Equations and Formulas Flashcards

1
Q

Kinematics Equations for constant acceleration

A
v = ds/dt
s = .5(vf + vi)t
a = dv/dt
vf = vi + at
s = vit + .5at^2
vf^2 = vi^2 + 2as
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2
Q

Horizontal Motion (Projectile)

A
ax = 0
vx = sx/t
sx = vxt
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3
Q

Vertical Motion (Projectile)

A
ay = g = 10 m/s
vy = viy + gt
sy = viyt + .5gt^2
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4
Q

Projectile Motion: How to find max height of ball?

A

First find time it takes to reach max height and then find distance (all in terms of y)

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5
Q

Horizontal Motion (Projectile)

A
ax = 0
vx = sx/t
sx = vxt
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6
Q

Vertical Motion (Projectile)

A
ay = g = 10 m/s
vy = viy + gt
sy = viyt + .5gt^2
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7
Q

Projectile Motion: How to find max height of ball?

A

First find time it takes to reach max height and then find distance (all in terms of y)

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8
Q

Static and Kinetic Friction

A

Fs = Fnus, Fk = Fnuk

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9
Q

Momentum

A

p = mv

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10
Q

Impulse

A

F*delta t = m * delta v = change in momentum

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11
Q

Three types of conservation

A

recoil, inelastic collision, and elastic collision

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12
Q

Inelastic collision

A

objects stick together. Momentum is conserved, kinetic energy is NOT

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13
Q

Elastic collision

A

objects do NOT stick together. Momentum is conserved AND kinetic energy is conserved

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14
Q

Equation for Work

A

W = Fd, W = fd*cos(theta) where theta is the angle between the applied force and the displacement. (J)

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15
Q

Potential Energy Equation

A

W = F*d = mgh = PE = delta KE

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16
Q

Kinetic Energy Equation

A

KE = .5mv^2

17
Q

Conservation of Energy Equation

A

PEi + KEi = PEf + KEf

18
Q

Power Equation

A

P = work/time (W)

19
Q

Three Centripetal Vectors

A

centripetal force, velocity, and acceleration

20
Q

Speed of an object moving in a circle

A

v = 2piR/t where R is the radius of the circle

21
Q

Centripetal Acceleration Equation

A

a = v^2/R

22
Q

Fnet equation for an object in circular motion

A

Fnet = mv^2/R

23
Q

Centrifugal vs. Centripetal

A

Centripetal force pulls an object toward the center of its circular path; centrifugal force “center-fleeing” is not a real fore but the perceived effect of inertia

24
Q

Torque Definition

A

Torque is the product of the perpendicular component of the force and the distance (r) from the rotational axis. (N*m)

25
Q

Torque in Static Equilibrium

A
F1r1 = F2r2
(m1g)r1 = (m2g)r2
26
Q

Equation for Angular Momentum

A

L = mvr

27
Q

When is Angular Momentum Conserved?

A

Angular Momentum is conserved when there are no net external torques.

28
Q

Period (T) Equation and Units

A

T = d/t, units = seconds, years, etc…

29
Q

Harmonic Motion Definition

A

An object is moving with harmonic motion if it follows a repeated path at constant time intervals.

30
Q

The period and frequency of a pendulum depend on…?

A

ONLY the length and its acceleration due to gravity. (NOT ITS MASS)

31
Q

Equilibrium position of a pendulum

A

lowest point

32
Q

Maximum displacement from equilibrium

A

amplitude

33
Q

Restoring force

A

force that is trying to restore the pendulum back toward the center of the swing. Greatest at the amplitude and zero as the pendulum passes through the equilibrium position.

34
Q

Hooke’s Law

A

Fspring = kx where x is the stretched length of the spring

35
Q

Total energy of a mass on a spring or a pendulum =

A

the sum of the potential and kinetic energies. KE + PE = total energy = a constant