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An internet shopping company is planning to use drones to deliver packages - Scottish Highers Physics - Question 2 - 2018

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An internet shopping company is planning to use drones to deliver packages. (a) During a test the drone is hovering at a constant height above the ground. The mass ... show full transcript

Worked Solution & Example Answer:An internet shopping company is planning to use drones to deliver packages - Scottish Highers Physics - Question 2 - 2018

Step 1

(a) (i) Determine the upward force produced by the drone.

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Answer

To find the upward force produced by the drone, we first calculate the total weight that the drone must support. The total weight WW is given by:

W=mgW = mg

where mm is the combined mass of the drone and the package.

Calculating the total mass:

  • Mass of the drone = 50 kg
  • Mass of the package = 1.25 kg
  • Total mass = 50 kg + 1.25 kg = 51.25 kg

Now we calculate the weight:

W=51.25imes9.8=500.25extNW = 51.25 imes 9.8 = 500.25 ext{ N}

Thus, the upward force produced by the drone is approximately 500.25 N.

Step 2

(a) (ii) Calculate the power dissipated by the motor.

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Answer

The power PP dissipated by the motor can be calculated using the formula:

P=V2RP = \frac{V^2}{R}

where VV is the voltage and RR is the resistance.

Given that the battery supplies V=12extVV = 12 ext{ V} and the resistance of the motor is R=9extΩR = 9 ext{ Ω}, we substitute these values into the formula:

P=1229=1449=16extWP = \frac{12^2}{9} = \frac{144}{9} = 16 ext{ W}

Therefore, the power dissipated by the motor is 16 W.

Step 3

(a) (iii) Justify your answer.

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Answer

While the cable is being lowered and it breaks, the upward force produced by the drone remains constant as stated in the question. Since the upward force exceeds the weight of the package, it remains greater than the gravitational force acting on the package. This results in an unbalanced force acting upwards, causing the drone to accelerate upwards immediately after the cable breaks.

Step 4

(b) Determine the tension in each cord.

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Answer

To find the tension in each cord, we can analyze the forces acting on the system.

Given that the mass of the package is 3.4 kg, we first calculate the total weight:

W=mg=3.4imes9.8=33.32extNW = mg = 3.4 imes 9.8 = 33.32 ext{ N}

Assuming the tension is TT in each cord, and the system is balanced at a constant height, we can apply the trigonometric relation for the angle of 35°. The force components in the vertical direction yield:

2T×sin(35°)=W2T \times \sin(35°) = W

Thus,

2T×sin(35°)=33.322T \times \sin(35°) = 33.32

Solving for TT, we have:

T=33.322×sin(35°)=33.322×0.573629.06extNT = \frac{33.32}{2 \times \sin(35°)} = \frac{33.32}{2 \times 0.5736} \approx 29.06 ext{ N}

Hence, the tension in each cord is approximately 29.06 N.

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