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• (lever) a simple machine, consisting of a rigid beam and a fulcrum • …

Question

  • (lever) a simple machine, consisting of a rigid beam and a fulcrum
  • the fulcrum is the pivot point of the lever
  • the input force (effort) is the force applied to the lever
  • the output force (load) is the force that the lever exerts on another object
  • in first - class levers, the fulcrum is located between the effort and the load
  • in second - class levers, the load is located between the effort and the fulcrum

the student wants to contrast first - class levers and second - class levers. which choice most effectively uses relevant information from the notes to accomplish this goal?
a) in levers, the effort is the force applied to the lever; the load, in contrast, is the force that the lever exerts on another object.
b) in first - class and second - class levers, the fulcrum and the load are in different locations.
c) first - class levers are simple machines consisting of a rigid beam and a fulcrum, but then again the same is true of second - class levers.
d) in first - class levers, the fulcrum is located between the effort and the load, but in second - class levers, the load is located between the effort and the fulcrum

Explanation:

Brief Explanations

To contrast first - class and second - class levers, we need information that shows a difference between them.

  • Option A: Describes effort and load in general for levers, not a contrast between the two types of levers.
  • Option B: Is a very vague statement and does not clearly show the difference in the location of fulcrum and load between the two lever types.
  • Option C: States that both first - class and second - class levers have a rigid beam and a fulcrum, which is a similarity, not a contrast.
  • Option D: Clearly states the difference in the location of fulcrum (in first - class levers) and load (in second - class levers) between the two types of levers, which helps in contrasting them.

Answer:

D. In first - class levers, the fulcrum is located between the effort and the load, but in second - class levers, the load is located between the effort and the fulcrum.