Photo AI

Professional rugby players wear a tracking device that measures their velocity and acceleration - AQA - GCSE Physics Combined Science - Question 2 - 2021 - Paper 2

Question icon

Question 2

Professional-rugby-players-wear-a-tracking-device-that-measures-their-velocity-and-acceleration-AQA-GCSE Physics Combined Science-Question 2-2021-Paper 2.png

Professional rugby players wear a tracking device that measures their velocity and acceleration. Figure 2 shows a player wearing a tracking device. The player is t... show full transcript

Worked Solution & Example Answer:Professional rugby players wear a tracking device that measures their velocity and acceleration - AQA - GCSE Physics Combined Science - Question 2 - 2021 - Paper 2

Step 1

What is a vector quantity?

96%

114 rated

Answer

A vector quantity is defined as a quantity with both magnitude and direction. In this case, you should tick the box for "A quantity with both magnitude and direction."

Step 2

Which of the following is a vector quantity?

99%

104 rated

Answer

Among the given options, displacement is the vector quantity. Therefore, tick the box for "Displacement."

Step 3

Determine the acceleration of the player between 0 and 1.6 s.

96%

101 rated

Answer

To find acceleration, we can use the formula: ext{Acceleration} = rac{ ext{Change in velocity}}{ ext{Time taken}} = rac{(4 - 0)}{(1.6 - 0)} = rac{4}{1.6} = 2.5 ext{ m/s}^2

Step 4

Describe the motion of the player between 3.4 s and 3.6 s.

98%

120 rated

Answer

The motion of the player between 3.4 s and 3.6 s can be described as a case of constant deceleration. The velocity remains constant, suggesting there is no acceleration during this interval where the player is likely not increasing or decreasing speed.

Step 5

Write down the equation which links acceleration (a), mass (m) and resultant force (F).

97%

117 rated

Answer

The equation that links acceleration, mass, and resultant force is given by Newton's second law: F=mimesaF = m imes a

Step 6

Calculate the mass of the player.

97%

121 rated

Answer

To find the mass of the player, we use the formula derived from Newton's second law. Given that the resultant force (F) is 1800 N and the acceleration (a) is 25 m/s², we rearrange the equation: m = rac{F}{a} = rac{1800}{25} = 72 ext{ kg}

Step 7

Suggest one advantage of the data being sent during the game.

96%

114 rated

Answer

One advantage of the data being sent during the game is that it allows coaches and analysts to monitor player performance in real-time, enabling them to make informed decisions adjust strategies immediately.

Join the GCSE students using SimpleStudy...

97% of Students

Report Improved Results

98% of Students

Recommend to friends

100,000+

Students Supported

1 Million+

Questions answered

;