Youngs Modulus of 10000MPa & Vertical Dimension is 240mm With Diameter of a Circular Pad Footing - Science & Maths Assignment Help
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Youngs modulus was named by a scientist called Thomas Young. From his findings and calculations, we got to know the basic idea about this term. In this term, which we also call it as Young modulus, is a Latin derived word which means to measure. Youngs Modulus (E) is a mechanical property and is also known as the elasticity modulus, which is commonly known. The units for Youngs Modulus are in Megapascals (MPa). This unit is the common used which helps to measure the elasticity of modulus. When we apply force, it measures accurate tensile strength of a solid material. This tells us the relationship between tensile stress and a term which we commonly as axial strain, which is denoted by .
This is presented in formula as given -
Comprehend The Applications of Young's Modulus
Circular Pad Footing is a structure which is designed such that it can handle load of advanced structures. It is based on properties of soil that how much capacity they bear. These have applications in geotechnical engineering. To determine the size of footing, a formula is used which is given in simplified form as Structural Load (in lbs.), divided By Capacity of soil (in psf) which is equal to the Surface of footing needed (in square feet). The thickness must be not less than greater of 200 mm and in step footings, the vertical distance between portions of horizontal gaps should be 600 and not more than that. For footing, the minimum diameter for footing is approximately to 10 mm. Youngs Modulus varies from material to material. The difference is in elasticity modulus is assessed through the atom strength. As there is no strain in water because it takes up the shape of the container, water has zero value of Youngs Modulus. Some have strong values of Youngs Modulus which have very strong bonds and polymers have weak bonding. The steel has high value of Youngs Modulus that indicates it has steel has elastic deflection will be seen as low when there are loading which are large. This is helpful in constructing building gs and bridges.
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