1 / 28

Agenda

Agenda. Today & Monday– Problems Ch. 21-23 Tuesday – lab 5 & Quiz Today Charged Building Blocks Distributions Atomic Stability Continuous Charge Distribution (if Time) Gravity Equivalent Complex Layers. Charge Triangle. +Q. Equilateral Triangle Side Length = L Charges Pinned

bonita
Download Presentation

Agenda

An Image/Link below is provided (as is) to download presentation Download Policy: Content on the Website is provided to you AS IS for your information and personal use and may not be sold / licensed / shared on other websites without getting consent from its author. Content is provided to you AS IS for your information and personal use only. Download presentation by click this link. While downloading, if for some reason you are not able to download a presentation, the publisher may have deleted the file from their server. During download, if you can't get a presentation, the file might be deleted by the publisher.

E N D

Presentation Transcript


  1. Agenda • Today & Monday– Problems Ch. 21-23 • Tuesday – lab 5 & Quiz • Today • Charged Building Blocks • Distributions • Atomic Stability • Continuous Charge Distribution (if Time) • Gravity Equivalent • Complex Layers

  2. Charge Triangle +Q Equilateral Triangle Side Length = L Charges Pinned How much E in system? PE at infinity = 0 How to solve this? +Q +Q

  3. Think E conservation • Want to find total energy • Kinetic Energy? • Calculate PE of each charge • No double counting! • Total Energy = Energy needed to Build it

  4. Charge Triangle +Q Build it one Charge at a time First set all Charges PE = 0 +Q +Q

  5. Charges “Far” Away +Q Build it one Charge at a time First set all Charges PE = 0 Now move them into position One at a time Calculate work each time +Q +Q

  6. Charges “Far” Away First one r0 = infinity rF = top of triangle Work done? DE = WNC E=KE+PE KE0=KEF=0 PE0=0 W=PEF W=? +Q L L L +Q +Q

  7. Building Up W1 = 0 Now move to bottom left Realize W2 = PEF2 PEF2 =? PEF = kQ1Q2/L PEF = kQ2/L W2 = kQ2/L +Q L L L +Q +Q

  8. Built W1 = 0 W2 = kQ2/L W3 = 2kQ2/L WT = PE = 3kQ2/L Energy Dependence? Usefulness? What does + mean? Order? +Q L L L +Q +Q

  9. Built Try This one 1st top (+Q) 2nd Bot Left (-Q) 3rd Bot right (+Q) W1 = 0 W2 = -kQ2/L W3 = kQ2/L – kQ2/L =0 PE = -kQ2/L Negative? +Q L L L -Q +Q

  10. Built Again 1st Bot Left (-Q) 2nd Top (+Q) 3rd Bot right (+Q) W1 = 0 W2 = -kQ2/L W3 = -kQ2/L + kQ2/L =0 PE = -kQ2/L Order Independent Path Independent! Usefulness +Q L L L -Q +Q

  11. Examine Stability Where could I place a charge so that it would not move? Where is Electric Field zero? +Q L L L +Q +Q

  12. Examine Stability Where could I place a charge so that it would not move? Where is Electric Field zero? +Q L L Guess Center L +Q +Q Yes – Infinity is also correct, as always

  13. Calculate Field at Center Step 1: Assign Axes & Signs +Q L L Guess Center L +Q +Q

  14. Calculate Field at Center Step 1: Assign Axes & Signs Step 2: Method Superposition +Q L L y Guess Center x L +Q +Q

  15. Calculate Field at Center Step 1: Assign Axes & Signs Step 2: Method Step 3: Will Calculate Each Field +Q L L y Guess Center x L +Q +Q

  16. Calculate Field at Center Step 1: Assign Axes & Signs Step 2: Method Step 3: Will Calculate Each Field Field From Charge 1 +Q 1 L L y Guess Center x 2 3 L +Q +Q

  17. Calculate Field at Center Step 1: Assign Axes & Signs Step 2: Method Step 3: Will Calculate Each Field Field From Charge 1 Examine Directions & Mag Direction? Direction = -y Magnitude +Q 1 L L y Guess Center x 2 3 L +Q +Q How to find r?

  18. Calculate Field at Center Step 1: Assign Axes & Signs Step 2: Method Step 3: Will Calculate Each Field Direction E1 = -y Need r to get Magnitude +Q 1 L L y Guess Center x 2 3 L +Q +Q

  19. Calculate Field at Center Step 1: Assign Axes & Signs Step 2: Method Step 3: Will Calculate Each Field Direction E1 = -y Need r to get Magnitude +Q 1 r L L y H 60o x 2 3 L +Q +Q Vertical Line Makes Right Triangle r is H/2 Now what?

  20. Calculate Field at Center Step 1: Assign Axes & Signs Step 2: Method Step 3: Will Calculate Each Field Direction E1 = -y Need r to get Magnitude +Q 1 r L L H 60o 2 3 L y +Q +Q x

  21. Calculate Field at Center Step 1: Assign Axes & Signs Step 2: Method Step 3: Will Calculate Each Field Direction E1 = -y Write E1 in Vector Form +Q 1 r L L H 60o 2 3 L +Q +Q y x

  22. Calculate Field at Center Step 1: Assign Axes & Signs Step 2: Method Step 3: Will Calculate Each Field Now for #2 Magnitude? Same as #1 +Q 1 L L r 60o 2 3 L +Q +Q

  23. Calculate Field at Center Step 1: Assign Axes & Signs Step 2: Method Step 3: Will Calculate Each Field Now for #2 Magnitude? Same as #1 Direction +Q 1 L L r 60o 2 3 L +Q +Q

  24. Calculate Field at Center Step 1: Assign Axes & Signs Step 2: Method Step 3: Will Calculate Each Field Now for #2 Magnitude? Same as #1 Direction +Q 1 L L |E2| E2y E2x 60o 2 3 L +Q +Q

  25. Calculate Field at Center Step 1: Assign Axes & Signs Step 2: Method Step 3: Will Calculate Each Field Now for #3 +Q 1 L L |E3| E3y E3x 2 3 L +Q +Q

  26. Calculate Field at Center Step 1: Assign Axes & Signs Step 2: Method Step 3: Will Calculate Each Field Step 4: Add them Up +Q 1 L L 2 3 L +Q +Q

  27. Calculate Field at Center Step 1: Assign Axes & Signs Step 2: Method Step 3: Will Calculate Each Field Step 4: Add them Up +Q 1 L L ETX = 0, ETY=0, ET=0 Can place any charge there & let go Stable? 2 3 L +Q +Q

  28. Agenda • HMWK Due Next Thursday • Tuesday – lab 5 & Quiz • Today • Charged Building Blocks • Distributions • Atomic Stability • Continuous Charge Distribution (Monday) • Gravity Equivalent • Complex Layers

More Related