Velocity-time graph of ball thrown up with air resistance - Part 2Evan TohSep 26, 20251 min readRefer to the video below for the explanation.Velocity-time graph of ball thrown up with air resistance - Part 2 https://youtu.be/IyCRlUv4A4ARelated post:Velocity-time graph of ball released from rest with air resistance - Part 1https://youtu.be/ccWnKbjkezchttps://youtu.be/clD1b1i7yX0https://youtu.be/en2RM_Z14AUhttps://youtu.be/JuK9pHHa-kk
Velocity-time graph of ball released from rest with air resistance -Part 1Evan TohSep 26, 20251 min readRefer to the video below to understand how to sketch the graph. For O-Level, we just need to focus on the general shape. https://youtu.be/ccWnKbjkezc?si=aONwGbihpwAYeVql2024PP Paper 2 Q1Related videohttps://youtu.be/IyCRlUv4A4Ahttps://youtu.be/clD1b1i7yX0https://youtu.be/en2RM_Z14AUhttps://youtu.be/JuK9pHHa-kk
Box is pushed up a slope with increase in KE and work done against friction.Evan TohSep 8, 20251 min readUpdated: Sep 9, 2025For such questions, it is useful to understand conservation of energy. Work done by the pushing force = GPE + KE + work done against frictionAnswer: (a) 8.0J (b) 200 J (c) 464 J (d) 0.18 m/s2Box is pushed up a slope with increase in KE and work done against friction. https://youtu.be/hbTIDi1Rmqk