Properties of Bulk Matter

Tensile Stress

Stress is the restorative force exerted per unit area of a body. As a result, stress is defined as the magnitude of forces that cause deformation across a certain area. Tensile stress occurs when forces draw on an object and induce elongation, as when an elastic band is stretched. Compressive stress occurs when forces cause […]

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Stress and pressure

Although physics teaches that force is defined as mass times acceleration, what is force and how does it affect a body? It is straightforward. Consider pushing or tugging something. When you push or pull on an object, you’re putting force to it, and if the thing moves, you’ll have a finite amount of Force. Pressure

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Stress and Different Types of Stress

When a force is applied to a body, it deforms due to the induction of stress inside it. If the body has low strength, then the chances of getting deformation are more, while if the body has higher strength, then the chances of deformation are lower. Thus the resistance offered by the body towards deformation

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Stress

Stress is defined as the force exerted on a material’s unit area in physics. Strain is the term for the effect of stress on the body. The body can be deformed as a result of stress. Stress units can be used to determine how much force a material has experienced. Depending on the direction of

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Strain and Different Types of Strain

A solid body has a definite shape and size, and we need to apply force on the body if we want to change its shape. The direction and magnitude of force applied to the body will develop stress – different types of strain act on the body depending upon the stress that is induced. The

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Shearing Stress

Stress is a measurement of how much deforming force is applied per unit area of an object. Shear and tensile stress are two types of stress in which force is imparted to an item in different ways. When a deforming force is applied at right angles to a surface, it is called tensile stress. Shear

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Shear Modulus Of Metals

The response of different materials to shear deformation is often measured in terms of shear modulus. Shear stress is characterised as the probability of shear stress to shear strain. This ratio is useful in determining how resistant a material is to shearing deformation. If a substance is highly resistant to shearing, the energy produced will

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Shear Modulus Elastic Moduli

One of the mechanical properties of solids that may be measured is the shear modulus of elasticity. Young’s modulus and bulk modulus are two other elastic moduli. The ratio of shear stress to shear strain in a body is determined by a material’s shear modulus. It can be used to explain how a material resists

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Relative density

Relative density, also known as specific gravity, is the ratio of a substance’s density (mass per unit volume) to the density of a reference material. Water at its densest temperature (4 °C or 39.2 °F) is generally always used as a reference for liquids, while air at ambient temperature (20 °C or 68 °F) is

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Properties of Bulk Matter

Stress, strain, elasticity, Hooke’s law and other notions linked to fluids like as Pascal’s law, viscosity, surface energy and so on are all examples of bulk matter properties. Internal restorative force exerted on a deformed body per unit area is known as stress. The strain, on the other hand, is the ratio of the change

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Class 11, Elasticity: Stress-strain relationship, NEET, Physics, Properties of Bulk Matter