Unit 1: Fundamentals of mechanics - Practice Quiz

BTY730 — Biomechanics 60 Questions
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1 Newton's First Law of Motion is also commonly known as the law of:

Newton's Laws Easy
A. Acceleration
B. Gravitation
C. Action and reaction
D. Inertia

2 According to Newton's Second Law, force is equal to:

Newton's Laws Easy
A. Mass divided by acceleration ()
B. Mass times velocity ()
C. Mass times acceleration ()
D. Acceleration divided by mass ()

3 Newton's Third Law states that for every action there is:

Newton's Laws Easy
A. No reaction at all
B. An equal and opposite reaction
C. A larger reaction
D. A smaller reaction

4 The force that opposes the relative motion between two surfaces in contact is called:

mechanical behavior of bodies in contact Easy
A. Momentum
B. Friction
C. Tension
D. Gravity

5 Which type of friction is generally greater for the same pair of surfaces?

mechanical behavior of bodies in contact Easy
A. Kinetic friction
B. Fluid friction
C. Rolling friction
D. Static friction

6 Work is defined as the product of force and:

work, power and energy relationship Easy
A. Time of application
B. Mass of the object
C. Displacement in the direction of force
D. Speed of the object

7 Power is best defined as the:

work, power and energy relationship Easy
A. Force applied per unit area
B. Product of mass and velocity
C. Rate of doing work
D. Total work done

8 The SI unit of energy is the:

work, power and energy relationship Easy
A. Newton
B. Watt
C. Pascal
D. Joule

9 The turning effect of a force about a point is called:

basic concepts of Force Moments and Torque Easy
A. Power
B. Torque
C. Work
D. Impulse

10 The moment of a force is calculated as the force multiplied by the:

basic concepts of Force Moments and Torque Easy
A. Velocity of the body
B. Perpendicular distance from the axis
C. Total mass of the body
D. Time of application

11 For a body to be in static equilibrium, the net force acting on it must be:

equilibrium Easy
A. Constant but non-zero
B. Maximum
C. Continuously increasing
D. Zero

12 In addition to zero net force, a system in complete equilibrium must also have zero:

analysis of systems in equilibrium Easy
A. Net torque
B. Surface area
C. Total mass
D. Density

13 Which type of joint allows movement in only one plane, like a door hinge?

skeletal joints Easy
A. Ball and socket joint
B. Gliding joint
C. Hinge joint
D. Pivot joint

14 The joint at the shoulder that allows movement in multiple directions is a:

skeletal joints Easy
A. Pivot joint
B. Ball and socket joint
C. Hinge joint
D. Saddle joint

15 Skeletal muscles typically produce movement by:

skeletal muscle Easy
A. Storing calcium only
B. Pushing bones apart
C. Contracting and pulling on bones
D. Secreting fluids

16 The elbow joint primarily functions mechanically as a:

mechanics of the elbow Easy
A. Fixed rigid strut
B. Third-class lever
C. First-class lever with no muscles
D. Ball and socket joint

17 The spinal column primarily provides support and protection for the:

mechanics of the spinal column Easy
A. Lungs
B. Liver
C. Heart
D. Spinal cord

18 The hip joint is classified mechanically as a:

mechanics of the hip Easy
A. Hinge joint
B. Ball and socket joint
C. Pivot joint
D. Gliding joint

19 The knee joint mainly allows which type of movement?

mechanics of the knee Easy
A. Flexion and extension
B. Full rotation only
C. Multi-directional gliding
D. Circumduction only

20 The center of gravity of a body is the point where its entire:

center of gravity Easy
A. Weight is assumed to act
B. Volume is stored
C. Surface area is located
D. Heat is generated

21 A sprinter accelerates from rest at . According to Newton's second law, what net horizontal force must the ground exert on the sprinter?

Newton's Laws Medium
A.
B.
C.
D.

22 When a person pushes against a wall with a force of , the wall does not move. Which of Newton's laws best explains the equal and opposite reaction force from the wall?

Newton's Laws Medium
A. Newton's second law
B. Law of universal gravitation
C. Newton's third law
D. Newton's first law

23 A shoe sole rests on a floor with coefficient of static friction . If the normal force is , what is the maximum static friction force before slipping occurs?

mechanical behavior of bodies in contact Medium
A.
B.
C.
D.

24 A physiotherapist lifts a weight vertically by in . What is the average power output? (Take )

work, power and energy relationship Medium
A.
B.
C.
D.

25 A muscle contracts and shortens by while generating a constant force of . How much mechanical work does the muscle perform?

work, power and energy relationship Medium
A.
B.
C.
D.

26 A force of is applied perpendicular to a wrench at a distance of from the pivot. What torque is produced about the pivot?

basic concepts of Force Moments and Torque Medium
A.
B.
C.
D.

27 A force of acts at an angle of to a lever arm of length . What is the resulting torque about the pivot?

basic concepts of Force Moments and Torque Medium
A.
B.
C.
D.

28 For a body to be in complete static equilibrium, which two conditions must both be satisfied?

equilibrium Medium
A. and
B. only
C. and
D. only

29 A uniform beam of weight and length is supported horizontally by two supports at its ends. What upward force does each support provide?

analysis of systems in equilibrium Medium
A.
B.
C.
D.

30 Which classification best describes the type of synovial joint that allows movement in only one plane, such as flexion and extension?

skeletal joints Medium
A. Ball-and-socket joint
B. Saddle joint
C. Hinge joint
D. Pivot joint

31 In a muscle-tendon system, when a muscle contracts isometrically, which statement is true?

skeletal muscle Medium
A. Muscle lengthens while producing no force
B. Muscle length stays constant while tension develops
C. Muscle shortens and lengthens alternately
D. Muscle shortens while tension stays constant

32 The biceps inserts from the elbow joint and holds a load whose weight acts from the joint. If the load weighs , what biceps force is required for equilibrium?

mechanics of the elbow Medium
A.
B.
C.
D.

33 The elbow acts as which class of lever when the biceps flexes the forearm against a load held in the hand?

mechanics of the elbow Medium
A. Third-class lever
B. First-class lever
C. Fixed pulley system
D. Second-class lever

34 The glenohumeral (shoulder) joint offers the greatest range of motion in the body. Which joint type accounts for this multi-axial mobility?

shoulder Medium
A. Gliding joint
B. Hinge joint
C. Ball-and-socket joint
D. Pivot joint

35 When a person lifts a heavy object with a rounded (flexed) back rather than bending the knees, the load on the lumbar spine increases mainly because of what mechanical effect?

spinal column Medium
A. An increase in the coefficient of friction
B. A reduction in the load's weight
C. A longer moment arm of the load about the spine
D. A decrease in the erector spinae force

36 During single-leg stance, the hip abductor muscles must generate a large force. This is primarily because the abductor muscle moment arm is what relative to the body-weight moment arm?

hip Medium
A. Shorter than the body-weight moment arm
B. Equal to the body-weight moment arm
C. Zero during single-leg stance
D. Much longer than the body-weight moment arm

37 The quadriceps insert on the tibia via the patellar tendon. The patella increases the effectiveness of the quadriceps mainly by doing what?

knee Medium
A. Reducing the joint reaction force to zero
B. Decreasing the muscle's cross-sectional area
C. Increasing the moment arm of the quadriceps
D. Converting rotational motion to translation

38 During the push-off phase of walking, the ankle behaves largely like which class of lever, with the ball of the foot as the fulcrum and the calf muscles providing effort?

ankle Medium
A. First-class lever
B. Third-class lever
C. Frictionless pivot
D. Second-class lever

39 Two point masses, at and at , lie along a line. Where is the center of gravity located?

center of gravity Medium
A.
B.
C.
D.

40 To improve a patient's standing stability, which change would be most effective?

stability and balance Medium
A. Standing on the toes with feet together
B. Widening the base of support and lowering the center of gravity
C. Raising the center of gravity above the head
D. Narrowing the base of support and raising the arms

41 A person holds a ball in the hand with the forearm horizontal. The biceps inserts from the elbow joint, the center of mass of the forearm () is from the joint, and the ball is held from the joint. What is the approximate biceps force required for equilibrium?

mechanics of the elbow Hard
A.
B.
C.
D.

42 A person stands in an elevator accelerating upward at . Taking , what apparent weight (normal force) does the floor exert?

Newton's Laws Hard
A.
B.
C.
D.

43 A block on an incline just begins to slide when the incline angle reaches . What is the coefficient of static friction?

mechanical behavior of bodies in contact Hard
A.
B.
C.
D.

44 A athlete runs up a flight of stairs of vertical height in . Taking , what average power is developed against gravity?

work, power and energy relationship Hard
A.
B.
C.
D.

45 A force of acts at a point whose position vector from the pivot is , with the force directed from the position vector. What is the magnitude of the torque?

basic concepts of Force Moments and Torque Hard
A.
B.
C.
D.

46 During single-leg stance, the hip abductors act at a shorter moment arm than body weight about the hip joint. If the abductor moment arm is half the body-weight moment arm and body weight (minus the stance limb) is , the abductor force is approximately:

mechanics of the hip Hard
A.
B.
C.
D.

47 A two-segment limb has an upper segment (, CG at ) and lower segment (, CG at ) measured from a reference. Where is the combined center of gravity?

center of gravity Hard
A.
B.
C.
D.

48 When lifting a load, the erector spinae act at a small moment arm (~) while the load moment arm about L5-S1 is large (~). For a external moment from the load, the muscle force required is approximately:

spinal column Hard
A.
B.
C.
D.

49 A uniform beam of weight rests horizontally on two supports A and B separated by length , with A at the left end. A load is placed at from A. What is the reaction at support B?

equilibrium Hard
A.
B.
C.
D.

50 The patella increases the effective moment arm of the quadriceps at the knee. If removing the patella reduces the quadriceps moment arm from to , the extra muscle force needed to produce the same knee extension torque increases by what factor?

mechanics of the knee Hard
A.
B.
C.
D.

51 Based on the length-tension relationship of skeletal muscle, active tension is maximal when:

skeletal muscle Hard
A. Sarcomere length gives optimal actin-myosin cross-bridge overlap
B. The sarcomere is fully shortened with overlapping thin filaments
C. The muscle is completely relaxed at resting length
D. The muscle is maximally stretched beyond overlap

52 The deltoid muscle acting at a small angle to the humerus produces both a rotational and a large translational (dislocating) component. If the deltoid force is at to the humeral shaft, the stabilizing (compressive) component along the shaft is approximately:

mechanics of the shoulder Hard
A.
B.
C.
D.

53 Which change would most increase a standing person's rotational stability against tipping?

stability and balance Hard
A. Raising the center of gravity while keeping feet together
B. Increasing height with a narrow base of support
C. Widening the base of support and lowering the center of gravity
D. Narrowing the stance and shifting weight to the toes

54 A three-force member is in equilibrium under non-parallel forces. For equilibrium, the three force vectors must:

analysis of systems in equilibrium Hard
A. All point toward the center of mass
B. Be parallel and equal in magnitude
C. Be concurrent (lines of action meet at a point) and form a closed triangle
D. Sum to a nonzero resultant along one axis

55 During push-off, the Achilles tendon force acts at a moment arm of about the ankle, while the ground reaction force of acts at the ball of the foot from the ankle. What Achilles tendon force is required?

mechanics of the ankle Hard
A.
B.
C.
D.

56 A synovial joint modeled as a class III lever (like most limb joints) is characterized by:

skeletal joints Hard
A. Fulcrum between effort and load with equal arms
B. Load between fulcrum and effort, always giving mechanical advantage > 1
C. Effort applied at the fulcrum with no moment arm
D. Effort between the fulcrum and load, favoring speed and range of motion over force

57 A ball strikes a wall at and rebounds at in the opposite direction over . What average force does the wall exert?

Newton's Laws Hard
A.
B.
C.
D.

58 A muscle performs of positive work concentrically and absorbs eccentrically during a movement cycle. If the cycle takes , the average net mechanical power output is:

work, power and energy relationship Hard
A.
B.
C.
D.

59 When a person bends forward from the hips, the whole-body center of gravity can shift outside the body. This occurs because:

center of gravity Hard
A. Mass is created outside the body during motion
B. The CG is a weighted average location that need not lie within physical body material
C. The base of support moves to enclose the new CG
D. Gravity acts only on the trunk once bent

60 A crate is pushed with a horizontal force on a surface with and . Once moving, what horizontal force keeps it at constant velocity, and why is it less than the force needed to start it?

mechanical behavior of bodies in contact Hard
A. ; friction increases with velocity
B. ; kinetic friction () is lower than static friction ()
C. ; kinetic friction equals the maximum static friction
D. ; friction disappears once motion begins