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a district v2 scooter deck is around 1.25 kg

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How do you solve boyles law equation for V2?

To solve Boyle's Law equation for V2, first write the equation as P1V1 = P2V2. Then rearrange it to isolate V2 on one side, dividing both sides by P2 to solve for V2, which will be V2 = (P1 * V1) / P2.


What is the final velocity of an object (v2) when the initial velocity (v0), acceleration (a), and displacement (d) are known and can be calculated using the equation v2 v02 2ad?

The final velocity of an object (v2) can be calculated using the equation v2 v02 2ad, where v0 is the initial velocity, a is the acceleration, and d is the displacement.


When a deck of cards slips out of your hand and falls to the groud gravity does work on it?

No, gravity does not do work on the deck of cards when it slips out of your hand and falls to the ground. Work is done when a force causes a displacement, and in this case, gravity only affects the deck of cards due to its weight, pulling it downward without causing displacement.


If you initially have a gas at a pressure of 12 ATM a volume of 23 liters and then you raise the pressure to 14 ATM what is the new volume of the gas?

The volume of the gas will decrease proportionally to the increase in pressure, following Boyle's Law. Using the formula P1V1 = P2V2, where P1 = 12 ATM, V1 = 23 L, and P2 = 14 ATM, we can solve for V2 to find the new volume of the gas. Solving for V2 gives V2 = (P1)(V1) / P2 = (12)(23) / 14 = 19.71 liters.


How do you calculate the angle of refraction?

The angle of refraction can be calculated using Snell's Law, which states that the ratio of the sines of the angles of incidence and refraction is equal to the ratio of the velocities of light in the two media. The formula is given as sin(theta1) / sin(theta2) = v1/v2, where theta1 and theta2 are the angles of incidence and refraction, and v1 and v2 are the velocities of light in the two media.