Question
Download Solution PDFThe work done to increase the velocity of a 1500 kg car from 36 km/h to 72 km/h is
Answer (Detailed Solution Below)
Detailed Solution
Download Solution PDFThe correct option is: 2
Concept Used:
- Work-Energy Theorem: This theorem states that the net work done by the force on a body is equal to the change in its kinetic energy.
- Mathematically, Work Done (W) = Final Kinetic Energy - Initial Kinetic Energy
- Kinetic Energy (K.E) is given by the formula: K.E = (1/2) × m × v2
- So, W = (1/2) × m × (v2 - u2), where:
- m = mass of the object
- v = final velocity
- u = initial velocity
Calculation:
- Given:
- Mass of the car (m) = 1500 kg
- Initial velocity (u) = 36 km/h = 36 × (1000 ÷ 3600) = 10 m/s
- Final velocity (v) = 72 km/h = 72 × (1000 ÷ 3600) = 20 m/s
- Using the work-energy theorem:
W = (1/2) × m × (v2 - u2)
⇒ W = (1/2) × 1500 × (202 - 102)
⇒ W = (1/2) × 1500 × (400 - 100)
⇒ W = (1/2) × 1500 × 300
⇒ W = 750 × 300
⇒ W = 225000 J
⇒ W = 2.25 × 105 J
Additional Information:
- Work done is a scalar quantity and is expressed in joules (J) in the SI system.
- This type of question is commonly asked in mechanics under the topic of energy and work.
- Always convert velocities from km/h to m/s before substituting in the kinetic energy formula: multiply by (1000 ÷ 3600) or simplify as 5/18.
Diagram/Visual Aid Suggestion:
- A diagram showing a car moving initially at a lower speed and then at a higher speed with vectors labeled u and v.
- Include a bar graph representing the initial and final kinetic energy for visual comparison.
Last updated on May 24, 2023
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