1 inch = 25.4 mm
31.3 mm = 31.3 /25.4 inch
To calculate the molar heat of vaporization, we can use the Clausius-Clapeyron equation: ΔHvap = -R * T * ln(P2/P1) Where: ΔHvap = molar heat of vaporization R = gas constant (8.314 J/mol*K) T = temperature difference in Kelvin (40°C + 273 - 0°C = 313 K) P1 = vapor pressure at lower temperature (134 mmHg) P2 = vapor pressure at higher temperature (760 mmHg, since boiling point is at atmospheric pressure) Plugging in the values, we have: ΔHvap = -8.314 * 313 * ln(760/134) = -8.314 * 313 * ln(5.67) ≈ -37.4 kJ/mol Therefore, the molar heat of vaporization of dichloromethane is approximately 37.4 kJ/mol.
To find the final temperature of CO2 gas at 20 bar pressure, you can use the ideal gas law formula: ( P_1/T_1 = P_2/T_2 ), where ( P_1 = 35 ) bar, ( T_1 = 313 ) K, and ( P_2 = 20 ) bar. Rearrange the formula to solve for the final temperature ( T_2 ) by substituting the values of pressure and temperature.
39000 sq. ft = 0.901442 acres.
The address of the Sun Prairie Historical Society Inc is: Po Box 313, Sun Prairie, WI 53590
One kg = 1000 grams. So one gram is 10^-3 kilograms. One milli gram is 10^-3 gram = 10^-6 kg. Kilograms and grams are both the metric units of mass. So the answer in kg is 0.000313313 mg = 0.000313 kg313 mg = 0.000313 kg313 mg = 0.000313 kg313 mg = 0.000313 kg313 mg = 0.000313 kg313 mg = 0.000313 kg
There are: 313/12 times 137/12 = 297.785 square feet rounded to three decimal places
about 1.15
It is: 334 -313 = 21
x x 313 = (x)(313) = 313x
258 * 313 = 80,754
926 + 313 = 1239
12.3 inches or 313 mm
313/1000 inches.
To convert 313 cents to dollars, you divide by 100 since there are 100 cents in a dollar. Therefore, 313 cents is equal to $3.13.
795.02 cm.
(313 hours) / (24 hours/day) = 13.04167 days (rounded) = 13days 1hour
313kg = 690.05 pounds.