15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Welcome.

Slides:



Advertisements
Similar presentations
C4.2 Buoyancy Physical Science. C4.2 Buoyancy Supplies: Pencil and Science Journal Standards: – 8c) buoyant force on an object in a fluid is an upward.
Advertisements

Archimedes’ Principle Physics 202 Professor Lee Carkner Lecture 2.
Matter 1. Density: m – mass V – volume Units:
Chapter 3 Section 2 Notes. Fluid  Any substance that has the ability to flow (move on its own) Two States ○ ____________  Can flow because their particles.
Fluids Physics 202 Professor Vogel (Professor Carkner’s notes, ed) Lecture 20.
Physics 101: Lecture 24, Pg 1 Exam 2 : The average increased from 62 to 66 % !
Archimedes’ Principle Physics 202 Professor Lee Carkner Lecture 2 “Got to write a book, see, to prove you’re a philosopher. Then you get your … free official.
Phy 202: General Physics II Ch 11: Fluids. Daniel Bernoulli ( ) Swiss merchant, doctor & mathematician Worked on: –Vibrating strings –Ocean tides.
The tendency or ability of an object to float.
Force : Push or pull Newton: unit to measure force Net force: combination of force Unbalance force: object start moving Balance force: object doesn`t move.
Liquids Chapter 19.
Fluids Archimedes’ Principle Pascal’s Law Bernoulli’s Principle
* Pressure refers to a force pushing on a surface * Force and pressure are closely related, but are not the same thing * Pressure deals with force and.
Chapter 10 Fluids. Units of Chapter 10 Phases of Matter Density Pressure in Fluids Atmospheric Pressure and Gauge Pressure Pascal’s Principle Measurement.
A fluid is a state of matter in which the particles are free to move around one another. No definite shape exists. The term “fluid” encompasses liquids.
Fluids.
Chapter 9 Fluid Mechanics. Chapter Objectives Define fluid Density Buoyant force Buoyantly of floating objects Pressure Pascal's principle Pressure and.
Fluid Forces Mrs. Clarici
Ch. 11 Forces in Fluids. Pressure Pressure-force per unit area on a surface Unit of measurement: pascal (Pa): 1 N/m 2 A fluid is any substance that can.
Physics AP Mr. Jean September 27 th, The plan: Pascal’s Law Typical AP pressure questions –A Car lift (jack) –A Pain in your ear!
CHAPTER - 10 GRAVITATION CLASS :- IX MADE BY :- MANAS MAHAJAN
Go with the Flow How Dense are you? Floaty Force Under Pressure Famous People Hodge Podge
Bernoulli’s, Pascal’s, & Archimedes’ Principles Principles of Fluids.
PHYSICS 103: Lecture 18 Archimedes Principle Example Problems Agenda for Today:
Introduction To Fluids. Density  = m/V  = m/V   : density (kg/m 3 )  m: mass (kg)  V: volume (m 3 )
Chapter 9.1 Review Fluids. 1. What are the properties of a fluid? What states of matter are fluids?
Wednesday, Nov. 24, 2004PHYS , Fall 2004 Dr. Jaehoon Yu 1 1.Quiz Workout 2.Buoyant Force and Archimedes’ Principle 3.Flow Rate and Continuity Equation.
Fluid Mechanics Chapter 8. Mass Density The concentration of matter of an object, measured as the mass per unit volume of a substance. Represented by.
Floating and Sinking. Buoyancy When you pick up an object underwater it seems much lighter due to the upward force that water and other fluids exert known.
Chapter 19 Liquids.
 Volume – the amount of space taken up by matter. ◦ Gasses expand to fill their container.  Temperature- the measure of the motion of the particles.
Unit 6 : Part 1 Fluids.
Properties of Fluids 16-2.
DENSITY & BUOYANCY. BUOYANCY BUOYANCY = the ability to float in a fluid. Examples of fluids = water, air BUOYANT FORCE = the upward force that acts on.
Archimedes’ Principle
Density and Buoyancy Review 1-20 study notes. 1. Density =
Advanced Physics Chapter 10 Fluids.
Liquids -They always take the shape of their container -They flow or you can pour them.
Chapter 10.4 Learning Goals
CONCEPTUAL PHYSICS Liquids.
Jeopardy Q $100 Q $200 Q $300 Q $400 Q $500 Q $100 Q $200 Q $300 Q $400 Q $500 Final Jeopardy.
$1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Welcome.
Liquids Physics principles of liquids Density The density, ρ (rho), of an object is defined as the mass per unit volume ρ ≡ρ ≡ Units are grams/cm 3 or.
PRESSURE & BUOYANCY Ch 11. I. PRESSURE A.The force exerted on a surface divided by the area over which the force is exerted. B.Pressure = Force = Newton’s.
$1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Welcome.
Introduction To Fluids. Density ρ = m/V ρ = m/V  ρ: density (kg/m 3 )  m: mass (kg)  V: volume (m 3 )
Fluid Mechanics Chapter 9 Review. Agenda:  9.1: Fluids and Buoyant Force  9.2: Fluid Pressure and Temperature  9.3: Fluids in Motion  9.4: Properties.
CHECK POINT – FLUID PHYSICS DR. BROWNE. 1.Earth’s ________________ is made of a mix of gases called ______________. 1.The molecules of air are in constant.
AND THEIR FORCES Fluids. Matter that can flow is called a fluid. “Fluid” does not mean the same thing as “liquid.” Both liquids and gases are called fluids.
Physics Section 8.1 Apply the properties of fluids General Phases of Matter 1.Solid-constant shape and volume 2.Liquid-constant volume, variable shape.
Chapter 10 Fluids Pressure in Fluids Pressure is defined as the force per unit area. Pressure is a scalar; the units of pressure in the SI system.
Chapter 9 Forces influence the motion and properties of fluids.
Lecture 14.1 Fluids. Does lead float? Schedule today Fluid Statics Density Pascal's Principle Archimedes Principle Exam Solutions Curve.
Chapter 12: Forces and Fluids
Floating and Sinking.
3-3 Floating & Sinking.
Class Notes: Buoyancy & Density
Unit 2 Floating and Sinking.
Warm – Up Chapter How do particle change from a solid to a liquid? 2. What is the difference between evaporation and boiling? 3. What is sublimation?
3.2 Pressure and the Buoyant Force
Density and Buoyant Force
Chapter 3: Section 2 Fluids.
Chapter Fluid Pressure.
Floating and Sinking.
Floating and Sinking Chapter 11 Section 2.
Kinetic Theory Explains how particles in matter behave
FLUIDS MECHANICS.
Buoyant Force and Archimedes Principle
Pressure in a fluid Pressure in a fluid acts equally in all directions
Liquids.
Presentation transcript:

$1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Welcome to Taylor’s Who Wants to be aN AP-aire FLUIDS Version 50:50

$1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

A: Hooke’s C: Pascal’s B: Newton’s D: Wait. What? 50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 SHM must obey whose “Law”? Final Answer?

50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Wrong Right The number of ‘phases’ of matter A: Hooke’s

$1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

A: Pulse C: Atitude B: ManBearPig D: Amplitude 50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 The height of a wave is called the… Final Answer?

50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Right Wrong The ratio of mass and volume is called D: Amplitude

$1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

A: 1.0 C: 0.9 B: 1.1 D: : $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 The specific gravity of a typical hume bean is: Final Answer?

50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Right Wrong C: 0.9 The specific gravity of a typical hume bean is:

$1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

A: Volume D: Pittsburgh C: Atmosphere B: Area 50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Final Answer? What quantity provides the mathematical relationship between pressure and force?

50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Right Wrong B: Area What quantity provides the mathematical relationship between pressure and force?

$1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

A:  gh C:  mV B:  mg D:  Ahg 50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 The force exerted by a liquid is found by using: Final Answer?

50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Right Wrong The force exerted by a liquid is found by using: D:  Ahg

Congratulations! You’ve Reached the $1,000 Milestone! Congratulations!

$1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

A: Pressure is constant C: Force is constant B: Volume is constant D: Flow rate is constant 50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Pascal’s Principal states that in a closed system: Final Answer?

50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Right Wrong A: Pressure is constant Pascal’s Principal states that in a closed system:

$1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

A: 1x10 5 Pascal C: 1 5 Pascal B: 10x10 3 Pascal D: 1 bar 50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 1 atm is equivalent to Final Answer?

50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Right Wrong 1 atm is equivalent to A: 1x10 5 Pascal

$1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

A: Pascal Pr. C: Toricelli Pr. B: Bernoulli Pr. D: Archimedes Pr 50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 How the heck can a Jabillion ton iron Battleship float on water? Final Answer?

50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Right Wrong D: Archimedes Pr How the heck can a Jabillion ton iron Battleship float on water?

$1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

A: Pressure C: weight B: Volume D: mass 50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 The weight of water displaced by a floating body is equivalent to the _____ of the body. Final Answer?

50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Right Wrong C: weight The weight of water displaced by a floating body is equivalent to the _____ of the body.

$1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

A: Pressure C: Weight B: Volume D: Mass 50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 The amount of water displaced by a submerged (sunked) body is equal to the _____ of the body. Final Answer?

50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Right Wrong The amount of water displaced by a submerged (sunked) body is equal to the _____ of the body. B: Volume

Congratulations! You’ve Reached the $32,000 Milestone! Congratulations! C o n g r a t u l a t i o n s !

$1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

A: Pressure C: Average Volume B: Flow Rate D: Buoyant Force 50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Av The quantity “Av” is: Final Answer?

50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Right Wrong B: Flow Rate Av The quantity “Av” is:

$1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

A: Pascal C: Bernoulli B : Newton D: John Pressure 50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Fast moving fluids create a low pressure area according to whom’s Principle? Final Answer?

50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Right Wrong Fast moving fluids create a low pressure area according to whom’s Principle? C: Bernoulli

$1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

A: Spades C: Clubs B: Hearts D: Diamonds 50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Which King is the “Suicide” King? Final Answer?

50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Right Wrong Which King is the “Suicide” King? B: Hearts

$1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

A: Roman Soldiers C: Roman Gods B: Greek Gods D: Their discoverers 50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 All planets are named after: Final Answer?

50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Right Wrong C: Roman Gods All planets are named after:

$1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100

A: 9.8 C: 2.5 B: 4.9 D: : $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Final Answer? The approximate value of the acceleration of gravity on the surface of MAAHHZZ is…

50: $1 Million $500,000 $250,000 $125,000 $64,000 $32,000 $16,000 $8,000 $4,000 $2,000 $1,000 $500 $300 $200 $100 Right Wrong The approximate value of the acceleration of gravity on the surface of MAAHHZZ is… D: 3.8

YOU WIN $1 x 10 6 !

LOSER !