219k views
1 vote
Sebuah pegas memiliki beban 5 kg dan digantung vertikal. Jika pegas tersebut bertambah panjang 7 cm maka perubahan energi potensial pegas tersebut adalah…

User Mavelo
by
9.6k points

2 Answers

4 votes

Answer:

Perubahan energi potensial pegas adalah 17.1675 J

Step-by-step explanation:

Untuk menyelesaikan pertanyaan, kami mencatat bahwa energi potensial elastis diberikan sebagai;

Energi potensial elastis=
E_p=(1)/(2) * k * x^(2)

Dimana:

k = Konstanta pegas

x = perpanjangan musim semi = 7 cm = 0.07 m

Paksa di musim semi = -kx

Di mana, pegas adalah satu-satunya objek yang berkontribusi pada gaya yang kita miliki

Memaksa= m×g = 5 × 9.81 = 49.05 N

Karena itu, k = 49.05/0.07 = 700.714 N/m

Oleh karena itu, perubahan energi potensial elastis adalah


E_(p1)=(1)/(2) * k * x_1^(2)\\E_(p2)=(1)/(2) * k * x_2^(2)\\\Delta E_p = E_(p2) -E_(p1) = (1)/(2) * k * x_2^(2) - (1)/(2) * k * x_1^(2) = (1)/(2) * k * (x_2^(2) - x_1^(2))

Kami memiliki, x₁ = 0 m karena pegas diasumsikan awalnya tidak diregangkan

Karena itu,


\Delta E_(p)=(1)/(2) * k * x_2^(2)


\Delta E_(p)=(1)/(2) * 700.714 * 0.07^(2) = 17.1675 J and

Perubahan energi potensial pegas = 17.1675 J

User Hannson
by
9.1k points
1 vote

Answer:

It is elastic potential energy

Step-by-step explanation:

Elastic potential energy is stored energy that results from applying a force to deform an elastic object. The energy is stored until the force is removed and the elastic object returns to its original shape, doing work in the process. Deformation may involve compressing, stretching, or twisting the object. Many objects are specifically designed to store elastic potential energy, for example:

The spring of a winding watch.

User RSTM
by
8.7k points