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- 10:47, 1 April 2010 (diff | hist) . . (+632) . . N 11rottaj (New page: Main Page > Sandbox > 11rottaj <br /> This is Jason's sandbox<br> Try stuff out here!<br /> <br /> Check out how cool this formula is:<br /><br /> <math> f^\prime = f \left (\frac{...)
- 10:47, 1 April 2010 (diff | hist) . . (+14) . . Sandbox (current)
- 17:31, 9 March 2010 (diff | hist) . . (+1) . . Giancoli Physics (5th ed) Chapter 31 (/* 20. Suppose that the average power consumption, day and night, in a typical house is 300 W. What initial mass of U-235 would have to undergo fission to supply the electrical needs of such a house for a year? (Assume 200 MeV is released per fissi) (current)
- 17:30, 9 March 2010 (diff | hist) . . (+1) . . Giancoli Physics (5th ed) Chapter 31 (/* 20. Suppose that the average power consumption, day and night, in a typical house is 300 W. What initial mass of U-235 would have to undergo fission to supply the electrical needs of such a house for a year? (Assume 200 MeV is released per fissi)
- 17:30, 9 March 2010 (diff | hist) . . (+6) . . Giancoli Physics (5th ed) Chapter 31 (/* 20. Suppose that the average power consumption, day and night, in a typical house is 300 W. What initial mass of U-235 would have to undergo fission to supply the electrical needs of such a house for a year? (Assume 200 MeV is released per fissi)
- 17:29, 9 March 2010 (diff | hist) . . (+4) . . Giancoli Physics (5th ed) Chapter 31 (/* 20. Suppose that the average power consumption, day and night, in a typical house is 300 W. What initial mass of U-235 would have to undergo fission to supply the electrical needs of such a house for a year? (Assume 200 MeV is released per fissi)
- 17:29, 9 March 2010 (diff | hist) . . (-16) . . Giancoli Physics (5th ed) Chapter 31 (/* 20. Suppose that the average power consumption, day and night, in a typical house is 300 W. What initial mass of U-235 would have to undergo fission to supply the electrical needs of such a house for a year? (Assume 200 MeV is released per fissi)
- 17:26, 9 March 2010 (diff | hist) . . (+58) . . Giancoli Physics (5th ed) Chapter 31 (/* 20. Suppose that the average power consumption, day and night, in a typical house is 300 W. What initial mass of U-235 would have to undergo fission to supply the electrical needs of such a house for a year? (Assume 200 MeV is released per fissi)
- 17:24, 9 March 2010 (diff | hist) . . (+28) . . Giancoli Physics (5th ed) Chapter 31 (/* 20. Suppose that the average power consumption, day and night, in a typical house is 300 W. What initial mass of U-235 would have to undergo fission to supply the electrical needs of such a house for a year? (Assume 200 MeV is released per fissi)
- 17:22, 9 March 2010 (diff | hist) . . (+35) . . Giancoli Physics (5th ed) Chapter 31 (/* 20. Suppose that the average power consumption, day and night, in a typical house is 300 W. What initial mass of U-235 would have to undergo fission to supply the electrical needs of such a house for a year? (Assume 200 MeV is released per fissi)
- 17:21, 9 March 2010 (diff | hist) . . (+24) . . Giancoli Physics (5th ed) Chapter 31 (/* 20. Suppose that the average power consumption, day and night, in a typical house is 300 W. What initial mass of U-235 would have to undergo fission to supply the electrical needs of such a house for a year? (Assume 200 MeV is released per fissi)
- 17:21, 9 March 2010 (diff | hist) . . (+33) . . Giancoli Physics (5th ed) Chapter 31 (/* 20. Suppose that the average power consumption, day and night, in a typical house is 300 W. What initial mass of U-235 would have to undergo fission to supply the electrical needs of such a house for a year? (Assume 200 MeV is released per fissi)
- 11:18, 9 March 2010 (diff | hist) . . (+5) . . Giancoli Physics (5th ed) Chapter 27 (→72. A beam of red laser light (wavelength = 633 nm) hits a black wall and is fully absorbed. If this exerts a total force of F = 5.5 nN, how many photons per second are hitting the wall?) (current)
- 11:18, 9 March 2010 (diff | hist) . . (+38) . . Giancoli Physics (5th ed) Chapter 27 (→72. A beam of red laser light (wavelength = 633 nm) hits a black wall and is fully absorbed. If this exerts a total force of F = 5.5 nN, how many photons per second are hitting the wall?)
- 11:17, 9 March 2010 (diff | hist) . . (+1) . . Giancoli Physics (5th ed) Chapter 27 (→72. A beam of red laser light (wavelength = 633 nm) hits a black wall and is fully absorbed. If this exerts a total force of F = 5.5 nN, how many photons per second are hitting the wall?)
- 11:15, 9 March 2010 (diff | hist) . . (+163) . . Giancoli Physics (5th ed) Chapter 27 (→72. A beam of red laser light (wavelength = 633 nm) hits a black wall and is fully absorbed. If this exerts a total force of F = 5.5 nN, how many photons per second are hitting the wall?)
- 11:14, 9 March 2010 (diff | hist) . . (+1) . . Giancoli Physics (5th ed) Chapter 27 (→72. A beam of red laser light (wavelength = 633 nm) hits a black wall and is fully absorbed. If this exerts a total force of F = 5.5 nN, how many photons per second are hitting the wall?)
- 11:14, 9 March 2010 (diff | hist) . . (+2) . . Giancoli Physics (5th ed) Chapter 27 (→72. A beam of red laser light (wavelength = 633 nm) hits a black wall and is fully absorbed. If this exerts a total force of F = 5.5 nN, how many photons per second are hitting the wall?)
- 11:14, 9 March 2010 (diff | hist) . . (+35) . . Giancoli Physics (5th ed) Chapter 27 (→72. A beam of red laser light (wavelength = 633 nm) hits a black wall and is fully absorbed. If this exerts a total force of F = 5.5 nN, how many photons per second are hitting the wall?)
- 11:13, 9 March 2010 (diff | hist) . . (+140) . . Giancoli Physics (5th ed) Chapter 27 (→72. A beam of red laser light (wavelength = 633 nm) hits a black wall and is fully absorbed. If this exerts a total force of F = 5.5 nN, how many photons per second are hitting the wall?)
- 11:10, 9 March 2010 (diff | hist) . . (+6) . . Giancoli Physics (5th ed) Chapter 27 (→72. A beam of red laser light (wavelength = 633 nm) hits a black wall and is fully absorbed. If this exerts a total force of F = 5.5 nN, how many photons per second are hitting the wall?)
- 11:10, 9 March 2010 (diff | hist) . . (+5) . . Giancoli Physics (5th ed) Chapter 27 (→72. A beam of red laser light (wavelength = 633 nm) hits a black wall and is fully absorbed. If this exerts a total force of F = 5.5 nN, how many photons per second are hitting the wall?)
- 11:09, 9 March 2010 (diff | hist) . . (+2) . . Giancoli Physics (5th ed) Chapter 27 (→72. A beam of red laser light (wavelength = 633 nm) hits a black wall and is fully absorbed. If this exerts a total force of F = 5.5 nN, how many photons per second are hitting the wall?)
- 11:07, 9 March 2010 (diff | hist) . . (+107) . . Giancoli Physics (5th ed) Chapter 27 (→72. A beam of red laser light (wavelength = 633 nm) hits a black wall and is fully absorbed. If this exerts a total force of F = 5.5 nN, how many photons per second are hitting the wall?)
- 11:06, 9 March 2010 (diff | hist) . . (+4) . . Giancoli Physics (5th ed) Chapter 27 (→72. A beam of red laser light (wavelength = 633 nm) hits a black wall and is fully absorbed. If this exerts a total force of F = 5.5 nN, how many photons per second are hitting the wall?)
- 11:05, 9 March 2010 (diff | hist) . . (+6) . . Giancoli Physics (5th ed) Chapter 27 (→72. A beam of red laser light (wavelength = 633 nm) hits a black wall and is fully absorbed. If this exerts a total force of F = 5.5 nN, how many photons per second are hitting the wall?)
- 11:04, 9 March 2010 (diff | hist) . . (+218) . . Giancoli Physics (5th ed) Chapter 27 (→72. A beam of red laser light (wavelength = 633 nm) hits a black wall and is fully absorbed. If this exerts a total force of F = 5.5 nN, how many photons per second are hitting the wall?)
- 11:02, 9 March 2010 (diff | hist) . . (+152) . . Giancoli Physics (5th ed) Chapter 27 (→72. A beam of red laser light (wavelength = 633 nm) hits a black wall and is fully absorbed. If this exerts a total force of F = 5.5 nN, how many photons per second are hitting the wall?)
- 16:50, 4 January 2010 (diff | hist) . . (0) . . 19.1
- 16:50, 4 January 2010 (diff | hist) . . (+41) . . 19.1
- 16:49, 4 January 2010 (diff | hist) . . (+4) . . 19.1
- 16:49, 4 January 2010 (diff | hist) . . (+47) . . 19.1
- 16:47, 4 January 2010 (diff | hist) . . (+23) . . N 19.1 (New page: Image:19.1.1.GIF)
- 16:47, 4 January 2010 (diff | hist) . . (0) . . N File:19.1.1.GIF (current)
- 16:44, 4 January 2010 (diff | hist) . . (+129) . . Solutions to PreQuizzes (current)
- 16:41, 4 January 2010 (diff | hist) . . (+105) . . Solutions to PreQuizzes
- 16:39, 4 January 2010 (diff | hist) . . (+13) . . Solutions to PreQuizzes
- 16:38, 4 January 2010 (diff | hist) . . (0) . . m Solutions to PreQuizzes (Protected "Solutions to PreQuizzes": index [edit=sysop:move=sysop])
- 16:37, 4 January 2010 (diff | hist) . . (+39) . . N Solutions to PreQuizzes (New page: Main Page > Solutions to PreQuizzes)
- 16:37, 4 January 2010 (diff | hist) . . (+28) . . Main Page (current)
- 11:50, 10 December 2009 (diff | hist) . . (0) . . Projectile Motion Worksheet
- 11:50, 10 December 2009 (diff | hist) . . (-3) . . Projectile Motion Worksheet (/* 1. 1. Rachel jumps off the edge of a cliff and hits the water 1.2 seconds later, about 5.4 m from the base of the cliff. a) What height was the cliff? b) With what speed did she leave the edge? c) What were her components of velocity upon strik)
- 11:49, 10 December 2009 (diff | hist) . . (+376) . . Projectile Motion Worksheet (→8. Question)
- 11:49, 10 December 2009 (diff | hist) . . (-1) . . Projectile Motion Worksheet
- 11:48, 10 December 2009 (diff | hist) . . (+258) . . Projectile Motion Worksheet (→7. Question)
- 11:48, 10 December 2009 (diff | hist) . . (+418) . . Projectile Motion Worksheet (→6. Question)
- 11:48, 10 December 2009 (diff | hist) . . (+390) . . Projectile Motion Worksheet (→5. Question)
- 11:47, 10 December 2009 (diff | hist) . . (+304) . . Projectile Motion Worksheet (→4. Question)
- 11:47, 10 December 2009 (diff | hist) . . (+251) . . Projectile Motion Worksheet (→3. Question)
- 11:47, 10 December 2009 (diff | hist) . . (+440) . . Projectile Motion Worksheet (→2. Question)
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