Answer:
n = 0.0102 mol.
Step-by-step explanation:
Hello there!
In this case, according to the ideal gas law, which allows us to set up a relationship among volume, pressure, temperature and moles, we can define it as:
![PV=nRT](https://img.qammunity.org/2022/formulas/chemistry/college/l2pqkhgkpcodjq9yp3388rp2axpnootecr.png)
Thus, given the volume in liters (0.1000 L), temperature in kelvins (298.15 K) and pressure in atmospheres (2.50 atm), we can solve for moles as shown below:
![n=(PV)/(RT)](https://img.qammunity.org/2022/formulas/chemistry/college/cxfu1yuzqjy1gclld72mmjeglf4qsblwtr.png)
Thereafter, we plug in the aforementioned values to obtain:
![n=(2.50atm*0.1000L)/(0.08206(atm*L)/(mol*K)*298.15K)\\\\n=0.0102mol](https://img.qammunity.org/2022/formulas/chemistry/college/egkkmt1vmxydzwbatn9em1b3krb7zgzmri.png)
Best regards!