plss can any body explain about modulus
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The modulus operator does all that calculation for you, 13 % 5 = 3. Very simple: a % b is defined as the remainder of the division of a by b .Modulus division gives you the remainder of a division, rather than the quotient. ... It uses the remainder instead of the quotient.
ratan212:
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✳️✳️✳️✳️✳️✳️✳️✳️✳️✳️✳️✳️✳️✳️
1️⃣Modulus of elasticity or coefficient of elasticity of a body is defined as the ratio of the stress to the corresponding strain produced in the body, within the elastic limit.
2️⃣For a given material there can be different types of modulus of elasticity depending upon the stress applied and the resulting strain pproduced.
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1️⃣Young Modulus of elasticity (Y):
✔️It is defined as the ratio of normal stress to the longitudinal strain within the elastic limit.
2️⃣ Bulk Modulus of elasticity (B):
✔️It is defined as the ratio of normal stress to the volumetric strain, within the elastic limit.
3️⃣ Modulus of Rigidity or Shear modulus of elasticity (G):
✔️It is defined as the ratio of tangential stress to the shearing strain, within the elastic limit.
✳️✳️✳️✳️✳️✳️✳️✳️✳️✳️✳️✳️✳️✳️
1️⃣Modulus of elasticity or coefficient of elasticity of a body is defined as the ratio of the stress to the corresponding strain produced in the body, within the elastic limit.
2️⃣For a given material there can be different types of modulus of elasticity depending upon the stress applied and the resulting strain pproduced.
--------------------------------------------------
1️⃣Young Modulus of elasticity (Y):
✔️It is defined as the ratio of normal stress to the longitudinal strain within the elastic limit.
2️⃣ Bulk Modulus of elasticity (B):
✔️It is defined as the ratio of normal stress to the volumetric strain, within the elastic limit.
3️⃣ Modulus of Rigidity or Shear modulus of elasticity (G):
✔️It is defined as the ratio of tangential stress to the shearing strain, within the elastic limit.
✳️✳️✳️✳️✳️✳️✳️✳️✳️✳️✳️✳️✳️✳️
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