A scientific model of a wind turbine's power output is described by the equation , where is the air density, is the swept area of the rotor blades (, where is the blade length), is the wind velocity, and is the turbine efficiency. Match each modification to the turbine's operating conditions or physical dimensions (on the left) with its corresponding mathematical effect on the power output (on the right), assuming all other variables remain constant.
- The wind velocity is doubled.The power output increases by a factor of 8.
- The blade length is doubled.The power output increases by a factor of 4.
- The air density is quadrupled and the wind velocity is halved.The power output decreases by a factor of 2 (is halved).
- The turbine efficiency is halved, the air density is halved, and the blade length is halved.The power output decreases by a factor of 16.
Cevap
The correct matches are: doubling wind velocity increases power by a factor of 8; doubling blade length increases power by a factor of 4; quadrupling air density while halving wind velocity halves the power; halving efficiency, air density, and blade length decreases power by a factor of 16.
Each physical modification is correctly matched to its mathematical effect by evaluating the mathematical proportion of each variable in the power equation: .
Adım Adım Çözüm
Anahtar Kavram
Analyzing proportional and power-law relationships in scientific equations.
Tahmini Süre:1m 30s