Formula-Physics-Midterm PDF
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Villagers Montessori College
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This document provides a collection of physics formulas, including those for average velocity, displacement, speed, acceleration, and constant acceleration. The formulas are presented in a structured format to aid in understanding and applying them in physics calculations.
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CALCULUS-BASED PHYSICS βπ π= π FORMULA AVERAGE VELOCITY UNIT CONVERSION...
CALCULUS-BASED PHYSICS βπ π= π FORMULA AVERAGE VELOCITY UNIT CONVERSION *for distance 0.45 L = ___mL? π 1L = 1000mL β conversion factor ππππ = π ππππππ where: π. ππ π³ π = πππππ ππ³ d = distance travelled t = elapse time DISTANCE or *for displacement π πππππππ = πΆπ¨ + πΆπ© ππ ππ β ππ DISPLACEMENT ππππ = β= ππ ππ β ππ ππ = ππ β ππ AVERAGE SPEED where: π»ππππ π πππππππ πππππππππ πΊπππ = x1 = Initial position ππ x2 = Final position ACCELERATION SPEED ππ β ππ βπ ππππ = = ππ β ππ βπ π«πππππππ π»ππππππππ πΊππππ = π»πππ π»ππππ where: VELOCITY ππ = πππππ π£ππππππ‘π¦ ππ = ππππ‘πππ π£ππππππ‘π¦ (πΉππππ πππ ππ‘πππ β πΌπππ‘πππ πππ ππ‘πππ) βπ£ = πβππππ ππ π£ππππππ‘π¦ πππππππ‘π¦ = ππππ π‘ππππ βπ‘ = π‘πππ πππ‘πππ£ππ or CONSTANT ACCELERATION: A SPECIAL CASE FREE FALLING BODIES (UNIFORMLY ACCELERATED MOTION) π = ππ 1.) π = ππππ π π π ππ βππ π= ππ 2.) π Μ = π π ππ βππ ππ 3.) π = π=β π π 4.) ππ π = ππ π + πππ π = βπππ π 5.) π = ππ π + π πππ where: v = velocity This formula: g = gravity (9.8 m/s2) ππ β ππ π= h = height π t = time can derived to: NEWTONβS LAW OF MOTION ππ = ππ β ππ 2ND LAW OF MOTION ππ β ππ π= π π½π = π½π + ππ π = ππ π½π = π½π β ππ π π= π This formula: ππ π = ππ π + πππ π π= π can derived to: πππ β πππ GRAVITATIONAL FORCE π= ππ ππ = ππ πππ β πππ π = ππ THE NORMAL FORCE To find π in the problem involving applied force and ππ΅ = πππ + ππ frictional force: or ππ΅ = π (π + ππ ) ππππ β ππ π= π However, if the table and block is not accelerating relative to the ground then ππ is = 0 and the TENSION equation for the normal force is ππ΅ = ππ ππ» = π ( π + π ) COEFFICIENT OF FRICTION For two equation in two unknowns, a and T. Static Friction: Block B (which could be on a table or another surface, on a horizontal surface) Ff β€ π s FN ππ© = π» = π π© π Kinetic Friction: where: Ff = π k FN ππ΅ = πππ π ππ π΅ππππ π΅ π = πππππππππ‘πππ where: πk = coefficient friction Block A (often the hanging mass, hanging FN = normal force vertically, subject to gravity.) Newton's second law applied to a scenario ππ¨ = π π¨ π β π» = π π¨ π involving applied force, frictional force, and where: the resulting acceleration of an object. ππ΄ = πππ π ππ π΅ππππ π΄ π = πππππππππ‘πππ ππππ β ππ = ππ π = ππππ£ππ‘π¦ where: πΉπππ = πππππππ πππππ To find the π in two equation in two unknowns, a πΉπ = πππππ‘πππ πππππ and T: π = πππ π ππ¨ π π = πππππππππ‘πππ π= ππ¨ + ππ© where: ππ΄ = πππ π ππ π΅ππππ π΄ ππ΅ = πππ π ππ π΅ππππ π΅ π = ππππ£ππ‘π¦ BASAHIN NβYO PA RIN ANG MGA MODULE AT PPT, WALA NAMAN DβYAN ANG LAHAT NG SAGOT - jerickguyala