36-39 Flashcards

1
Q

displacement

A

the final position minus starting position (NET DISTANCE, not individual distances)

total distance is often greater

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2
Q

velocity

A

displacement / time

Velocity is a Vector that specifies SPEED and DIRECTION

if displacement is 0 then velocity is 0 (IMPORTANT)

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3
Q

speed

A

the speed of your car, a Scalar

velocity cannot exceed speed

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4
Q

assume all collisions are inelastic, unless otherwise specified

A

TOTAL MOMENTUM IS ALWAYS CONSERVED, KE is SOMETIMES conserved

for elastic, KE is conserved

subatomic particles are elastic collision

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5
Q

heat transfer equation

A

kA (Ti - Tf) / L

A = Area
L = thickness
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6
Q

isobaric

A

work done is the area (pay attention to arrow)

W = P * ∆V

∆E = Q - P∆V

adding Q increases expansion of the gas

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7
Q

∆E = Q - W

A

Q is positive when heat moves into the system

W is positive when work is done to the environment

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8
Q

isothermal

A

Q = W (an isotherm)

∆E = 0 (no change in internal energy)

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9
Q

adiabatic

A

no heat is transferred, all energy is transferred as work

a rapidly expanding gas drops pressure and cools; but no heat is exchanged

Q = 0

∆E = -W

the system loses energy

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10
Q

isochoric

A

same volume; ∆E = Q

work is 0 because volume is constant!

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11
Q

conduction

A

hot sand transfers heat by touching; radiation is by sun

conDuction = “damn that was hot”

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12
Q

convection

A

flow of heat in gases and fluids

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13
Q

if an object’s density is 3/4 the density of fluid…

A

3/4 will be submerged

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14
Q

Bernoulli assumptions

A
  1. incompressible
  2. no viscosity
  3. laminar flow
  4. steady flow
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15
Q

torricelli’s result

A

v = (2gD)^.5

you have to 4x height to double the flow rate

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16
Q

torricelli’s result

A

v = (2gD)^.5

you have to 4x height to double the flow rate

17
Q

Young’s modulus impacts strain

A

The ∆L is determined by Young’s modulus, so strain is dependent on YM

Strain is inversely proportional to Young’s modulus