1) Lab: Section 1 is due tomorrow. Since we didn't get to the lab in Section2 we will do it Wednesday and it will be due Friday.
2) All AP sections solve the following ( you should recognize some of it from class) An object starts with a velocity of 10 m/s, and accelerates uniformly ( a is constant); it covers 90 m in the first 3 seconds; find the velocity at 3 seconds, find the distance covered in six seconds ( total time is six seconds not six additional seconds); find v at six seconds; find a. It may pay not to do these in the order asked.
Monday, September 14, 2009
Sunday, September 13, 2009
AP Unit 2
Here are schedule and worksheets for our unit on 2 dimensional motion, vectors and relative motion.
http://h1.ripway.com/DrCherdack/APUnit2Sched09-10.doc
http://h1.ripway.com/DrCherdack/Unit_2_problem_sheet.doc
http://h1.ripway.com/DrCherdack/Unit_2_worksheet_1.doc
http://h1.ripway.com/DrCherdack/Unit_2_Worksheet_2_.doc
http://h1.ripway.com/DrCherdack/Unit_2_Worksheet_3.doc
http://h1.ripway.com/DrCherdack/Relative%20Mot%20WS%20RM10-08.doc
http://h1.ripway.com/DrCherdack/APUnit2Sched09-10.doc
http://h1.ripway.com/DrCherdack/Unit_2_problem_sheet.doc
http://h1.ripway.com/DrCherdack/Unit_2_worksheet_1.doc
http://h1.ripway.com/DrCherdack/Unit_2_Worksheet_2_.doc
http://h1.ripway.com/DrCherdack/Unit_2_Worksheet_3.doc
http://h1.ripway.com/DrCherdack/Relative%20Mot%20WS%20RM10-08.doc
All Students ( and those who pretend to be)
Let me know of any special course you took or are taking, worthwhile activities you were or are engaged in (remember, I said worthwhile) or notable achievements, so you can receive recognition from the Ridge administration, and possible inclusion in publications such as the Bridge. If you did enough good things, maybe we can even get your sentence reduced.
Seniors College Recommendations
If you had asked me to write college recs for you and you did not receive an email from me this Sunday night, get in touch with me ASAP. Spread the word to your classmates.
Saturday, September 12, 2009
AP Section 2 i.e. 4th period
We will complete the lab Monday, but you better be quick: we still need to review for Tuesday's quiz.
Physics Club Web Site
The Ridge Physics Club has a website : http://www.ridgephysicsclub.com/.
If you are a member go to the site and register. Registration will be a requirement for members to get bagels soon. The purpose of registration is to improve the site as a primary means of communication among club members and with the outside world. By registering , you become eligible to post items on the website, subject to approval by me. With your help, we'll make it a useful exciting site
Friday, September 11, 2009
AP Lab
1) Note your first graph should be a plot of position not change of position ( x not delta x). You should plot the distance from the point to the origin not to the previous point. Note that your point from which you measure , i.e. your origin, is the zeroeth point in my nomenclature
2) Time coordinate. When plotting your graphs, do not use the number of the time interval as the horizontal coordinate. use the actual time in seconds. Thus, if you chose every third point, your time interval is .05 seconds and your time scale should be labeled .05, .10, .15, .20, etc.
3) Graphing the velocity. Note that by taking the distance at time n and subtracting the distance at time n-1 from it and then dividing this difference by the time interval ( say .05 seconds) you find v. However, the v you found is not the v at time n. It is the v 1/2 way between time n-1 and time n.
Keep this in mind when you plot your v graph. So if you are looking at 5th and 6th points and your interval is .05 sec the velocity found from v= (x at .3 sec - x at .25 sec)/.05 should be plotted with .275 sec as its horizontal coordinate i.e. halfway between .25 and .30 sec.
4) Do not call the vertical axis the y axis or the horizontal axis the x axis.
5) In naming a graph use Vertical axis name vs horizontal axis name ( the vertical come first).
2) Time coordinate. When plotting your graphs, do not use the number of the time interval as the horizontal coordinate. use the actual time in seconds. Thus, if you chose every third point, your time interval is .05 seconds and your time scale should be labeled .05, .10, .15, .20, etc.
3) Graphing the velocity. Note that by taking the distance at time n and subtracting the distance at time n-1 from it and then dividing this difference by the time interval ( say .05 seconds) you find v. However, the v you found is not the v at time n. It is the v 1/2 way between time n-1 and time n.
Keep this in mind when you plot your v graph. So if you are looking at 5th and 6th points and your interval is .05 sec the velocity found from v= (x at .3 sec - x at .25 sec)/.05 should be plotted with .275 sec as its horizontal coordinate i.e. halfway between .25 and .30 sec.
4) Do not call the vertical axis the y axis or the horizontal axis the x axis.
5) In naming a graph use Vertical axis name vs horizontal axis name ( the vertical come first).
Thursday, September 10, 2009
Chapt 1 problems
Here is some help for some Chapter 1 problems. Note solutions are not always exact but you should be able to get correct answer using the methods I present.
Problem 22 from Chap 1.
77 m + 813.8 m = 890 m or something between 889.5 and 890.5 m
Sum of two possible minimum values is 76.5 + 813.75 = 890.25
Sum of two maximum values is 77.5 + 813.85 = 891.35 so all possible values lie within 889.5 and 890.5. If we had said our answer was 77+ 813.8 = 890.8m that would have meant something between 890.75 and 890.85 which would not have included all possible values.
Problem 36 from Chapt 1 [coasts seems to mean maintains speed although most of us slow down when we coast]. In any case velocities for the zeroeth through 8th second are 0, 5,10,15,20, 25,25,25,25 m/s. Distances for the same times are: 0,2.5,10,22.5,40,62.5,87.5,112.5,137.5 m. Note you can find distance during acceleration simply by taking velocity at that time and dividing by 2 to get average during interval from start to that time then multiply by the time. This is the same as delta x = (a delta t) /2 x delta t or
delta x = a/2 delta t ^2. For last 3 seconds just add 25 m to position at previous second.
Problem 37 from Chapt 1. For easy arithmetic assume g = 10 m/s^2.
Can do this lots of ways easiest is use (vf^2-vi^2)/2a = delta x and rewrite for vf
vf = sqrt(vi^2+2a delta x)= sqrt ( 0+2x(-) 10x(-)30) = sqrt 600 = 24.4 m/s call it 24 [ note both a and delta x are negative]
for picture:
v is zero at start
at one second velocity is 10 m/s down after 1 second at 5 m down from start
at two seconds v is 20m/s down at 20 m down
watermelon reaches bottom in about 30m/((0+24.4)/2) =2.44 sec call it 2.4
40. delta t = (sqrt ( vi^2+2adelta x) –vi)/a = .37 s [note the sqrt term is just vf which comes to 6.3 m/s here, and that a is negative and delta x is positive]
just to check v avg =(10+6.3)/2 = 8.15 m/s vavg x delta t = 8.3 x .37 = 3.0 m
picture shows a =10 m/s^2 down and v = 10 at 0sec, 9 at .1 sec, 8 at .2 sec, 7 at .3 sec and 6.3 at 3.7 sec at impact.
Problem 22 from Chap 1.
77 m + 813.8 m = 890 m or something between 889.5 and 890.5 m
Sum of two possible minimum values is 76.5 + 813.75 = 890.25
Sum of two maximum values is 77.5 + 813.85 = 891.35 so all possible values lie within 889.5 and 890.5. If we had said our answer was 77+ 813.8 = 890.8m that would have meant something between 890.75 and 890.85 which would not have included all possible values.
Problem 36 from Chapt 1 [coasts seems to mean maintains speed although most of us slow down when we coast]. In any case velocities for the zeroeth through 8th second are 0, 5,10,15,20, 25,25,25,25 m/s. Distances for the same times are: 0,2.5,10,22.5,40,62.5,87.5,112.5,137.5 m. Note you can find distance during acceleration simply by taking velocity at that time and dividing by 2 to get average during interval from start to that time then multiply by the time. This is the same as delta x = (a delta t) /2 x delta t or
delta x = a/2 delta t ^2. For last 3 seconds just add 25 m to position at previous second.
Problem 37 from Chapt 1. For easy arithmetic assume g = 10 m/s^2.
Can do this lots of ways easiest is use (vf^2-vi^2)/2a = delta x and rewrite for vf
vf = sqrt(vi^2+2a delta x)= sqrt ( 0+2x(-) 10x(-)30) = sqrt 600 = 24.4 m/s call it 24 [ note both a and delta x are negative]
for picture:
v is zero at start
at one second velocity is 10 m/s down after 1 second at 5 m down from start
at two seconds v is 20m/s down at 20 m down
watermelon reaches bottom in about 30m/((0+24.4)/2) =2.44 sec call it 2.4
40. delta t = (sqrt ( vi^2+2adelta x) –vi)/a = .37 s [note the sqrt term is just vf which comes to 6.3 m/s here, and that a is negative and delta x is positive]
just to check v avg =(10+6.3)/2 = 8.15 m/s vavg x delta t = 8.3 x .37 = 3.0 m
picture shows a =10 m/s^2 down and v = 10 at 0sec, 9 at .1 sec, 8 at .2 sec, 7 at .3 sec and 6.3 at 3.7 sec at impact.
AP Equation for delta t
In addition to your assignment, I am asking you to develop an expression for delta t if given vi, a, and delta x, starting from the two equations
delta x =( vf^2-vi^2)/2a and delta t = (vf-vi)/a.
Its ugly, but easier than using the quadratic equation to find delta t from
delta x = vi delta t + a/2 delta t^2.
Good luck and don't work too hard on it. Bring in what you've done and we'll go over it in class.
delta x =( vf^2-vi^2)/2a and delta t = (vf-vi)/a.
Its ugly, but easier than using the quadratic equation to find delta t from
delta x = vi delta t + a/2 delta t^2.
Good luck and don't work too hard on it. Bring in what you've done and we'll go over it in class.
Wednesday, September 9, 2009
AP Lab
Here is the link for the lab we will try to do on Friday. Look it over tonight.
http://h1.ripway.com/DrCherdack/AP%20Accel%20cart%20lab.doc
http://h1.ripway.com/DrCherdack/AP%20Accel%20cart%20lab.doc
Tuesday, September 8, 2009
AP
1) Many miscreants ( look it up if you have to) in section 1 ( period 2) managed to leave without entering their book numbers on the sheet. If you haven't entered your book number you must do so tomorrow. Without a book number I will not be able to check in your book when you return it. Your folks will be justifiably annoyed when shelling out the 180 or so bucks.
2) Those of you who have not yet turned in your old book from the summer do so ASAP so we can get this cleared up.
3) Still waiting for email addresses from about 1/3 of you.
4) Talk about miscreants, after our long talk about files and colors and in and out, most of section2 (period 4) left without depositing their summer assignments, fix this tomorrow!
2) Those of you who have not yet turned in your old book from the summer do so ASAP so we can get this cleared up.
3) Still waiting for email addresses from about 1/3 of you.
4) Talk about miscreants, after our long talk about files and colors and in and out, most of section2 (period 4) left without depositing their summer assignments, fix this tomorrow!
Sunday, September 6, 2009
Honors and AP
Here are links to schedules and assignments for our first units.
AP ( 1 link)
http://h1.ripway.com/DrCherdack/APUnit1Sched09-10r1.doc
Honors (4 links)
http://h1.ripway.com/DrCherdack/HonorsUnit1Sched09-10.doc
http://h1.ripway.com/DrCherdack/NotesEnergyFundament9-09.doc
http://h1.ripway.com/DrCherdack/HoffmanonFusion.doc
http://h1.ripway.com/DrCherdack/Fusion%20NotesR2.doc
AP ( 1 link)
http://h1.ripway.com/DrCherdack/APUnit1Sched09-10r1.doc
Honors (4 links)
http://h1.ripway.com/DrCherdack/HonorsUnit1Sched09-10.doc
http://h1.ripway.com/DrCherdack/NotesEnergyFundament9-09.doc
http://h1.ripway.com/DrCherdack/HoffmanonFusion.doc
http://h1.ripway.com/DrCherdack/Fusion%20NotesR2.doc
Friday, September 4, 2009
Course Guides
Links to the course guides for Honors and AP Physics are to be found below. Please print the appropriate one of these out and read it carefully. Ask your parents/guardians to do the same.
You must bring the signature page in, signed of course. This is serious because you cannot participate in labs unless you sign the form and turn it in. Do it by class Wednesday and get 10 extra credit points.
If its not in by Friday -10 points.
The proverbial carrot and stick.
Have a good weekend and holiday.
http://h1.ripway.com/DrCherdack/Course%20Guide%20AP%20I2009-10.doc
http://h1.ripway.com/DrCherdack/Course%20Guide%20H%202009-10.doc
You must bring the signature page in, signed of course. This is serious because you cannot participate in labs unless you sign the form and turn it in. Do it by class Wednesday and get 10 extra credit points.
If its not in by Friday -10 points.
The proverbial carrot and stick.
Have a good weekend and holiday.
http://h1.ripway.com/DrCherdack/Course%20Guide%20AP%20I2009-10.doc
http://h1.ripway.com/DrCherdack/Course%20Guide%20H%202009-10.doc
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