Vectors and Rotors: With ApplicationsE. Arnold, 1903 - 204 sider |
Inni boken
Resultat 1-5 av 47
Side ix
... Resultant Force 56. Fundamental Experiment on Forces 57. Vector Polygon closed 58. Examples 59 . Friction .. 60 . Laws of Friction 61. Examples 62. Three Forces in Equilibrium must pass through a point 63. Examples EXERCISES IV ...
... Resultant Force 56. Fundamental Experiment on Forces 57. Vector Polygon closed 58. Examples 59 . Friction .. 60 . Laws of Friction 61. Examples 62. Three Forces in Equilibrium must pass through a point 63. Examples EXERCISES IV ...
Side xii
... Resultant Rotor , ( 3 ) Equilibrium of Rotors 158. If two rotors have equal momental areas for all poles , the rotors are equal . If a system of Rotors has a 122 resultant there is only one 159 . Resultant of two intersecting Rotors , ...
... Resultant Rotor , ( 3 ) Equilibrium of Rotors 158. If two rotors have equal momental areas for all poles , the rotors are equal . If a system of Rotors has a 122 resultant there is only one 159 . Resultant of two intersecting Rotors , ...
Side xiii
... Resultant Couple · 128 164 . Link- and Vector - polygon construction for Resultant ( General Method ) , Vector - polygon not closed . 128 165. Vector - polygon closed · 130 166. Vector and Link - polygons closed 131 . 131 168. Summary ...
... Resultant Couple · 128 164 . Link- and Vector - polygon construction for Resultant ( General Method ) , Vector - polygon not closed . 128 165. Vector - polygon closed · 130 166. Vector and Link - polygons closed 131 . 131 168. Summary ...
Side 17
... Resultant Vector , and in relation to this resultant the other vectors are called components . In the figure , σ is the sum or resultant vector of the vectors , a , ẞ , y and 8 ; and we write σ = a + B + y + 8 . 32. The rule for the ...
... Resultant Vector , and in relation to this resultant the other vectors are called components . In the figure , σ is the sum or resultant vector of the vectors , a , ẞ , y and 8 ; and we write σ = a + B + y + 8 . 32. The rule for the ...
Side 27
... , d , e to scale and shewing that the resultant o is independent of the order of addition . Shew also by drawing that € + y + d σ + a + B = 0 . - ( 2 ) The position vectors of four points A APPLICATIONS OF VECTORS TO GEOMETRY 27 EXERCISES ...
... , d , e to scale and shewing that the resultant o is independent of the order of addition . Shew also by drawing that € + y + d σ + a + B = 0 . - ( 2 ) The position vectors of four points A APPLICATIONS OF VECTORS TO GEOMETRY 27 EXERCISES ...
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Vectors and Rotors: With Applications Olaus Henrici,George Charles Turner Uten tilgangsbegrensning - 1903 |
Vanlige uttrykk og setninger
a₁ Algebra angle applied axis B₁ B₂ bars base beam bending bending moment bisect C₁ called centre collinear Commutative Law components compression coordinates coplanar corresponding definite denote determined diagonals direction and sense distance divide draw drawn equal equation equilibrium figure find the mass-centre forces acting frame friction geometrical girder give given points given rotors Hence the mass-centre horizontal length line joining line parallel link-polygon load m₁ magnitude mass mass-points mid-point momental area move negative number of vectors orts parallel rotors parallelogram parallelopiped perpendicular plane pole polygon position vector projection quantity reaction rectangle represent rigid body scalar product shearing force shew shewn sides straight line stress diagram string Suppose system of rotors tension tetrahedron theorem tons triangle vanishes vector product vector-polygon vertex vertices weight
Populære avsnitt
Side 21 - If two triangles have one angle of the one equal to one angle of the other and the sides about these equal angles proportional, the triangles are similar.
Side 29 - ... line and the extremities of the base have the same ratio which the other sides of the triangle have to one...
Side 8 - If a straight line be divided into any two parts, the square on the whole line is equal to the squares on the two parts, together with twice the rectangle contained by the two parts.
Side 112 - ... is equal to the rectangle contained by the segments of the other.
Side 17 - ... from the beginning of the first to the end of the last...