Tue. Oct. 13, 2009Physics 208 Lecture 121 Last time… Begin circuits Resistor circuits Start resistor-capacitor circuits Today…

Slides:



Advertisements
Similar presentations
ConcepTest 1 Series Resistors I
Advertisements

Voltage and resistance in a circuit
© 2007 Pearson Prentice Hall This work is protected by United States copyright laws and is provided solely for the use of instructors in teaching their.
Chapter 17 Electric current
Direct Current Circuits
Ohm’s Law Objective: TSW understand the concepts of Voltage, Current, and Resistance by developing and applying Ohm’s Law.
ConcepTest 19.1a Series Resistors I
ConcepTest 19.1aSeries Resistors I 9 V Assume that the voltage of the battery is 9 V and that the three resistors are identical. What is the potential.
Physics for Scientists and Engineers, 6e
Direct-Current Circuits
Kirchhoff’s Laws a b e R C I e R I r V.
Direct Current Circuits
© 2007 Pearson Prentice Hall This work is protected by United States copyright laws and is provided solely for the use of instructors in teaching their.
Resistance, Ohm’s Law & Circuits
Chapter 26 DC Circuits Chapter 26 Opener. These MP3 players contain circuits that are dc, at least in part. (The audio signal is ac.) The circuit diagram.
Series Circuits: Other examples:. Series circuits - ________________________________________ _________________________________________ Assume: 1. _____________________________________________________.
Diagramming circuits. Ohm’s Law Mnemonic Definitions Current: the number of electrons that go through a wire in one second Voltage: the pressure that.
Physics 2112 Unit 9: Electric Current
PHY1013S CIRCUITS Gregor Leigh
Using IB symbols - sketch a series circuit including battery lamp heating element wires with 1 switch The current direction real & conventional. Show the.
Engineering Science EAB_S_127 Electricity Chapter 2.
Electricity Review 10 MYP Science.
Complete Quiz You have 10 minutes to complete the quiz The Quiz is Open-Book (use it) Get help from your neighbor.
DC Circuits Ch. 28 These circuit elements and many others can be combined to produce a limitless variety of useful devices wire open switch closed switch.
Resistivity and Resistance
Lecture 7 Circuits Ch. 27 Cartoon -Kirchhoff's Laws Topics –Direct Current Circuits –Kirchhoff's Two Rules –Analysis of Circuits Examples –Ammeter and.
Lecture 7 Circuits Ch. 27 Cartoon -Kirchhoff's Laws Warm-up problems
Q26.1 Which of the two arrangements shown has the smaller equivalent resistance between points a and b? A. the series arrangement B. the parallel arrangement.
Which of the two cases shown has the smaller equivalent resistance between points a and b? Q Case #1 2. Case #2 3. the equivalent resistance is.
© 2012 Pearson Education, Inc. Demographics A. Electrical Engineering B. Other Engineering C. Physics D. Chemistry E. Other.
© 2012 Pearson Education, Inc. Which of the two arrangements shown has the smaller equivalent resistance between points a and b? Q26.1 A. the series arrangement.
©1997 by Eric Mazur Published by Pearson Prentice Hall Upper Saddle River, NJ ISBN No portion of the file may be distributed, transmitted.
Ohm’s Law Objective: TSW understand the concepts of Voltage, Current, and Resistance by developing and applying Ohm’s Law.
2. the intensity of light bulb A increases.
Cutnell/Johnson Physics 8th edition
Chapter 23 Circuits Topics: Sample question:
DC circuits Physics Department, New York City College of Technology.
Fig 28-CO, p.858. Resistive medium Chapter 28 Direct Current Circuits 28.1 Electromotive “Force” (emf)
Lesson 6 Direct Current Circuits  Electro Motive Force  Internal Resistance  Resistors in Series and Parallel  Kirchoffs Rules.
RC Circuits PH 203 Professor Lee Carkner Lecture 14.
25. Electric Circuits 1.Circuits, Symbols, & Electromotive Force 2.Series & Parallel Resistors 3.Kirchhoff’s Laws & Multiloop Circuits 4.Electrical Measurements.
Complete the activity on charging and discharging capacitors located under Activities on the website sites.google.com/site/sienaphys140spring2011/activities/char.
1) Connect the Battery Which is the correct way to light the lightbulb with the battery? 4) all are correct 5) none are correct 1) 2) 3)
zero A, 10 V zero A, zero V 5 A, zero V 5 A, 10 V
Week 04, Day 2 W10D2 DC Circuits Today’s Reading Assignment W10D2 DC Circuits & Kirchhoff’s Loop Rules Course Notes: Sections Class 09 1.
Series and Parallel Circuits
Series Circuits Series circuit: a circuit in which all parts are connected end to end to provide a single path for the current. Ammeters are always placed.
Oregon State University PH 213, Class #17
ELECTRICITY REVIEW. Charges  There are two types of charges- what are they?  Positive and Negative  Where do positive charges come from?  Protons.
Lecture 22: FRI 17 OCT DC circuits II Ch Physics 2113
FCI. Direct Current Circuits: 3-1 EMF 3-2 Resistance in series and parallel. 3-3 Rc circuit 3-4 Electrical instruments FCI.
Circuit Basics Direct Current (DC) Circuits 1.5 V + – wire open switch closed switch 2-way switch ideal battery capacitor resistor 47  F 4.7 k  These.
Physics 1202: Lecture 8 Today’s Agenda Announcements: –Lectures posted on: –HW assignments, solutions.
Thur. Oct. 8, 2009Physics 208 Lecture 111 Last time… Equipotential lines Capacitance and capacitors.
1 18 Overview resistor & capacitor circuits Kirchoff’s Rules voltmeters & ammeters household circuits & safety Homework: 17, 27, 31, 33, 55, 67, 71, 85.
Physics 106 Lesson #12 Series & Parallel Circuits II
Copyright © 2012 Pearson Education Inc. PowerPoint ® Lectures for University Physics, Thirteenth Edition – Hugh D. Young and Roger A. Freedman Lectures.
Phys102 Lecture 10 & 11 DC Circuits Key Points EMF and Terminal Voltage Resistors in Series and in Parallel Circuits Containing Resistor and Capacitor.
DC Circuits Series and parallel rules for resistors Kirchhoff’s circuit rules.
Lecture 12: TUE 02 FEB DC circuits Ch Physics 2102 Jonathan Dowling.
Series and Parallel Circuits
Lecture 12-1 Resistors in Parallel and in Serial R1R1 R2R2 i i ε.
Series and Parallel Circuits
1) Connect the Battery Which is the correct way to light the lightbulb with the battery? 4) all are correct 5) none are correct 1) 2) 3)
1) Connect the Battery Which is the correct way to light the lightbulb with the battery? 4) all are correct 5) none are correct 1) 2) 3)
Who Wants To Be A Millionaire (Scientist)?
Last time… Today… Combining capacitors Begin circuits
Last time… Equipotential lines Capacitance and capacitors
Last time… e Kirchoff’s junction law Equivalent resistance
Resistors in Parallel R1 R2 i ε.
Presentation transcript:

Tue. Oct. 13, 2009Physics 208 Lecture 121 Last time… Begin circuits Resistor circuits Start resistor-capacitor circuits Today…

Tue. Oct. 13, 2009Physics 208 Lecture 122 Resistors Schematic layout Circuits Physical layout

Tue. Oct. 13, 2009Physics 208 Lecture 123 Quick Quiz Which bulb is brighter? A.A B.B C.Both the same Current through each must be same Conservation of current (Kirchoff’s current law) Charge that goes in must come out I I I I

Question When current flows, charge moves around the circuit. Suppose that positive charge carriers flow around the circuit. What is the change in potential energy of a positive charge as moves from c to d? Tue. Oct. 13, 2009Physics 208 Lecture 124 A.qV d – qV c B.qV c – qV d C.qV d + qV c D.zero

Quick Quiz What is the change in kinetic energy as it moves from c to d? Tue. Oct. 13, 2009Physics 208 Lecture 125 A.qV d – qV c B.qV c – qV d C.qV d + qV c D.zero

Tue. Oct. 13, 2009Physics 208 Lecture 126 Power dissipation (Joule heating) Charge loses energy from c to d. Ohm’s law: Energy dissipated in resistor as Heat (& light) in bulb Power dissipated in resistor = Joules / s = Watts

Tue. Oct. 13, 2009Physics 208 Lecture 127 Light bulbs and power Household voltage is 120V Cost 24 hours on requires MG&E ~ 13¢ / kWatt-hour 60 Watt 19¢ / day

Tue. Oct. 13, 2009Physics 208 Lecture 128 Two different bulbs Current same through each Power dissipated different Brightness different R1R1 R2R2 a b c d e I I I I

Tue. Oct. 13, 2009Physics 208 Lecture 129 Kirchoff’s junction law Charge conservation I in I out I out = I in I1I1 I2I2 I3I3 I 1 =I 2 +I 3 I2I2 I3I3 I1I1 I 1 +I 2 =I 3

Tue. Oct. 13, 2009Physics 208 Lecture 1210 Quick Quiz What happens to the brightness of the bulb A when the switch is closed? A.Gets dimmer B.Gets brighter C.Stays same D.Something else

Tue. Oct. 13, 2009Physics 208 Lecture 1211 Question As more and more resistors are added to the parallel resistor circuit shown here the total current flowing I… …. R1R1 R2R2 R3R3 R4R4 I A.Increases if each R i getting bigger B.Increases if each R i getting smaller C.Always increases D.Always decreases E.Stays the same Each resistor added adds  V/R i to the total current I

Tue. Oct. 13, 2009Physics 208 Lecture 1212 You use one power strip to plug in your toaster, coffee pot, microwave. ToasterCoffee PotMicrowave 10 A5 A12 A Everything works great until you plug in your space heater, then you smell smoke. This is because Question A.The resistance of the circuit is too high B.The voltage in the circuit is too high C.The current in the circuit is too high

Tue. Oct. 13, 2009Physics 208 Lecture 1213 More complicated circuits Both series & parallel Determine equivalent resistance Replace combinations with equivalent resistance

Tue. Oct. 13, 2009Physics 208 Lecture 1214 Quick Quiz The circuit below contains three 100W light bulbs. The emf  = 110 V. Which light bulb(s) is(are) brightest ? A. A B. B C. C D. B and C E. All three are equally bright.

Tue. Oct. 13, 2009Physics 208 Lecture 1215 Measurements in a circuit A multimeter can measure currents (as an ammeter), potential difference (as a voltmeter) Electrical measuring devices must have minimal impact in the circuit R  V Voltmeter The internal resistance of the ammeter must be very small I = I A  =  V+  V A = RI + r A I  RI for r A  0 VAVA A R  Ammeter I IAIA VV The internal resistance of the voltmeter must be very large I = I v +I R  V V =  VVVV IVIV IRIR I

Tue. Oct. 13, 2009Physics 208 Lecture 1216 Kirchoff’s loop law Conservation of energy R1R1 R2R2 R3R3  I1I1 I2I2 I3I3

Thur. Oct. 16, 2008Physics 208 Lecture 1417 Resistor- capacitor circuit What happens to charges on the capacitor after switch is closed? Why does the charge on the capacitor change in time? Why does the charge flow through the resistor?

Thur. Oct. 16, 2008Physics 208 Lecture 1418 Charging a capacitor Again Kirchoff’s loop law: Time t = 0: Looks like resistor & battery: uncharged cap acts like short circuit t increases: V C increases, so V R decreases Time t =  : Fully charged capacitor acts like open circuit

Thur. Oct. 16, 2008Physics 208 Lecture 1419 Discharging the capacitor Kirchoff’s loop law A B C D Charges in the current I come from capacitor:

Thur. Oct. 16, 2008Physics 208 Lecture 1420 RC discharge RC time constant

Thur. Oct. 16, 2008Physics 208 Lecture 1421 Charging a capacitor

Thur. Oct. 16, 2008Physics 208 Lecture 1422 Question The circuit contains three identical light bulbs and a fully-charged capacitor. Which is brightest? A.A B.B C.C D.A & B E.All equally bright

Thur. Oct. 16, 2008Physics 208 Lecture 1423 Question The circuit contains three identical light bulbs and an uncharged capacitor. Which is brightest? A.A B.B C.C D.A & B E.All equally bright

Tue. Oct. 13, 2009Physics 208 Lecture 1224 RC discharge RC time constant time t

Tue. Oct. 13, 2009Physics 208 Lecture 1225 RC analysis Kirchoff loop law: I related to Q C

Tue. Oct. 13, 2009Physics 208 Lecture 1226 RC analysis