266442
Acceleration a versus position \(x\) and potenitial energy \(U\) versus position \(x\) graph of a particle of mass 1 kg moving along \(x\)-axis are shown in figure. Assume that at \(x=0\), the velocity of the particle is 4 ms match the following at \(x=8 \mathrm{~m}\) |Column - I|Column- 11| |-------|------| |(A) Kinetic energy|(P) 120.| |(B) Work done by conservative force|(Q) 240 J| |(C) Total work done|(R) 128 J| |(D) Work done by external forces|(S) 112 J| | | (T) None|
266442
Acceleration a versus position \(x\) and potenitial energy \(U\) versus position \(x\) graph of a particle of mass 1 kg moving along \(x\)-axis are shown in figure. Assume that at \(x=0\), the velocity of the particle is 4 ms match the following at \(x=8 \mathrm{~m}\) |Column - I|Column- 11| |-------|------| |(A) Kinetic energy|(P) 120.| |(B) Work done by conservative force|(Q) 240 J| |(C) Total work done|(R) 128 J| |(D) Work done by external forces|(S) 112 J| | | (T) None|
266442
Acceleration a versus position \(x\) and potenitial energy \(U\) versus position \(x\) graph of a particle of mass 1 kg moving along \(x\)-axis are shown in figure. Assume that at \(x=0\), the velocity of the particle is 4 ms match the following at \(x=8 \mathrm{~m}\) |Column - I|Column- 11| |-------|------| |(A) Kinetic energy|(P) 120.| |(B) Work done by conservative force|(Q) 240 J| |(C) Total work done|(R) 128 J| |(D) Work done by external forces|(S) 112 J| | | (T) None|
266442
Acceleration a versus position \(x\) and potenitial energy \(U\) versus position \(x\) graph of a particle of mass 1 kg moving along \(x\)-axis are shown in figure. Assume that at \(x=0\), the velocity of the particle is 4 ms match the following at \(x=8 \mathrm{~m}\) |Column - I|Column- 11| |-------|------| |(A) Kinetic energy|(P) 120.| |(B) Work done by conservative force|(Q) 240 J| |(C) Total work done|(R) 128 J| |(D) Work done by external forces|(S) 112 J| | | (T) None|