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Answer :
The gravitational potential energy (PE) can be calculated using the formula
[tex]$$
PE = mgh,
$$[/tex]
where:
- [tex]$m$[/tex] is the mass,
- [tex]$g$[/tex] is the acceleration due to gravity,
- [tex]$h$[/tex] is the height above the ground.
For the chipmunk, we have:
- [tex]$m = 2\,\text{kg}$[/tex],
- [tex]$g = 9.8\,\text{m/s}^2$[/tex],
- [tex]$h = 10\,\text{m}$[/tex].
Substitute the values into the formula:
[tex]$$
PE = 2 \times 9.8 \times 10.
$$[/tex]
Calculating the product:
[tex]$$
2 \times 9.8 = 19.6,
$$[/tex]
and then
[tex]$$
19.6 \times 10 = 196.
$$[/tex]
Thus, the gravitational potential energy of the chipmunk is
[tex]$$
196\,\text{J}.
$$[/tex]
The correct answer is A. 196 J.
[tex]$$
PE = mgh,
$$[/tex]
where:
- [tex]$m$[/tex] is the mass,
- [tex]$g$[/tex] is the acceleration due to gravity,
- [tex]$h$[/tex] is the height above the ground.
For the chipmunk, we have:
- [tex]$m = 2\,\text{kg}$[/tex],
- [tex]$g = 9.8\,\text{m/s}^2$[/tex],
- [tex]$h = 10\,\text{m}$[/tex].
Substitute the values into the formula:
[tex]$$
PE = 2 \times 9.8 \times 10.
$$[/tex]
Calculating the product:
[tex]$$
2 \times 9.8 = 19.6,
$$[/tex]
and then
[tex]$$
19.6 \times 10 = 196.
$$[/tex]
Thus, the gravitational potential energy of the chipmunk is
[tex]$$
196\,\text{J}.
$$[/tex]
The correct answer is A. 196 J.
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