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  1. Mass and weight worksheet. NAME _____________________________ Period __________ Physical Science Mass and Weight. Use the following formula to solve for weight: Weight (W) = Mass (m) x gravity (g) W = mg. Mass is measured in kilograms (kg) Gravity on earth is a constant: 9.8 m/s2 Weight is measured in Newton’s (1 N = 1 kg m/s2)

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  2. 1 m3= 1000 liters 1 atm = 1.01 𝑥𝑥 105Pa 1 Pa = 1 N/m2. (area of circle A=πr2) Physics 101 Formulas. 12/7/2017 3. Temperature and Heat. Temperature: Celsius (𝑇𝑇𝐶𝐶) to Fahrenheit (𝑇𝑇𝐹𝐹) conversion: 𝑇𝑇𝐶𝐶= . 5 9.

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  3. B= ˆVg= Weight of displaced liquid Equation of continuity: A 1v 1 = A 2v 2 v 1 v 2 Bernoulli’s equation: p+ 1 2 ˆv 2 + ˆgh= constant Torricelli’s theorem: v e ux = p 2gh Viscous force: F= A dv dx Stoke’s law: F= 6ˇ rv F v Poiseuilli’s equation: Volume ow time = ˇpr4 8 l l r Terminal velocity: v t= 2r2(ˆ˙ )g 9

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  4. In general, when converting from base units (m, l, g, etc) or derived units (m2,m3, m/s, Hz, N, J, V, etc) to a multiple greater (kilo, mega, giga, or tera) than the base or derived unit- then divide by the factor. For example: 10m = 10/1000km = 1/100 km = .01km. When converting from base units or derived units to a multiple smaller (centi ...

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  5. Physics Formula Sheet Mechanics Electricity Geometry Trigonometry v = v 0 + at x = x 0 + vx 0 t + axt 1 2 2 Variables a = acceleration A = amplitude d = distance E = energy ƒ = frequency F = force I = rotational inertia KE = kinetic energy k = spring constant L = angular momentum ℓ = length m = mass P = power p = momentum r = radius T ...

  6. Weight is a force and it is the pull of gravity acting on an object. It is measured in Newtons. Experiment Collect a 20N spring balance and a set of 100 g masses. Predict the weight (force of gravity) on 100 g. Record this in the table. Test your answer and record the measured weight.

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  8. Physics 101 Formulas 4/9/2019 2 Fluids Ÿ =e Ž, Ÿ(ı)= Ÿ(0)+ ł5ı change in pressure with depth ı ł =• œ (density) Buoyant force L š = ł5ž qG = weight of displaced fluid Flow rate € = + Z¡ Z = + 3 ¡ 3 continuity equation Ÿ Z + Z 3 ł+ Z 3 + ł5u Z = Ÿ 3 + Z 3 ł+ 3 3 + ł5u 3 Bernoulli equation Simple Harmonic Motion