001/chapter2-3.pdfand position x(t), given that its initial acceleration, velocity, and position are...

6

Upload: vudan

Post on 08-Jun-2018

218 views

Category:

Documents


0 download

TRANSCRIPT

Page 1: 001/Chapter2-3.pdfand position x(t), given that its initial acceleration, velocity, and position are axt, vxi, and Xi, respectively. (b) Show that a 2 = + 2J(vx — vxi). 48. A student
Page 2: 001/Chapter2-3.pdfand position x(t), given that its initial acceleration, velocity, and position are axt, vxi, and Xi, respectively. (b) Show that a 2 = + 2J(vx — vxi). 48. A student
Page 3: 001/Chapter2-3.pdfand position x(t), given that its initial acceleration, velocity, and position are axt, vxi, and Xi, respectively. (b) Show that a 2 = + 2J(vx — vxi). 48. A student
Page 4: 001/Chapter2-3.pdfand position x(t), given that its initial acceleration, velocity, and position are axt, vxi, and Xi, respectively. (b) Show that a 2 = + 2J(vx — vxi). 48. A student
Page 5: 001/Chapter2-3.pdfand position x(t), given that its initial acceleration, velocity, and position are axt, vxi, and Xi, respectively. (b) Show that a 2 = + 2J(vx — vxi). 48. A student
Page 6: 001/Chapter2-3.pdfand position x(t), given that its initial acceleration, velocity, and position are axt, vxi, and Xi, respectively. (b) Show that a 2 = + 2J(vx — vxi). 48. A student