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Sodium Hydroxide Specific Heat Capacity

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Sodium hydroxide solution. 9.7 Specific Gravity: 1.5 at 20°C 9.8 Liquid Surface Tension. LIQUID HEAT CAPACITY Temperature (degrees F). Sodium hydroxide is also used to produce sodium hypochlorite, a water disinfectant. Sodium Hydroxide in Food Production Sodium hydroxide is used in several food processing applications, such as curing foods like olives or helping to brown Bavarian-style pretzels, giving them their characteristic crunch. You will find that the specific heat capacity of the sodium hydroxide in pure form is about 1491.5 J/ (Kg.degK). If water has a specific heat capacity of 4200 J/ (Kg.degK), the specific heat. Determination of Heat Capacity. Introduction: The purpose of this experiment was to determine the heat capacity of an adiabatic calorimeter. An adiabatic calorimeter is an apparatus used to measure heat changes for experiments done at constant pressure. Heat capacity is the amount of heat required to raise the heat of a system one degree. Sodium hydroxide solution Keep people away. AVOID CONTACT WITH LIQUID. Wear rubber overclothing (including gloves). 9.10 Vapor (Gas) Specific Gravity: Not pertinent 9.11 Ratio of Specific Heats of Vapor (Gas): Not pertinent. LIQUID HEAT CAPACITY Temperature (degrees F) British thermal unit per pound-F 77 0.780 9.22.

Specific heat for some common liquids and fluids - acetone, oil, paraffin, water and many more

The specific heat for some commonly used liquids and fluids is given in the table below.

Heat

For conversion of units, use the Specific heat online unit converter.

See also tabulated values of specific heat of gases, food and foodstuff, metals and semimetals, common solids and other common substances as well as values of molar specific heat of common organic substances and inorganic substances.

ProductSpecific Heat
- cp -
(kJ/(kg K))(Btu/(lb oF))
(Kcal/kg oC)
Acetic acid2.0430.49
Acetone2.150.51
Alcohol, ethyl 32oF (ethanol)2.30.548
Alcohol, ethyl 104oF (ethanol)2.720.65
Alcohol, methyl. 40 - 50oF2.470.59
Alcohol, methyl. 60 - 70oF2.510.6
Alcohol, propyl2.370.57
Ammonia, 32oF4.61.1
Ammonia, 104oF4.861.16
Ammonia, 176oF5.41.29
Ammonia, 212oF6.21.48
Ammonia, 238oF6.741.61
Aniline2.180.514
Benzene, 60oF1.80.43
Benzene, 150oF1.920.46
Benzine2.1
Benzol1.80.43
Bismuth, 800oF0.150.0345
Bismuth, 1000oF0.1550.0369
Bismuth, 1400oF0.1650.0393
Bromine0.470.11
n-Butane, 32oF2.30.55
Calcium Chloride3.060.73
Carbon Disulfide0.9920.237
Carbon Tetrachloride0.8660.207
Castor Oil1.80.43
Chloroform1.050.251
Citron Oil1.840.44
Decane2.210.528
Diphenylamine1.930.46
Dodecane2.210.528
Dowtherm1.550.37
Ether2.210.528
Ethyl ether2.220.529
Ethylene glycol2.360.56
Dichlorodifluoromethane R-12 saturated -40oF0.880.211
Dichlorodifluoromethane R-12 saturated 0oF0.910.217
Dichlorodifluoromethane R-12 saturated 120oF1.020.244
Fuel Oil min.1.670.4
Fuel Oil max.2.090.5
Gasoline2.220.53
Glycerine2.430.576
Heptane2.240.535
Hexane2.260.54
Hydrochlor acid3.14
Iodine2.150.51
Kerosene2.010.48
Linseed Oil1.840.44
Light Oil, 60oF1.80.43
Light Oil, 300oF2.30.54
Mercury0.140.03
Methyl alcohol2.51
Milk3.930.94
Naphthalene1.720.41
Nitric acid1.72
Nitro benzole1.520.362
Octane2.150.51
Oil, Castor1.970.47
Oil, Olive1.970.47
Oil, mineral1.670.4
Oil, turpentine1.8
Oil, vegetable1.670.4
Olive oil1.970.47
Paraffin2.130.51
Perchlor ethylene0.905
Petroleum2.130.51
Petroleum ether1.76
Phenol1.430.34
Potassium hydrate3.680.88
Propane, 32oF2.40.576
Propylene2.850.68
Propylene Glycol2.50.60
Sesame oil1.630.39
Sodium, 200oF1.380.33
Sodium, 1000oF1.260.3
Sodium hydrate3.930.94
Soya bean oil1.970.47
Sulfuric acid concentrated1.38
Sulfuric acid1.34
Toluene1.720.41
Trichlor ethylene1.30
Tuluol1.510.36
Turpentine1.720.411
Water, fresh4.191
Water, sea 36oF3.930.938
Xylene1.720.41
  • 1 kJ/(kg K) = 1000 J/(kgoC) = 0.2389 kcal/(kg oC) = 0.2389 Btu/(lbmoF)
  • T(oC) = 5/9[T(oF) - 32]

For conversion of units, use the Specific heat online unit converter.

See also tabulated values of specific heat of Gases, Food and foodstuff, Metals and semimetals, Common solids and other Common substances.

Heating Energy

The energy required to heat a product can be calculated as

q = cp m dt (1)

where

q = heat required (kJ)

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cp = specific heat (kJ/kg K, kJ/kg oC)

dt = temperature difference (K, oC)

Specific Heat Capacity Of Sodium Hydroxide

Example - Required Heat to increase Temperature i Water

10 kg of water is heated from 20 oC to 100 oC - a temperature difference 80 oC (K). The heat required can be calculated as

q = (4.19 kJ/kg K) (10 kg) (80 oC)

= 3352 kJ

Related Topics

Sodium Hydroxide Specific Heat Capacity Calculator

  • Material Properties - Material properties for gases, fluids and solids - densities, specific heats, viscosities and more
  • Thermodynamics - Effects of work, heat and energy on systems

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Sodium Hydroxide Specific Heat Capacity

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