Respuesta :
Charles law gives the relationship between volume and temperature of gas.
it states that at constant pressure volume of gas is directly proportional to temperature.
[tex] \frac{V}{T} = k [/tex]
where V - volume
T - temperature in kelvin
and k - constant
[tex] \frac{V1}{T1} = \frac{V2}{T2} [/tex]
where parameters for the first instance are on the left side and parameters for the second instance are on the right side of the equation
T1 - 25 °C + 273 = 298 K
T2 - 35 °C + 273 = 308 K
substituting the values in the equation
[tex] \frac{5L}{298K} = \frac{V}{308K} [/tex]
V = 5.17 L
new volume is 5.17 L
it states that at constant pressure volume of gas is directly proportional to temperature.
[tex] \frac{V}{T} = k [/tex]
where V - volume
T - temperature in kelvin
and k - constant
[tex] \frac{V1}{T1} = \frac{V2}{T2} [/tex]
where parameters for the first instance are on the left side and parameters for the second instance are on the right side of the equation
T1 - 25 °C + 273 = 298 K
T2 - 35 °C + 273 = 308 K
substituting the values in the equation
[tex] \frac{5L}{298K} = \frac{V}{308K} [/tex]
V = 5.17 L
new volume is 5.17 L
if 1 celcius=273 kelvin
25+273=298
35+273=308
so,
[tex] \frac{5}{298} = \frac{?}{308} [/tex]
?=5.1677k
25+273=298
35+273=308
so,
[tex] \frac{5}{298} = \frac{?}{308} [/tex]
?=5.1677k