Answer: An 8 kg book at a height of 3 m has the most gravitational potential energy.
Step-by-step explanation:
Gravitational potential energy is the product of mass of object, height of object and gravitational field.
So, formula to calculate gravitational potential energy is as follows.
U = mgh
where,
m = mass of object
g = gravitational field =
![9.81 m/s^(2)](https://img.qammunity.org/2022/formulas/physics/college/hauk306akyihi9bo4fh9ywjbxc8l40bwyf.png)
h = height of object
(A) m = 5 kg and h = 2m
Therefore, its gravitational potential energy is calculated as follows.
![U = mgh\\= 5 kg * 9.81 m/s^(2) * 2 m\\= 98.1 J (1 J = kg m^(2)/s^(2))](https://img.qammunity.org/2022/formulas/physics/college/kwkvrr46zzznk1t7djgerh6hepl0ng9iiy.png)
(B) m = 8 kg and h = 2 m
Therefore, its gravitational potential energy is calculated as follows.
![U = mgh\\= 8 kg * 9.81 m/s^(2) * 2 m\\= 156.96 J (1 J = kg m^(2)/s^(2))](https://img.qammunity.org/2022/formulas/physics/college/7rrdnxbfi3u4zbvevh486ox83e3weplcbh.png)
(C) m = 8 kg and h = 3 m
Therefore, its gravitational potential energy is calculated as follows.
![U = mgh\\= 8 kg * 9.81 m/s^(2) * 3 m\\= 235.44 J (1 J = kg m^(2)/s^(2))](https://img.qammunity.org/2022/formulas/physics/college/65jtl2m4sq2913tajiigsp6oxwv2ifd9lj.png)
(D) m = 5 kg and h = 3 m
Therefore, its gravitational potential energy is calculated as follows.
![U = mgh\\= 5 kg * 9.81 m/s^(2) * 3 m\\= 147.15 J (1 J = kg m^(2)/s^(2))](https://img.qammunity.org/2022/formulas/physics/college/yu5djlyvv6mk6mp1lq704bl3gksizy2t4f.png)
Thus, we can conclude that an 8 kg book at a height of 3 m has the most gravitational potential energy.