Calor latens Calor fusionis Calor vaporisationis – Problemata et Solutiones

4 Calor latens Calor fusionis Calor vaporisationis – Problemata et Solutiones

1. Calcula quantitatem caloris additam uni grammi auri ad mutandam phasim a solido ad liquidum. Calor fusionis auri est 64.5 × 10³ J /kg.

Notum:

Massa (m) = 1 gramma = 1 × 10⁻³ kg

Calor fusionis (L F ) = 64.5 × 10³ J /kg

Quaesitum: Calor (Q)

solution:

Q = m L F

Q = (1 × 10⁻³ kg)(64.5 × 10⁻³ J/kg)

Q = 64.5 Joule

[irp]

2. Calcula quantitatem caloris ab uno grammo hydrargyri emissam ad mutandam phasim a liquido ad solidum. Calor fusionis hydrargyri est 11.8 × 10³ J /kg.

Notum:

Massa (m) = 1 gramma = 1 × 10⁻³ kg

Calor fusionis (L F ) = 11.8 × 10³ J /kg

Quaesitum: Calor (Q)

solution:

Q = m L F

Q = (1 × 10⁻³ kg)(11.8 × 10⁻³ J/kg)

Q = 11.8 Joule

3. Determina quantitatem caloris ab 1 kg aquae absorptam ad mutandam phasim a liquido ad vaporem (vaporem). Calor vaporisationis aquae = 2256 × 10³ J /kg.

Notum:

Massa (m) = 1 kg

Calor vaporisationis (L V ) = 2256 × 10³ J /kg

Quaesitum: Calor (Q)

solution:

Q = m L V

Q = (1 kg) ( 2256 × 10³ J /kg)

Q = 2256 × 10³ Joule

[irp]

4. Determina quantitatem caloris a nitrogenio emissam ad mutandam phasim a vapore ad liquidum. Calor vaporisationis nitrogenii = 200 × 10³ J /kg.

Notum:

Massa (m) = 1 gramma = 1 × 10⁻³ kg

Calor vaporisationis (L V ) = 200 × 10³ J /kg

Notum: Calor (Q)

solution:

Q = m L V

Q = (1 × 10⁻³ kg) ( 200 × 10⁻³ J /kg)

Q = 200 Joule

  1. Scalas temperaturae convertens
  2. Dilatatio linearis
  3. Expansio areae
  4. Expansio voluminis
  5. Calor
  6. Aequivalens mechanicum caloris
  7. Calor specificus et capacitas calorica
  8. Calor latens, calor fusionis, calor vaporisationis
  9. Conservatio energiae ad translationem caloris

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