Engineering Mechanics: Statics & Dynamics (14th Edition)
Engineering Mechanics: Statics & Dynamics (14th Edition)
14th Edition
ISBN: 9780133915426
Author: Russell C. Hibbeler
Publisher: PEARSON
bartleby

Videos

Textbook Question
Book Icon
Chapter 3.3, Problem 14P

Determine the stretch in each spring for equilibrium of the 2-kg block. The springs are shown in the equilibrium position.

Chapter 3.3, Problem 14P, Determine the stretch in each spring for equilibrium of the 2-kg block. The springs are shown in the

Expert Solution & Answer
Check Mark
To determine

The stretch in each spring for the equilibrium of the block.

Answer to Problem 14P

The stretch in spring AD, xAD=0.4905m_.

The stretch in spring AC, xAC=0.793m_.

The stretch in spring AB, xAB=0.467m_.

Explanation of Solution

Given information:

  • The mass of the block (m) is 2 kg.

Assumption:

Consider point E in between the points B and C.

Show the free body diagram of the springs in the equilibrium position as in Figure 1.

Engineering Mechanics: Statics & Dynamics (14th Edition), Chapter 3.3, Problem 14P

Determine the length of the spring AC using the formula.

lAC=lAE2+lCE2 (I)

Here, the length of the point AE is lAE and length of the point AB is lAB.

Determine the length of the spring AB using the formula.

lAB=lAE2+lBE2 (II)

Here, the length of the point BE is lBE.

Determine the force in spring AD using the formula.

FAD=mg (III)

Here, the mass of the block is m and the acceleration due to gravity is g.

Determine the stretch in spring AD.

FAD=kADxAD (IV)

Here, the stiffness of the spring AD is kAD.

Determine the stretch in the springs AC and AB for equilibrium of the block by applying the equation of equilibrium.

Along the horizontal direction:

Fx=0FABcosθABFACcosθAC=0 (V)

Here, the force acting on spring AB is FAB, the angle for the force AB is θAB, the force acting on cable AC is FAC, and the angle for the force AC is θAC.

Along the vertical direction:

Fy=0FABsinθAB+FACsinθACFAD=0 (VI)

Determine the stretch in spring AC.

FAC=kACxAC (VII)

Here, the stiffness of the spring AC is kAC.

Determine the stretch in spring AB.

FAB=kABxAB (VIII)

Here, the stiffness of the spring AB is kAB.

Conclusion:

Substitute 3 m for lAE and 3 m for lCE in Equation (I).

lAC=32+32=32m

Substitute 3 m for lAE and 4 m for lBE in Equation (II).

lAB=32+42=5m

Substitute 2 kg for m and 9.81m/s2 for g in Equation (III).

FAD=2×9.81=19.62kgms2×1Nkgms2=19.62N

Substitute 19.62 N for FAD and 40N/m for kAD in Equation (IV).

19.62=40xADxAD=19.6240xAD=0.4905m

Thus, the stretch in spring AD is 0.4905m_.

Determine the cosθAB value.

cosθAB=lBElAB

Substitute 4 m for lBE and 5 m for lAB.

cosθAB=45

Determine the cosθAC value.

cosθAC=lCElAC

Substitute 3m for lCE and 32 m for lAC.

cosθAC=332=12

Substitute 45 for cosθAB and 12 for cosθAC in Equation (V).

FAB(45)FAC(12)=0FAB(45)=FAC(12)FAB=FAC(542) (IX)

Determine the sinθAB value.

sinθAB=lAElAB

Substitute 3 m for lAE and 5 m for lAB.

sinθAB=35

Determine the sinθAC value.

sinθAC=lAElAC

Substitute 3m for lAE and 32 m for lAC.

sinθAC=332=12

Substitute FAC(542) for FAB, 35 for sinθAB, 12 for sinθAC, 19.62 N for FAD in Equation (VI).

FAC(542)(35)+FAC(12)19.62=0FAC2(34+1)=19.62FAC(74)=19.62×2FAC=19.62×2×47

FAC=15.86N

Substitute 15.86 N for FAC and 20N/m for kAC in Equation (VII).

15.86=20×xACxAC=15.8620xAC=0.793m

Thus, the stretch in spring AC is 0.793m_.

Substitute 15.86 N for FAC in Equation (IX).

FAB=15.86(542)=14.01N

Substitute 14.01 N for FAB and 30N/m for kAB in Equation (VIII).

14.01=30×xABxAB=14.0130xAB=0.467m

Thus, the stretch in spring AB is 0.467m_.

Want to see more full solutions like this?

Subscribe now to access step-by-step solutions to millions of textbook problems written by subject matter experts!
Students have asked these similar questions
In each case, determine the force P required to maintain equilibrium. The block weighs 100 lb.
If the block is held in the equilibrium position shown, determine the mass of the block D. The unextended length of the spring AB is 9 m.
Each spring has an unstretched length of 2 mm and a stiffness of k = 350 N/m. Determine the stretch in OA spring required to hold the 25-kg crate in the equilibrium position shown.  Determine the stretch in OB spring required to hold the 25-kg crate in the equilibrium position shown.

Chapter 3 Solutions

Engineering Mechanics: Statics & Dynamics (14th Edition)

Ch. 3.3 - Determine the magnitude and direction of F so...Ch. 3.3 - The bearing consists of rollers, symmetrically...Ch. 3.3 - The members of a truss are connected to the gusset...Ch. 3.3 - The gusset plate is subjected to the forces of...Ch. 3.3 - The man attempts to pull down the tree using the...Ch. 3.3 - The cords ABC and BD can each support a maximum...Ch. 3.3 - Determine the maximum force F that can be...Ch. 3.3 - The block has a weight of 20 lb and is being...Ch. 3.3 - Determine the maximum weight W of the block that...Ch. 3.3 - The lift sling is used to hoist a container having...Ch. 3.3 - A nuclear-reactor vessel has a weight of 500(103)...Ch. 3.3 - Determine the stretch in each spring for...Ch. 3.3 - The unstretched length of spring AB is 3 m. If the...Ch. 3.3 - Determine the mass of each of the two cylinders if...Ch. 3.3 - Determine the stiffness kT of the single spring...Ch. 3.3 - If the spring DB has an unstretched length of 2 m....Ch. 3.3 - Determine the unstretched length of DB to hold the...Ch. 3.3 - A vertical force P = 10 lb is applied to the ends...Ch. 3.3 - Determine the unstretched length of spring AC if a...Ch. 3.3 - The springs BA and BC each have a stiffness of 500...Ch. 3.3 - The springs BA and BC each nave a stiffness of 500...Ch. 3.3 - Determine the distances x and y for equilibrium if...Ch. 3.3 - Determine the magnitude of F1 and the distance y...Ch. 3.3 - The 30-kg pipe is supported at A by a system of...Ch. 3.3 - Each cord can sustain a maximum tension of 500 N....Ch. 3.3 - The streetlights A and B are suspended from the...Ch. 3.3 - Determine the tension developed in each cord...Ch. 3.3 - Prob. 30PCh. 3.3 - Prob. 31PCh. 3.3 - Prob. 32PCh. 3.3 - The lamp has a weight of 15 lb and is supported by...Ch. 3.3 - Each cord can sustain a maximum tension of 20 lb....Ch. 3.3 - Prob. 35PCh. 3.3 - Prob. 36PCh. 3.3 - Prob. 37PCh. 3.3 - Prob. 38PCh. 3.3 - The ball D has a mass of 20 kg. If a force of F =...Ch. 3.3 - The 200-lb uniform container is suspended by means...Ch. 3.3 - The single elastic cord ABC is used to support the...Ch. 3.3 - A scale is constructed with a 4-ft-long cord and...Ch. 3.3 - The concrete wall panel is hoisted into position...Ch. 3.3 - Prob. 2CPCh. 3.3 - Prob. 3CPCh. 3.3 - Prob. 4CPCh. 3.4 - Determine the magnitude of forces F1, F2, F3, so...Ch. 3.4 - Determine the tension developed in cables AB, AC,...Ch. 3.4 - Prob. 9FPCh. 3.4 - Prob. 10FPCh. 3.4 - Prob. 11FPCh. 3.4 - The three cables are used to support the 40-kg...Ch. 3.4 - Determine the magnitudes of F1, F2, and F3 for...Ch. 3.4 - If the bucket and its contents have a total weight...Ch. 3.4 - Determine the stretch in each of die two springs...Ch. 3.4 - Prob. 47PCh. 3.4 - Determine the tension in the cables in order to...Ch. 3.4 - Determine the maximum mass of the crate so that...Ch. 3.4 - Determine the force in each cable if F = 500 lb.Ch. 3.4 - Prob. 51PCh. 3.4 - Determine the tens on developed in cables AB and...Ch. 3.4 - If the tension developed in each cable cannot...Ch. 3.4 - Prob. 54PCh. 3.4 - Determine the maximum weight of the crate that can...Ch. 3.4 - The 25 kg flowerpot is supported at A by the three...Ch. 3.4 - If each cord can sustain a maximum tension of 50 N...Ch. 3.4 - Determine the tension developed m the three cables...Ch. 3.4 - Determine the tension developed in the three...Ch. 3.4 - Prob. 60PCh. 3.4 - Prob. 61PCh. 3.4 - If the maximum force in each rod con not exceed...Ch. 3.4 - Prob. 63PCh. 3.4 - If cable AD is tightened by a turnbuckle and...Ch. 3.4 - Prob. 65PCh. 3.4 - Prob. 66PCh. 3.4 - Determine the maximum weight of the crate so that...Ch. 3.4 - The pipe is held in place by the vise. If the bolt...Ch. 3.4 - Prob. 2RPCh. 3.4 - Prob. 3RPCh. 3.4 - Prob. 4RPCh. 3.4 - Prob. 5RPCh. 3.4 - Prob. 6RPCh. 3.4 - Determine the force in each cable needed to...Ch. 3.4 - If cable AB is subjected to a tension of 700 N,...
Knowledge Booster
Background pattern image
Mechanical Engineering
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, mechanical-engineering and related others by exploring similar questions and additional content below.
Similar questions
SEE MORE QUESTIONS
Recommended textbooks for you
Text book image
International Edition---engineering Mechanics: St...
Mechanical Engineering
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:CENGAGE L
How to balance a see saw using moments example problem; Author: Engineer4Free;https://www.youtube.com/watch?v=d7tX37j-iHU;License: Standard Youtube License