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'n Man beland in die moeilijkheid terwyl hy in 'n dam swem - NSC Physical Sciences - Question 2 - 2022 - Paper 1

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'n Man beland in die moeilijkheid terwyl hy in 'n dam swem. Tydens die reddingsoperasie word 'n opblaasbare binneband met 'n tou aan 'n helikopter vasgemaak, is dit ... show full transcript

Worked Solution & Example Answer:'n Man beland in die moeilijkheid terwyl hy in 'n dam swem - NSC Physical Sciences - Question 2 - 2022 - Paper 1

Step 1

2.1 Stel Newton se Eerste Bewegingswet in woorde.

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Answer

Newton's First Law states that an object will remain at rest or in uniform motion in a straight line unless acted upon by a non-zero net external force. This means that if no net force is acting on a body, it will not change its state of motion.

Step 2

2.2 Teken 'n vrye kragdiagram (vrye liggaamdiagram) van die man-binnekombinasie terwyl hulle gesleep word.

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Answer

The free body diagram should include the forces acting on the man-bin combination:

  1. Weight (downward): Fg=mimesgF_g = m imes g
  2. Tension in the rope (TT): acting upward along the direction of the rope.
  3. Applied force (horizontal): the wrywingkrag (300 N) acting against the motion.

Step 3

2.3 Bereken die spanning in die tou.

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Answer

We can use Newton's second law to find the tension in the rope. By applying the equation:

Fnet=maF_{net} = ma,

we know the net force is the difference between the upward force (tension) and the downward force (weight) applied to the man-bin combination:

  1. Calculate the weight:
    • Fg=(70+4)kgimes9.8m/s2=730.8NF_g = (70 + 4) kg imes 9.8 m/s^2 = 730.8 N
  2. The net force acting:
    • Fnet=FTFg=300NF_{net} = F_{T} - F_{g} = 300 N (as it's opposing the wrywingkrag)
  3. Rearranging the equation will give us:
    • FT=Fg+Fnet=730.8+300=1030.8NF_T = F_{g} + F_{net} = 730.8 + 300 = 1030.8 N

Hence, the tension in the rope is 1030.8 N.

Step 4

2.4 Hoe sal die antwoord op VRAAG 2.3 verander indien die helikopter VERSNEL terwyl dit die man sleep?

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Answer

If the helicopter accelerates while pulling the man, the tension in the rope would increase because the additional force needed to accelerate the man-bin combination would have to be accounted for. Thus, we would have:

Fnet=TFgFf,F_{net} = T - F_g - F_f,

where FfF_f is the frictional force. The net force equation would need to factor in acceleration, thereby making:

T=Fg+Ff+ma,T = F_g + F_f + ma,

This means an increase in tension in the rope due to the added acceleration.

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