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Class Notes for Physics at Simon Fraser University

PHYS 101 Lecture Notes - Lecture 34: Venturi Effect, Statics
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PHYS 101: Physics for the Life Sciences Lecture 34: Fluid Statics IV Consider a varying tube Take the fluid in the tube as the system External Forces: F 1F ...

Physics
PHYS 101
Andrew Debenedictis
PHYS 101 Lecture Notes - Lecture 33: The Fluid, Buoyancy, Statics
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PHYS 101: Physics for the Life Sciences Lecture 33: Fluid Statics III ● Buoyancy Force = weight of the fluid displaced. ● Viscosity = internal friction of the fluid ...

Physics
PHYS 101
Andrew Debenedictis
PHYS 101 Lecture 32: Fluid Statics II
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PHYS 101: Physics for the Life Sciences Lecture 32: Fluid Statics IITake A and B to be two different levels of a fluidABy. is higher than by an amount BThen the pressure at is :P=P+gyBAExample:A car lift in a service stati...

Physics
PHYS 101
Andrew Debenedictis
PHYS 101 Lecture Notes - Lecture 31: Threshold Of Pain, Decibel, Statics
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PHYS 101: Physics for the Life Sciences Lecture 31: Intensity and Fluid Mechanics and StaticsIntensity:PavgI=AP= PowerA=Area2[]=WmThe minimum intensity that can be registered by the human ear is 12210Wm.2The pain threshold...

Physics
PHYS 101
Andrew Debenedictis
PHYS 101 Lecture Notes - Lecture 30: Angular Frequency, Wavenumber, Eardrum
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PHYS 101: Physics for the Life Sciences Lecture 30: Waves and Wave Motion There are two types of waves: 1. Transverse Waves: ● The disturbance is perpendicular to the d...

Physics
PHYS 101
Andrew Debenedictis
PHYS 101 Lecture Notes - Lecture 29: Angular Frequency, Propagation Constant, Simple Harmonic Motion
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PHYS 101: Physics for the Life Sciences Lecture 29: Simple Harmonic Motion x(t)=Acos(ωt+δ) V (t)=−Aωsin(ωt+δ) 2 A(t)=−A ω sin(ωt+δ) 2 Acos(ωt+δ)¿ ...

Physics
PHYS 101
Andrew Debenedictis
PHYS 101 Lecture Notes - Lecture 28: Simple Harmonic Motion
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PHYS 101: Physics for the Life Sciences Lecture 28: Oscillatory Motion and Energy General Example: x(t)=A⋅cos(ωt+δ) dx(t) =V (t)=−A⋅ω⋅sin(ωt+δ) ...

Physics
PHYS 101
Andrew Debenedictis
PHYS 101 Lecture Notes - Lecture 26: Angular Velocity, Angular Acceleration, Maltese Lira
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PHYS 101: Physics for the Life Sciences Lecture 26: Angular Momentum Examples dL dt =τ ❑ If there is no net torque on the system then, dL =0 dt A...

Physics
PHYS 101
Andrew Debenedictis
PHYS 101 Lecture Notes - Lecture 27: Angular Velocity, Bicycle Wheel
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PHYS 101: Physics for the Life Sciences Lecture 27: Angular Momentum Example and Oscillatory Motion Example: A student is holding a spinning bicycle wheel and is sitting in an office chair...

Physics
PHYS 101
Andrew Debenedictis
PHYS 101 Lecture Notes - Lecture 25: Cross Product
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PHYS 101: Physics for the Life Sciences Lecture 25: Rotational Dynamics Energy Example and Angular Momentum Example: pulley known. A. Calcul...

Physics
PHYS 101
Andrew Debenedictis
PHYS 101 Lecture 24: Rotational Dynamics Example and Rotational Energy
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PHYS 101: Physics for the Life Sciences Lecture 24: Rotational Dynamics Example & Rotational Energy Example: Calculate the magnitudes of the tensions if: ...

Physics
PHYS 101
Andrew Debenedictis
PHYS 101 Lecture Notes - Lecture 23: Acceleration, Angular Acceleration
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PHYS 101: Physics for the Life Sciences Lecture 23: Rotational Dynamics Examples Example: Consider the following object. Two cylinders are stuck together ...

Physics
PHYS 101
Andrew Debenedictis
PHYS 101 Lecture 21: PHYS 101 - Lecture 21 - Rotational Dynamics II
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PHYS 101: Physics for the Life Sciences Lecture 21: Rotational Dynamics II Consider spinning a body of mass m on the end of a rigid wire of negligible mass. We can decompo...

Physics
PHYS 101
Andrew Debenedictis
PHYS 101 Lecture 22: Rotational Dynamics Example Part 2
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PHYS 101: Physics for the Life Sciences Lecture 22: Rotational Dynamics Example Example: Consider the following object: Two cylinders are stuck together a...

Physics
PHYS 101
Andrew Debenedictis
PHYS 101 Lecture Notes - Lecture 20: Angular Acceleration
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PHYS 101: Physics for the Life Sciences Lecture 20: Non-Uniform Rotational Motion II and Rotational Dynamics Recall: ∣ t= r∣⋅∣α∣⇒ Tangential Acceleration 2 2 2 ∣V∣ ∣ ∣∣ω ∣ ∣...

Physics
PHYS 101
Andrew Debenedictis
Thermodynamics - Reference Guides

This detailed and well structured Guide builds upon the Physics principles defined in its companion Guides. The basic concepts are clearly and concisely defined and the laws of Thermodynamics are clearly articulated. Graph...

Chemistry
CHEM 11100
All Professors
Physics - Reference Guides

This Guide is an aid to understanding one of the essential ‘hard’ sciences. Concepts such as mechanics and magnetism are explained in clear terms, aided by a number of useful examples and equations. The Guide provides the ...

Basic Engineering
BE 1101
All Professors

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