A.3.2—Work as energy transfer
- Syllabus
- First assessment 2025
- Objective
- —
- Level
- HL
Work transfers energy
Work done by a force is the energy transferred by that force. For a constant force,
W=Fscosθ
where θ is the angle between force and displacement.
Use the sign
Positive work transfers energy into the object’s relevant store; negative work transfers energy out of it. A force perpendicular to displacement does zero work.
Follow the physical process
Wind can transfer kinetic energy to a turbine through work, while resistive forces can transfer mechanical energy to internal energy of the surroundings.
Common trap
Do not call every force an energy transfer. Check whether the force has a component along the displacement.
The evidence asks for energy transfers in a wind generator and asks for work done on air by a falling object at terminal speed.
Describe / Calculate / State
Name the force and the initial/final energy stores it connects. For a constant force use W=Fs cosθ; for a force–distance graph, the area represents work done. Include the direction of transfer.
Confusing power with work or omitting the component of force parallel to displacement.
Representative question
Describe the energy transfers taking place in a wind generator.
kinetic energy of wind to rotational/kinetic/mechanical energy of turbine/generator
rotational/kinetic/mechanical energy of turbine/generator to electrical energy
Account for energy
Define the system, identify energy stores and describe transfers. Work done by a force transfers energy; total energy is conserved even when mechanical energy is not.
Use the mechanical model
E_k=rac12mv^2,\quad \Delta E_{p,g}=mg\Delta h,\quad E_{p,elastic}=rac12k(\Delta x)^2
Conserve their sum only when resistive transfers are absent or included explicitly.
Use rates and ratios
P=rac{\Delta E}{\Delta t}=Fv,\qquad \eta=rac{E_{useful}}{E_{input}}=rac{P_{useful}}{P_{input}}
Fuel energy density connects available input energy to a chosen volume.
Final checks
Check the system boundary, signs of work and potential-energy changes, the reference height, extension from natural length, and whether the quantity is energy, power, efficiency or energy density.