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- DouglasCollege/Physics
- Dynamics
- H1412.2RectilinearContinuousMotion
- H1412.3RectilinearErraticMotion
- H1412.4-6CurvilinearMotion
- H1412.7NormalandTangentialComponents
- H1412.8CylindricalComponents
- H1412.9DependentMotion
- H1414.1WorkofForce
- H1414.4PowerandEfficiency
- H1414.5ConservativeForces
- Mammoth
- Particle Dynamics
- OER-Mechanics-P-FA-13-2_EquationsOfMotion
- OER-Mechanics-P-FA-13-4_MultidimensionalMotion
- OER-Mechanics-P-FA-13-5_EoMNormalTangentialComponents
- OER-Mechanics-P-FA-13-6_EoMCylindricalComponents
- OER-Mechanics-P-FA-13-7_CentralForceMotion
- OER-Mechanics-P-IM-15-2_PrincipleOfLinearMomentum
- OER-Mechanics-P-IM-15-3_ConservationOfLinearMomentum
- OER-Mechanics-P-IM-15-4_Impact
- OER-Mechanics-P-IM-15-7_AngularImpulseAndMomentum
- OER-Mechanics-P-IM-15-9_PropulsionWithVariableMass
- OER-Mechanics-P-KM-12-10_RelativeMotion
- OER-Mechanics-P-KM-12-2_RectilinearContinuousMotion
- OER-Mechanics-P-KM-12-3_RectilinearErraticMotion
- OER-Mechanics-P-KM-12-6_CurvilinearMotion
- OER-Mechanics-P-KM-12-7_NormalAndTangentialComponents
- OER-Mechanics-P-KM-12-8_CylindricalComponents
- OER-Mechanics-P-KM-12-9_DependentMotion
- OER-Mechanics-P-WE-14-1_WorkOfForce
- OER-Mechanics-P-WE-14-3_PrincipleOfWE
- OER-Mechanics-P-WE-14-4_PowerAndEfficiency
- OER-Mechanics-P-WE-14-5_ConservativeForces
- OER-Mechanics-P-WE-14-6_ConservationOfEnergy
- Statics
- CH02-ForceVectors
- 02-3_VectorAdditionForces
- 02-5_CartesianVectors
- 02-6_AdditionOfCartesianVectors
- 02-7_PositionVectors
- 02-8_ForceVectorDirectedAlongLines
- 02-9_DotProduct
- CH03-EquilibriumOfAParticle
- 03-3_CoplanarForces
- 03-4_ThreeDimensionalForceSystems
- CH04-ForceSystemResultants
- 04-1_MomentOfAForceScalarFormulation
- 04-2_CrossProduct
- 04-3_MomentOfAForceVectorFormulation
- 04-4_PrincipleOfMoments
- 04-5_MomentOfAForceAboutASpecificAxis
- 04-6_MomentOfACouple
- 04-7_SimplificationOfAForceAndCoupleSystem
- 04-8_FurtherSimplificationOfAForceAndCoupleSystem
- 04-9_ReductionOfSimpleDistributedLoading
- CH05-EquilibriumOfARigidBody
- 05-2_FreeBodyDiagrams
- 05-4_TwoAndThreeForceMembers
- 05-5_FreeBodyDiagrams
- 05-7_ConstraintsAndStatisticalDeterminancy
- CH06-StructuralAnalysis
- 06-2_MethodOfJoints
- 06-3_ZeroForceMembers
- 06-4_TheMethodOfSections
- 06-5_SpaceTrusses
- 06-6_FramesAndMachines
- CH07-InternalForces
- 07-1_InternalForces
- 07-2_ShearMomentEquationsAndDiagrams
- 07-3_RelationsBetweenDistributedLoadShearAndMoment
- CH08-Friction
- 08-1_CharacteristicsOfDryFriction
- 08-2_ProblemsInvolvingDryFriction
- 08-3_Wedges
- 08-4_FrictionalForcesOnScrews
- CH09-CenterOfGravityAndCentroid
- 09-1_CenterOfGravityCOMAndTheCentroid
- 09-2_CompositeBodies
- OER-Mechanics-S-10-8_MassMomentOfIntertia
- OER-Mechanics-S-2-3_VectorAdditionForces
- OER-Mechanics-S-2-5_CartesianVectors
- OER-Mechanics-S-2-6_AdditionOfCartesianVectors
- OER-Mechanics-S-2-7_PositionOfCartesianVectors
- OER-Mechanics-S-2-8_ForceVectorDirectedAlongLines
- OER-Mechanics-S-2-9_DotProduct
- OER-Mechanics-S-3-3_CoplanarForces
- OER-Mechanics-S-3-4_ThreeDimensionalForceSystems
- OER-Mechanics-S-4-1_MomentOfAForceScalarFormulation
- OER-Mechanics-S-4-2_CrossProduct
- OER-Mechanics-S-4-3_MomentOfAForceVectorFormulation
- OER-Mechanics-S-4-4_PrincipleOfMoments
- OER-Mechanics-S-4-5_MomentOfAForceAboutASpecificAxis
- OER-Mechanics-S-4-6_MomentOfACouple
- OER-Mechanics-S-4-7_SimplificationOfAForceAndCoupleSystem
- OER-Mechanics-S-4-8_FurtherSimplificationOfAForceAndCoupleSystem
- OER-Mechanics-S-4-9_ReductionOfSimpleDistributedLoading
- OER-Mechanics-S-5-2_FreeBodyDiagrams
- OER-Mechanics-S-5-4_TwoAndThreeForceMembers
- OER-Mechanics-S-5-5_FreeBodyDiagrams
- OER-Mechanics-S-5-7_ConstraintsAndStaticalDeterminancy
- OER-Mechanics-S-6-2_MethodOfJoints
- OER-Mechanics-S-6-3_ZeroForceMembers
- OER-Mechanics-S-6-4_TheMethodOfSections
- OER-Mechanics-S-6-5_SpaceTrusses
- OER-Mechanics-S-6-6_FramesAndMachines
- OER-Mechanics-S-7-1_InternalForces
- OER-Mechanics-S-7-2_ShearMomentEquationsAndDiagrams
- OER-Mechanics-S-7-3_RelationsBetweenDistributedLoadShearAndMoment
- OER-Mechanics-S-8-1_CharacteristicsOfDryFriction
- OER-Mechanics-S-8-2_ProblemsInvolvingDryFriction
- OER-Mechanics-S-8-3_Wedges
- OER-Mechanics-S-8-4_FrictionalForcesOnScrews
- OER-Mechanics-S-9-1_CenterOfGravityCOMAndTheCentroid
- OER-Mechanics-S-9-2_CompositeBodies
- UBC/MECH/MECH2/Dynamics
- OER_Mechanics_2020
- 16-Kinematics
- 17-RigidBodyKinetics
- 18-WorkandEnergy
- 19-ImpulseandMomentum
- 22-Vibrations
- Rigid Body Dynamics
- OER-Mechanics-R-IM-19-2_PrincipleOfImpulseAndMomentum
- OER-Mechanics-R-IM-19-3_ConservationOfMomentum
- OER-Mechanics-R-IM-19-4_EccentricImpact
- OER-Mechanics-R-IM-19-x_Impact
- OER-Mechanics-R-KIN-17-3_EquationsOfMotionTranslation
- OER-Mechanics-R-KIN-17-4_EquationsOfMotionRotationAboutFixedAxis
- OER-Mechanics-R-KIN-17-5_GeneralPlaneMotion
- OER-Mechanics-R-KIN-17-x_CenterOfMass
- OER-Mechanics-R-KIN-17-x_Centroids
- OER-Mechanics-R-KIN-17-x_CompositeBodies
- OER-Mechanics-R-KIN-17-x_MultiBody
- OER-Mechanics-R-KIN-17-x_ParallelAxisTheorem
- OER-Mechanics-R-KIN-17-x_RadiusOfGyration
- OER-Mechanics-R-KM-16-1_GearSystem
- OER-Mechanics-R-KM-16-3_RotationAboutFixedAxis
- OER-Mechanics-R-KM-16-4_AbsoluteMotionAnalysis
- USask
- Engineering/GE 124 - Statics
- Module 1
- Module 2
- USask-OER-Mechanics-S-2-2_VectorOperations
- USask-OER-Mechanics-S-2-5_CartesianVectors
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