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  1. It describes how much heat must be added to a unit of mass of a given substance to raise its temperature by one degree Celsius. The units of specific heat capacity are J/(kg °C) or equivalently J/(kg K). The heat capacity and the specific heat are related by \(\mathrm{C=cm}\) or \(\mathrm{c=\frac{C}{m}}\).

  2. 13 Μαΐ 2023 · The specific heat capacity (\(c\)) of a substance, commonly called its specific heat, is the quantity of heat required to raise the temperature of 1 gram of a substance by 1 degree Celsius (or 1 kelvin): \[c = \dfrac{q}{m\Delta T} \label{12.3.4} \] Specific heat capacity depends only on the kind of substance absorbing or releasing heat.

  3. Define heat capacity and specific heat capacity and differentiate between the two terms ; Deduce which substance will have greatest temperature changed based on specific heat capacities ; Calculate unknown variables based on known variables using the specific heat equation

  4. The SI unit for specific heat capacity is joule per kelvin per kilogramJ kg⋅K ⁠, J⋅K −1 ⋅kg −1. Since an increment of temperature of one degree Celsius is the same as an increment of one kelvin, that is the same as joule per degree Celsius per kilogram: J/ (kg⋅°C).

  5. 29 Αυγ 2022 · Heat capacity is the amount of heat required to raise the temperature of an object by \(1^\text{o} \text{C}\). The specific heat of a substance is the amount of energy required to raise the temperature of 1 gram of the substance by \(1^\text{o} \text{C}\).

  6. 11 Αυγ 2024 · Specific Heat Formula. The heat capacity (C) can be calculated by multiplying the specific heat with the mass. Therefore, C= mc or, C = Q ΔT C = m c or, C = Q Δ T. Units. The unit of specific heat is Joules per gram per degree Celsius or J/g∙ ∘ C. Another unit of specific heat is calories per gram per degree Celsius or J/cal∙ ∘ C.

  7. www.omnicalculator.com › physics › specific-heatSpecific Heat Calculator

    30 Ιουλ 2024 · The formula for specific heat capacity, C, of a substance with mass m, is C = Q /(m × ΔT). Where Q is the energy added and ΔT is the change in temperature.

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