gateforum.com · 1.2. 1.4. maximum marks : 150 5 7 2 o o 0 o 2 —6 ... the vertical stress at...

8

Upload: others

Post on 12-Apr-2020

2 views

Category:

Documents


0 download

TRANSCRIPT

Page 1: gateforum.com · 1.2. 1.4. Maximum marks : 150 5 7 2 o o 0 o 2 —6 ... The vertical stress at depth. z directly below the point load p is (k is a constant) The slope of the e : log
Page 2: gateforum.com · 1.2. 1.4. Maximum marks : 150 5 7 2 o o 0 o 2 —6 ... The vertical stress at depth. z directly below the point load p is (k is a constant) The slope of the e : log
Page 3: gateforum.com · 1.2. 1.4. Maximum marks : 150 5 7 2 o o 0 o 2 —6 ... The vertical stress at depth. z directly below the point load p is (k is a constant) The slope of the e : log
Page 4: gateforum.com · 1.2. 1.4. Maximum marks : 150 5 7 2 o o 0 o 2 —6 ... The vertical stress at depth. z directly below the point load p is (k is a constant) The slope of the e : log
Page 5: gateforum.com · 1.2. 1.4. Maximum marks : 150 5 7 2 o o 0 o 2 —6 ... The vertical stress at depth. z directly below the point load p is (k is a constant) The slope of the e : log
Page 6: gateforum.com · 1.2. 1.4. Maximum marks : 150 5 7 2 o o 0 o 2 —6 ... The vertical stress at depth. z directly below the point load p is (k is a constant) The slope of the e : log
Page 7: gateforum.com · 1.2. 1.4. Maximum marks : 150 5 7 2 o o 0 o 2 —6 ... The vertical stress at depth. z directly below the point load p is (k is a constant) The slope of the e : log
Page 8: gateforum.com · 1.2. 1.4. Maximum marks : 150 5 7 2 o o 0 o 2 —6 ... The vertical stress at depth. z directly below the point load p is (k is a constant) The slope of the e : log