Knowee
Questions
Features
Study Tools

Calculate the magnitude of the component of the brick’s weight which acts parallel to the slope.

Question

Calculate the magnitude of the component of the brick’s weight which acts parallel to the slope.

🧐 Not the exact question you are looking for?Go ask a question

Solution

To calculate the magnitude of the component of the brick's weight which acts parallel to the slope, you need to know the weight of the brick and the angle of the slope. Here are the steps:

  1. Calculate the weight of the brick: The weight of the brick can be calculated by multiplying its mass by the acceleration due to gravity. The formula is W = m * g, where W is the weight, m is the mass, and g is the acceleration due to gravity (approximately 9.8 m/s^2 on Earth).

  2. Calculate the component of the weight parallel to the slope: The component of the weight that acts parallel to the slope can be calculated by multiplying the weight by the sine of the angle of the slope. The formula is W_parallel = W * sin(θ), where W_parallel is the weight component parallel to the slope, W is the weight, and θ is the angle of the slope.

Remember to use the same units throughout your calculations.

This problem has been solved

Similar Questions

Calculate the component of the weight downthe slope.

A brick is resting on a rough incline as shown in the figure below. The friction force acting on the brick, along the incline, is Group of answer choicesless than the weight of the brick.there is not enough information to determinezero.greater than the weight of the brick.equal to the weight of the brick.

Find the magnitude of the tension in each supporting cable shown below. In each case, the weight of the suspended body

A rocket is attached to a crate with a combined mass of 1330 kg. The crate is launched with 242 N of thrust down a frictionless icy hill sloped at 16.4° from the horizontal. What is the magnitude of acceleration of the crate while it travels down the hill?

The horizontal beam of length 𝐿𝑏𝑚 ≔ 9.397 𝑚 shown below weighs 𝑀𝑏𝑚 ≔ 230.0 𝑁, and itscenter of gravity is at its center. Given 𝐿𝑐𝑎𝑏 ≔ 11.00 𝑚 and ℎ ≔ 5.00 𝑚, Find (a) the tension inthe cable if the weight of the can is 𝑊𝑐𝑎𝑛 ≔ 350.0 𝑁, and (b) the horizontal and verticalcomponents of the force exerted on the beam at the wall. (3 sig figs)

1/2

Upgrade your grade with Knowee

Get personalized homework help. Review tough concepts in more detail, or go deeper into your topic by exploring other relevant questions.