Solutions for Engineering Mechanics: Statics and Modified Mastering Engineering with eText and Access Card (14th Edition)
Problem 8PP:
Do not calculate the result. Prob. P2-8Problem 9PP:
P2.9. In each case, set up the dot product to find the magnitude of the projection of the force F...Problem 27FP:
Determine the angle between the force and the line OA.Problem 30FP:
Determine the components of the force acting parallel and perpendicular to the axis of the pole....Problem 31FP:
Determine the magnitudes of the components of the force F = 56 N acting along and perpendicular to...Problem 106P:
Express the force F in Cartesian vector form if it acts at the midpoint B of the rod. Prob. 2-106Problem 107P:
Express force F in Cartesian vector form if point B is located 3 m along the rod from end C.Problem 108P:
If the force in each chain has a magnitude of 60 lb, express each force as a Cartesian vector and...Problem 109P:
If the resultant force at O has a magnitude of 130 lb and is directed along the negative z axis,...Problem 110P:
Determine the length of the chain, and express the 50-lb force acting at A along the chain as a...Problem 111P:
Determine the length of the cable and express the 30-N force acting at A along the cable as a...Problem 113P:
Determine the magnitudes of the components of F = 600 N acting along and perpendicular to segment DE...Problem 117P:
Determine the magnitudes of the projected components of the force F = [60i + 12j 40k] N along the...Problem 120P:
Determine the magnitude of the projected component of F1 along the line of action of F2.Problem 123P:
Determine the magnitude of the projected component of the force F = {400i 200j + 500k} N acting...Problem 124P:
Determine the magnitude of the projected component of the force F = {400i 200j + 500k} N acting...Problem 126P:
Determine the magnitude of the projected component of the 100-lb force acting along the axis BC of...Problem 127P:
Determine the angle between pipe segments BA and BC.Problem 129P:
Determine the magnitude of the projected component of the 3 kN force acting along the axis BC of the...Problem 130P:
Determine the angles and made between the axes OA of the flag pole and AB and AC, respectively, of...Problem 135P:
Determine the magnitudes of the components of the force F = 90lb acting parallel and perpendicular...Problem 136P:
Determine the magnitudes of the projected components of the force F = 300 N acting along the x and y...Problem 139P:
Express the result as a Cartesian vector.Problem 1RP:
Determine the magnitude of the resultant force FR and its direction, measured clockwise from the...Problem 2RP:
Resolve F into components along the u and v axes and determine the magnitudes of these components....Problem 3RP:
Determine the magnitude of the resultant force acting on the gusset plate of the bridge truss. Prob....Browse All Chapters of This Textbook
Chapter 1.6 - General Procedure For AnalysisChapter 2.3 - Vector Addition Of ForcesChapter 2.4 - Addition Of A System Of Coplanar ForcesChapter 2.6 - Addition Of Cartesian VectorsChapter 2.8 - Force Vector Directed Along A LineChapter 2.9 - Dot ProductChapter 3.3 - Coplanar Force SystemsChapter 3.4 - Three-dimensional Force SystemsChapter 4.4 - Principle Of MomentsChapter 4.5 - Moment Of A Force About A Specified Axis
Chapter 4.6 - Moment Of A CoupleChapter 4.7 - Simplification Of A Force And Couple SystemChapter 4.8 - Further Simplification Of A Force And Couple SystemChapter 4.9 - Reduction Of A Simple Distributed LoadingChapter 5.2 - Free-body DiagramsChapter 5.4 - Two- And Three-force MembersChapter 5.7 - Constraints And Statical DeterminacyChapter 6.3 - Zero-force MembersChapter 6.4 - The Method Of SectionsChapter 6.6 - Frames And MachinesChapter 7.1 - Internal Loadings Developed In Structural MembersChapter 7.2 - Shear And Moment Equations And DiagramsChapter 7.3 - Relations Between Distributed Load, Shear, And MomentChapter 7.4 - CablesChapter 8.2 - Problems Involving Dry FrictionChapter 8.4 - Frictional Forces On ScrewsChapter 8.5 - Frictional Forces On Flat BeltsChapter 8.8 - Rolling ResistanceChapter 9.1 - Center Of Gravity, Center Of Mass, And The Centroid Of A BodyChapter 9.2 - Composite BodiesChapter 9.3 - Theorems Of Pappus And GuldinusChapter 9.5 - Fluid PressureChapter 10.3 - Radius Of Gyration Of An AreaChapter 10.4 - Moments Of Inertia For Composite AreasChapter 10.7 - Mohr’s Circle For Moments Of InertiaChapter 10.8 - Mass Moment Of InertiaChapter 11.3 - Principle Of Virtual Work For A System Of Connected Rigid BodiesChapter 11.7 - Stability Of Equilibrium Configuration
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