hooke's law Sentence Examples

  1. Hooke's law states that the force required to extend or compress a spring is directly proportional to the displacement.
  2. According to Hooke's law, the constant of proportionality between the force and the displacement is known as the spring constant.
  3. Hooke's law is applicable to materials that behave elastically within their elastic limit.
  4. In a force-displacement diagram, Hooke's law is represented by a straight-line graph passing through the origin.
  5. The slope of the force-displacement graph in Hooke's law is equal to the spring constant.
  6. Hooke's law holds true for both tension and compression forces applied to springs.
  7. The application of Hooke's law is found in various fields, including spring balance, guitar strings, and earthquake engineering.
  8. Hooke's law helped establish the concept of elasticity and paved the way for understanding materials' mechanical properties.
  9. By utilizing Hooke's law, engineers can design springs for specific applications, such as shock absorption or energy storage.
  10. Hooke's law is a fundamental principle in physics that has played a significant role in understanding the behavior of elastic materials.

hooke's law Meaning

Wordnet

hooke's law (n)

(physics) the principle that (within the elastic limit) the stress applied to a solid is proportional to the strain produced

Synonyms & Antonyms of hooke's law

No Synonyms and anytonyms found

FAQs About the word hooke's law

(physics) the principle that (within the elastic limit) the stress applied to a solid is proportional to the strain produced

No synonyms found.

No antonyms found.

Hooke's law states that the force required to extend or compress a spring is directly proportional to the displacement.

According to Hooke's law, the constant of proportionality between the force and the displacement is known as the spring constant.

Hooke's law is applicable to materials that behave elastically within their elastic limit.

In a force-displacement diagram, Hooke's law is represented by a straight-line graph passing through the origin.