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Initially a girl on roller skates is at rest on a smooth horizontal pavement - NSC Physical Sciences - Question 4 - 2018 - Paper 1

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Initially a girl on roller skates is at rest on a smooth horizontal pavement. The girl throws a parcel, of mass 8 kg, horizontally to the right at a speed of 4 m s⁻¹... show full transcript

Worked Solution & Example Answer:Initially a girl on roller skates is at rest on a smooth horizontal pavement - NSC Physical Sciences - Question 4 - 2018 - Paper 1

Step 1

Define the term momentum in words.

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Answer

Momentum is defined as the product of the mass of an object and its velocity. It is a vector quantity, possessing both magnitude and direction, which reflects the motion of the object.

Step 2

Will the girl-roller-skate combination move TO THE RIGHT or TO THE LEFT after the parcel is thrown?

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Answer

The girl-roller-skate combination will move TO THE LEFT after the parcel is thrown. This can be explained using Newton's third law, which states that for every action, there is an equal and opposite reaction.

Step 3

Calculate the mass of the girl.

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Answer

Let the mass of the girl be denoted as mgirlm_{girl}. The total mass of the system before throwing the parcel is equal to the mass of the girl plus the mass of the roller skates:

mtotal=mgirl+mrollerextskatesm_{total} = m_{girl} + m_{roller ext{-}skates}

After the parcel is thrown, we have: mtotal=8extkg+2extkg=10extkgm_{total} = 8 ext{ kg} + 2 ext{ kg} = 10 ext{ kg}

Using conservation of momentum: After throwing the parcel: mtotalvtotal=mparcelvparcel+mgirlvgirlm_{total} v_{total} = m_{parcel} v_{parcel} + m_{girl} v_{girl}

Substituting known values: 10imes0.6=8imes4+mgirl(velocityextofgirl)10 imes 0.6 = 8 imes 4 + m_{girl} (velocity ext{ of girl}) Solving for mgirlm_{girl} yields approximately 5.13 kg.

Step 4

Calculate the magnitude of the impulse that the girl-roller-skate combination is experiencing while the parcel is being thrown.

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Answer

Impulse can be calculated using the formula:

extImpulse=rianglep=m(vfinalvinitial) ext{Impulse} = riangle p = m(v_{final} - v_{initial})

Where:

  • mm is the total mass of the roller-skate combination (2 kg).
  • vfinal=0.6extm/sv_{final} = 0.6 ext{ m/s} (after throwing).
  • vinitial=0extm/sv_{initial} = 0 ext{ m/s} (at rest).

Substituting values: extImpulse=2imes(0.60)=1.2extkgm/s. ext{Impulse} = 2 imes (0.6 - 0) = 1.2 ext{ kg m/s}. Therefore, the magnitude of the impulse is 1.2 kg m/s.

Step 5

Without any further calculation, write down the change in momentum experienced by the parcel while it is being thrown.

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Answer

The change in momentum experienced by the parcel is equal to the impulse applied to it. Since the impulse has already been calculated as 1.2 kg m/s, the change in momentum for the parcel is also 1.2 kg m/s.

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