Properties of Matter - Mechanical Properties of Solids

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Q. A wire of length L and diameter d is stretched by a force F. If the diameter is halved while keeping the length constant, what happens to the stress in the wire? (2022)
  • A. It doubles
  • B. It quadruples
  • C. It remains the same
  • D. It halves
Q. A wire of length L and diameter d is stretched by a force F. If the diameter is halved, what will be the new elongation for the same force? (2020)
  • A. It will double
  • B. It will quadruple
  • C. It will remain the same
  • D. It will halve
Q. A wire of length L and diameter d is stretched by a force F. If the diameter is halved while keeping the length constant, what happens to the stress? (2020)
  • A. It doubles
  • B. It quadruples
  • C. It halves
  • D. It remains the same
Q. A wire of length L and diameter d is stretched by a force F. What is the expression for the elongation of the wire? (2020)
  • A. (F * L) / (A * Y)
  • B. (F * Y) / (A * L)
  • C. (Y * A) / (F * L)
  • D. (L * d) / (F * Y)
Q. If a material has a high shear modulus, what does it indicate about the material? (2023)
  • A. It is very elastic
  • B. It is very ductile
  • C. It resists shear deformation
  • D. It is very brittle
Q. If a material has a shear modulus of 80 GPa and a shear stress of 40 MPa is applied, what is the shear strain? (2023)
  • A. 0.0005
  • B. 0.005
  • C. 0.5
  • D. 0.05
Q. If the diameter of a wire is halved while keeping the length constant, what happens to its tensile strength? (2019)
  • A. It doubles
  • B. It halves
  • C. It quadruples
  • D. It remains the same
Q. If the length of a wire is doubled while keeping the diameter constant, what happens to its resistance? (2019)
  • A. It doubles
  • B. It halves
  • C. It quadruples
  • D. It remains the same
Q. What happens to the density of a material when it is compressed? (2019)
  • A. It decreases
  • B. It increases
  • C. It remains the same
  • D. It becomes zero
Q. What happens to the shear modulus if the shear stress is doubled while keeping the shear strain constant? (2019)
  • A. It doubles
  • B. It halves
  • C. It remains the same
  • D. It quadruples
Q. What happens to the volume of a material when it is subjected to uniform pressure? (2019)
  • A. It increases
  • B. It decreases
  • C. It remains the same
  • D. It depends on the material
Q. What is the bulk modulus of a material if a pressure increase of 1000 kPa causes a volume decrease of 0.01 m³ in a 1 m³ sample? (2022)
  • A. 10000 kPa
  • B. 1000 kPa
  • C. 100 kPa
  • D. 100 kPa
Q. What is the bulk modulus of a material if a pressure increase of 1000 kPa results in a volume decrease of 0.01 m³ for a volume of 1 m³? (2022)
  • A. 10000 kPa
  • B. 1000 kPa
  • C. 100 kPa
  • D. 100000 kPa
Q. What is the bulk modulus of a material if a pressure increase of 1000 kPa results in a volume decrease of 0.5%? (2022)
  • A. 200000 kPa
  • B. 500000 kPa
  • C. 1000000 kPa
  • D. 250000 kPa
Q. What is the bulk modulus of a material if a pressure increase of 50 MPa results in a volume decrease of 0.02 m³ for a volume of 1 m³? (2022)
  • A. 2500 MPa
  • B. 500 MPa
  • C. 1000 MPa
  • D. 2000 MPa
Q. What is the bulk modulus of a material if a pressure increase of 50 MPa results in a volume decrease of 0.002 m³ for a volume of 1 m³? (2022)
  • A. 25 GPa
  • B. 50 GPa
  • C. 100 GPa
  • D. 200 GPa
Q. What is the Poisson's ratio for a material if a longitudinal strain of 0.005 results in a lateral strain of 0.002? (2019)
  • A. 0.4
  • B. 0.5
  • C. 0.2
  • D. 0.1
Q. What is the Poisson's ratio for a material if a longitudinal strain of 0.02 results in a lateral strain of 0.008? (2022)
  • A. 0.4
  • B. 0.5
  • C. 0.6
  • D. 0.7
Q. What is the Poisson's ratio for a material that experiences a lateral strain of 0.02 when subjected to a longitudinal strain of 0.01? (2023)
  • A. 0.5
  • B. 2
  • C. 1
  • D. 0.25
Q. What is the Poisson's ratio for a material that experiences a lateral strain of 0.005 when subjected to a longitudinal strain of 0.01? (2021)
  • A. 0.5
  • B. 1
  • C. 0.25
  • D. 0.75
Q. What is the primary reason for the brittleness of certain materials? (2023)
  • A. High ductility
  • B. Low atomic bonding energy
  • C. High atomic bonding energy
  • D. High elasticity
Q. What is the shear modulus of a material if a shear stress of 100 MPa produces a shear strain of 0.05? (2021)
  • A. 2000 MPa
  • B. 500 MPa
  • C. 1000 MPa
  • D. 1500 MPa
Q. What is the shear modulus of a material if a shear stress of 100 MPa produces a shear strain of 0.02? (2022)
  • A. 5000 MPa
  • B. 2000 MPa
  • C. 1000 MPa
  • D. 2500 MPa
Q. What is the Young's modulus of a material if a stress of 200 MPa produces a strain of 0.01? (2021)
  • A. 2000 MPa
  • B. 20 MPa
  • C. 200 MPa
  • D. 2 MPa
Q. Which of the following describes the behavior of a ductile material? (2023)
  • A. It can be stretched into wires
  • B. It breaks without deformation
  • C. It is very hard
  • D. It cannot be shaped
Q. Which of the following factors does NOT affect the tensile strength of a material? (2022)
  • A. Temperature
  • B. Material composition
  • C. Length of the specimen
  • D. Cross-sectional area
Q. Which of the following is a characteristic of brittle materials? (2020)
  • A. High ductility
  • B. Low tensile strength
  • C. Low elasticity
  • D. Fracture without significant deformation
Q. Which of the following is a characteristic of elastic materials? (2023)
  • A. They return to original shape after deformation
  • B. They permanently deform
  • C. They break easily
  • D. They are always brittle
Q. Which of the following is true about brittle materials? (2023)
  • A. They can undergo large deformations
  • B. They exhibit high ductility
  • C. They fracture without significant plastic deformation
  • D. They are always elastic
Q. Which of the following is true about the shear modulus of a material? (2023)
  • A. It measures the material's response to shear stress
  • B. It is always greater than Young's modulus
  • C. It is independent of temperature
  • D. It is the same as bulk modulus
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