Answer:
181.90 mmHg
Step-by-step explanation:
- According to pressure law, the pressure of a gas and its absolute temperature are directly proportional at a constant volume.
- Mathematically,
![P\alpha T](https://img.qammunity.org/2020/formulas/chemistry/high-school/84xbf3n3znwfx1e65z6k4k855yzztt4g15.png)
- Thus;
![P=kT](https://img.qammunity.org/2020/formulas/chemistry/middle-school/jfpkmd30dd6rym8e8rife99izxf51qn74r.png)
- Therefore, at varying temperature and pressure;
![(P1)/(T1)=(P2)/(T2)](https://img.qammunity.org/2020/formulas/chemistry/high-school/nfe12ww7xvfimzt9e3ce0v5fvkyau3xqsp.png)
In this case, we are given;
Initial temperature, T1 = 77 K
Initial pressure, P1 = 47 mmHg
Final temperature, T2 = 25 °C + 273
= 298 K
We are required to find the final pressure;
Using pressure law;
P2 = (P1/T1)T2
= (47/77K) × 298 K
= 181.90 mmHg
Therefore, the new pressure will be 181.90 mmHg