:
If s = 4 ft when t = 0, determine the position of the particle when t = 4 s. What is the total...Problem 22P:
If the bag is released with the same upward velocity of 6 m/s when t = 0 and hits the ground when t...Problem 23P:
If v = 20 m/s when s = 0 and t = 0, determine the particles position, velocity, and acceleration as...Problem 25P:
If the body is released from rest at a very high altitude, determine (a) the velocity when t = 5 s,...Problem 26P:
At t 0,s 1 m and v = 10 m/s. When t 9 s, determine (a) the particles position, (b) the total...Problem 27P:
Initially the particle falls from rest.Problem 28P:
Determine the distance between them when t = 4 s and the total distance each has traveled in t = 4...Problem 30P:
A sphere is fired downwards into a medium with an initial speed of 27 m/s. If it experiences a...Problem 31P:
If s = 0 when t = 0, determine the position and acceleration of the particle as a function of time.Problem 32P:
Determine the elapsed time t 2v0/g from the instant ball A is thrown to when the balls pass each...Browse All Chapters of This Textbook
Chapter 12.2 - Rectilinear kinematics: Continuous MotionChapter 12.3 - Rectilinear kinematics: Erratic MotionChapter 12.6 - Motion Of A ProjectileChapter 12.7 - Curvilinear Motion: Normal And Tangential ComponentsChapter 12.8 - Curvilinear Motion: Cylindrical ComponentsChapter 12.10 - Relative-Motion Of Two Particles Using Translating AxesChapter 13.4 - Equations Of Motion: Rectangular CoordinatesChapter 13.5 - Equations Of Motion: Normal And Tangential CoordinatesChapter 13.6 - Equations Of Motion: Cylindrical CoordinatesChapter 13.7 - Central-Force Motion And Space Mechanics
Chapter 14.3 - Principle Of Work And Energy For A System Of ParticlesChapter 14.4 - Power And EfficiencyChapter 14.5 - Conservative Forces And Potential EnergyChapter 15.2 - Principle Of Linear Impulse And Momentum For A System Of ParticlesChapter 15.3 - Conservation Of Linear Momentum For A System Of ParticlesChapter 15.4 - ImpactChapter 15.7 - Principle Of Angular Impulse And MomentumChapter 15.9 - Propulsion With Variable MassChapter 16.3 - Rotation About A Fixed AxisChapter 16.4 - Absolute Motion AnalysisChapter 16.5 - Relative-Motion Analysis: VelocityChapter 16.6 - Instataneous Center Of Zero VelocityChapter 16.7 - Relative-Motion Analysis: AccelerationChapter 16.8 - Relative-Motion Analysis Using Rotating AxesChapter 17.1 - Mass Moment Of InertiaChapter 17.3 - Equations Of Motion: TranslationChapter 17.4 - Equations Of Motion: Rotation About A Fized AxisChapter 17.5 - Equations Of Motion: General Plane MotionChapter 18.4 - Principle Of Work And EnergyChapter 18.5 - Conservation Of EnergyChapter 19.2 - Principle Of Impulse And MomentumChapter 19.4 - Eccentric ImpactChapter 20.3 - General MotionChapter 20.4 - Relative-Motion Analysis Using Translating And Rotating AxesChapter 21.1 - Moments And Products Of InertiaChapter 21.3 - Kinetic EnergyChapter 21.4 - Equations Of MotionChapter 21.6 - Torque-Free MotionChapter 22.1 - Undamped Free VibrationChapter 22.2 - Energy MethodsChapter 22.6 - Electrical Circuit Analogs
Book Details
A Proven Approach to Conceptual Understanding and Problem-solving Skills. Engineering Mechanics: Dynamics excels in providing a clear and thorough presentation of the theory and application of engineering mechanics. Engineering Mechanics empowers students to succeed by drawing upon Professor Hibbeler's everyday classroom experience and his knowledge of how students learn. This text is shaped by the comments and suggestions of hundreds of reviewers in the teaching profession, as well as many of the author’s students.
The Fourteenth Edition includes new Preliminary Problems, which are intended to help students develop conceptual understanding and build problem-solving skills. The text features a large variety of problems from a broad range of engineering disciplines, stressing practical, realistic situations encountered in professional practice, and having varying levels of difficulty.
The Fourteenth Edition includes new Preliminary Problems, which are intended to help students develop conceptual understanding and build problem-solving skills. The text features a large variety of problems from a broad range of engineering disciplines, stressing practical, realistic situations encountered in professional practice, and having varying levels of difficulty.
Sample Solutions for this Textbook
We offer sample solutions for Engineering Mechanics: Dynamics (14th Edition) homework problems. See examples below:
Chapter 12.2, Problem 1PPChapter 13.4, Problem 1PPChapter 14.3, Problem 1PPChapter 15.2, Problem 1PPChapter 16.3, Problem 1FPChapter 17.1, Problem 1PChapter 18.4, Problem 1PPChapter 19.2, Problem 1PPWrite the expression of angular acceleration at constant speed. (ω˙x)XYZ=(ω˙x)xyz+Ω×ωx (I) Write the...
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