What is the Opposite(Antonym) of “reduceable”?

The Opposite(Antonym) of “reduceable”

The antonyms of reduceable are irreducible, uncompressible, and uncontractible. These antonyms convey the opposite meaning of reduceable, which means that something can be made smaller or simpler.

Explore all Antonyms of “reduceable”

Definitions and Examples of irreducible, uncompressible, uncontractible

Learn when and how to use these words with these examples!

Not capable of being made smaller or simpler.

Example

The problem was irreducible and required a complex solution.

Not capable of being compressed or made smaller in volume.

Example

Water is an uncompressible substance, which means it cannot be made smaller in volume.

uncontractible

Not capable of being contracted or made smaller in size.

Example

The material used for the building was uncontractible, which meant that it could not be made smaller in size.

Key Differences: irreducible vs uncompressible vs uncontractible

  • 1Irreducible refers to something that cannot be made smaller or simpler.
  • 2Uncompressible refers to something that cannot be compressed or made smaller in volume.
  • 3Uncontractible refers to something that cannot be contracted or made smaller in size.

Effective Usage of irreducible, uncompressible, uncontractible

  • 1Science: Use these antonyms in scientific contexts to describe properties of matter and energy.
  • 2Mathematics: Incorporate these antonyms in mathematical problems to describe the nature of numbers and equations.
  • 3Engineering: Utilize these antonyms in engineering contexts to describe the properties of materials and structures.
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Remember this!

The antonyms of reduceable have distinct meanings: irreducible refers to something that cannot be made smaller or simpler, uncompressible refers to something that cannot be compressed or made smaller in volume, and uncontractible refers to something that cannot be contracted or made smaller in size. These antonyms can be used in scientific, mathematical, and engineering contexts to describe the properties of matter, energy, numbers, equations, materials, and structures.

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