The resultant force is equal to the rate of change in momentum. The change in momentum is in the same direction as the resultant force
A girl is riding her skateboard down the road and increases her speed from 1 m s–1 to 4 m s–1 in 2.5 s.If the force driving her forward is 72 N, calculate the combined mass of the girl and the skateboard.
Resultant forces on a body can be positive or negative depending on their direction
Three forces, 4 N, 8 N, and 24 N act on an object with a mass of 5 kg. Which acceleration is not possible with any combination of these three forces?
A. 1 m s–2
B. 4 m s–2
C. 7 m s–2
D. 10 m s–2
Step 1: List the values given
Step 2: Consider the relevant equation
F = m × a
Step 3: Rearrange to make acceleration the focus
a = F ÷ m
Step 4: Investigate the minimum possible acceleration
4 N ÷ 5 kg = 0.8 m s–2
Step 4: Investigate the maximum possible acceleration
4 + 8 + 24 = 36 N
36 N ÷ 5 kg = 7.2 m s–2
Step 5: Consider this range and the options
A rocket produces an upward thrust of 15 MN and has a weight of 8 MN.
A. When in flight, the force due to air resistance is 500 kN.
Determine what is the resultant force on the rocket.
B. The mass of the rocket is 0.8 × 105 kg.
Calculate the magnitude and direction of the acceleration of the rocket.
The direction you consider positive is your choice, as long as the signs of the numbers (positive or negative) are consistent throughout the question.It is a general rule to consider the direction the object is initially travelling in as positive. Therefore all vectors in the direction of motion will be positive and opposing vectors, such as drag forces, will be negative.
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