6.1 Define the following terms:
6.1.1 Stress
6.1.2 Strain
6.2 A steel bar experiences a stress of 250 MPa - NSC Technical Sciences - Question 6 - 2020 - Paper 1
Question 6
6.1 Define the following terms:
6.1.1 Stress
6.1.2 Strain
6.2 A steel bar experiences a stress of 250 MPa. The modulus of elasticity is 190 GPa. The bar has a dia... show full transcript
Worked Solution & Example Answer:6.1 Define the following terms:
6.1.1 Stress
6.1.2 Strain
6.2 A steel bar experiences a stress of 250 MPa - NSC Technical Sciences - Question 6 - 2020 - Paper 1
Step 1
Define the following terms: 6.1.1 Stress
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Answer
Stress is defined as the force applied per unit area within materials, typically measured in Pascals (Pa). Mathematically, it is expressed as:
ext{Stress} = rac{F}{A}
where F is the force applied and A is the area over which the force is applied.
Step 2
Define the following terms: 6.1.2 Strain
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Strain is a dimensionless measure of deformation representing the displacement between particles in a material body. It can be calculated as:
6.3 What is the effect of an increase in temperature on the viscosity of a fluid?
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The viscosity of a fluid generally decreases with an increase in temperature. This is because higher temperatures provide more energy to the fluid molecules, allowing them to overcome intermolecular forces more easily, resulting in reduced friction and lower viscosity.
Step 6
6.4 Define a perfectly plastic body.
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A perfectly plastic body is a material that deforms continuously and permanently under the application of a stress without any increase in stress during the process. Once the yield point is reached, the material does not return to its original shape.
Step 7
6.5 Give TWO examples of perfectly plastic bodies.
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Two examples of perfectly plastic bodies are:
Clay
Putty
Step 8
6.6 State Pascal's law in words.
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Pascal's law states that in a confined fluid at rest, any change in pressure applied at any point in the fluid is transmitted undiminished throughout the fluid in all directions.
Step 9
6.7 A hydraulic system is used to lift a 20 000 N vehicle in a workshop. If the vehicle sits on a piston of area 0.8 m², and a force is applied to another piston of area 0.05 m², what is the minimum force that must be applied to lift the vehicle?
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Answer
To calculate the required force on the second piston, we use Pascal's principle:
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Answer
The thrust of a liquid refers to the force exerted by the liquid on an object immersed in it, which acts perpendicular to the surface of the object. This force is a consequence of the pressure exerted by the liquid at the object's surface.