6) The Poisson's ratio v: a) is one of the 3 parameters on which linearly elasticity of a body depends; b) if equal to 0.5 can be proper of an icompressible material; c) is the ratio between the dilation in the loading direction and the dilations in the direction orthogonal to the load. 7) The equations of compatibility in a 3D continuum are a set of 6 differential equations: a) that guarantee the congruence of the displacement field; b) written in function of the six stress components; c) that guarantee the equilibrium of the body. 8) If the Mohr's arbelos is a half-circumference, the associated stress state is: a) hydrostatic b) uniaxial; c) plane.

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6) The Poisson's ratio v:
a) is one of the 3 parameters on which linearly elasticity of a body depends;
b) if equal to 0.5 can be proper of an icompressible material;
c) is the ratio between the dilation in the loading direction and the dilations in the direction orthogonal
to the load.
7) The equations of compatibility in a 3D continuum are a set of 6 differential equations:
a) that guarantee the congruence of the displacement field;
b) written in function of the six stress components;
c) that guarantee the equilibrium of the body.
8) If the Mohr's arbelos is a half-circumference, the associated stress state is:
a) hydrostatic
b) uniaxial;
c) plane.
Transcribed Image Text:6) The Poisson's ratio v: a) is one of the 3 parameters on which linearly elasticity of a body depends; b) if equal to 0.5 can be proper of an icompressible material; c) is the ratio between the dilation in the loading direction and the dilations in the direction orthogonal to the load. 7) The equations of compatibility in a 3D continuum are a set of 6 differential equations: a) that guarantee the congruence of the displacement field; b) written in function of the six stress components; c) that guarantee the equilibrium of the body. 8) If the Mohr's arbelos is a half-circumference, the associated stress state is: a) hydrostatic b) uniaxial; c) plane.
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