Answer:
36.06 J if you define g = 9.8 m/s² or 36.8 J if you define g = 10 m/s²
Step-by-step explanation:
Potential Energy = Mass x Gravitational Acceleration x Height
It can be expressed as
where PE is potential energy, m is mass, g is gravitational acceleration and h is height.
In this case, we know mass is 0.40 kg and height of 9.2 m as well as gravitational acceleration is defined to be 9.8 m/s² (You can also define g = 10 m/s²)
Therefore, substitute given information in formula:
![\displaystyle{PE=0.40 \ * \ 9.8 \ * 9.2 }\\\\\displaystyle{PE=36.06 \ J}](https://img.qammunity.org/2023/formulas/physics/college/x9j4ijq8kgbf9tdctqzzfdtdyfpks0k8n9.png)
With g = 10 m/s², you'll get:
![\displaystyle{PE = 0.40 \ * 10 \ * 9.2}\\\\\displaystyle{PE = 36.8 \ J}](https://img.qammunity.org/2023/formulas/physics/college/7sp641c26ox48wuyaiqsheb7gs9dc8lfb3.png)
Note that J is for joule unit.
Therefore, the answer is 36.06 J if you define g = 9.8 m/s² or 36.8 J if you define g = 10 m/s² - both work.