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Guided practice. Guided Practice - 1. A constant volume of oxygen is heated from 100 degrees Celsius to 185 degrees Celsius. The initial pressure is 4.1 atm. What is the final pressure? T 1 = T 2 = P 1 = P 2 =. Guided Practice - 1.
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Guided Practice - 1 • A constant volume of oxygen is heated from 100 degrees Celsius to 185 degrees Celsius. The initial pressure is 4.1 atm. What is the final pressure? T1= T2= P1= P2=
Guided Practice - 1 • A constant volume of oxygen is heated from 100 degrees Celsius to 185 degrees Celsius. The initial pressure is 4.1 atm. What is the final pressure? T1= T2= P1= P2=
Guided Practice - 1 • A constant volume of oxygen is heated from 100 degrees Celsius to 185 degrees Celsius. The initial pressure is 4.1 atm. What is the final pressure? T1= 273 + 100 = 373 K T2= P1= P2=
Guided Practice - 1 • A constant volume of oxygen is heated from 100 degrees Celsius to 185 degrees Celsius. The initial pressure is 4.1 atm. What is the final pressure? T1= 273 + 100 = 373 K T2= P1= P2=
Guided Practice - 1 • A constant volume of oxygen is heated from 100 degrees Celsius to 185 degrees Celsius. The initial pressure is 4.1 atm. What is the final pressure? T1= 273 + 100 = 373 K T2= 273 + 185 = 458 K P1= P2=
Guided Practice - 1 • A constant volume of oxygen is heated from 100 degrees Celsius to 185 degrees Celsius. The initial pressure is 4.1 atm. What is the final pressure? T1= 273 + 100 = 373 K T2= 273 + 185 = 458 K P1= P2=
Guided Practice - 1 • A constant volume of oxygen is heated from 100 degrees Celsius to 185 degrees Celsius. The initial pressure is 4.1 atm. What is the final pressure? T1= 273 + 100 = 373 K T2= 273 + 185 = 458 K P1= 4.1 P2=
Guided Practice - 1 • A constant volume of oxygen is heated from 100 degrees Celsius to 185 degrees Celsius. The initial pressure is 4.1 atm. What is the final pressure? T1= 273 + 100 = 373 K P1 = P2 T2= 273 + 185 = 458 K T1 T2 P1= 4.1 P2=
Guided Practice - 1 • A constant volume of oxygen is heated from 100 degrees Celsius to 185 degrees Celsius. The initial pressure is 4.1 atm. What is the final pressure? T1= 273 + 100 = 373 K P1 = P2 T2= 273 + 185 = 458 K T1 T2 P1= 4.1 P2= 4.1 = P2 373 458
Guided Practice - 1 • A constant volume of oxygen is heated from 100 degrees Celsius to 185 degrees Celsius. The initial pressure is 4.1 atm. What is the final pressure? T1= 273 + 100 = 373 K P1 = P2 T2= 273 + 185 = 458 K T1 T2 P1= 4.1 P2= 4.1 = P2 373 458 4.1(458) = 373 (P2)
Guided Practice - 1 • A constant volume of oxygen is heated from 100 degrees Celsius to 185 degrees Celsius. The initial pressure is 4.1 atm. What is the final pressure? T1= 273 + 100 = 273 K P1 = P2 T2= 273 + 185 = 458 K T1 T2 P1= 4.1 P2= 4.1 = P2 373 458 4.1(458) = 373 (P2) 1877.8 = 373 (P2)
Guided Practice - 1 • A constant volume of oxygen is heated from 100 degrees Celsius to 185 degrees Celsius. The initial pressure is 4.1 atm. What is the final pressure? T1= 273 + 100 = 373 K P1 = P2 T2= 273 + 185 = 458 K T1 T2 P1= 4.1 P2= 4.1 = P2 373 458 4.1(458) = 373 (P2) 1877.8 = 373 (P2) 1877.8/373 = P2
Guided Practice - 1 • A constant volume of oxygen is heated from 100 degrees Celsius to 185 degrees Celsius. The initial pressure is 4.1 atm. What is the final pressure? T1= 273 + 100 = 373 K P1 = P2 T2= 273 + 185 = 458 K T1 T2 P1= 4.1 P2= 4.1 = P2 373 458 4.1(458) = 373 (P2) 1877.8 = 373 (P2) 1877.8/373 = P2 P2 = 5.034
Guided Practice A sample of 25 L of NH3 gas at 10 degrees Celsius is heated at constant pressure until it fills a volume of 50 L. What is the new temperature in Celsius. T1= T2= V1= V2=
Guided Practice A sample of 25 L of NH3 gas at 1 degrees Celsius is heated at constant pressure until it fills a volume of 50 L. What is the new temperature in Celsius. T1= T2= V1= V2=
Guided Practice A sample of 25 L of NH3 gas at 10 degrees Celsius is heated at constant pressure until it fills a volume of 50 L. What is the new temperature in Celsius. T1= T2= V1= 25 L V2=
Guided Practice A sample of 25 L of NH3 gas at 10 degrees Celsius is heated at constant pressure until it fills a volume of 50 L. What is the new temperature in Celsius. T1= 273 + 10 = 283 T2= V1= 25 L V2=
Guided Practice A sample of 25 L of NH3 gas at 10 degrees Celsius is heated at constant pressure until it fills a volume of 50 L. What is the new temperature in Celsius. T1= 273 + 10 = 283 T2= V1= 25 L V2=
Guided Practice A sample of 25 L of NH3 gas at 10 degrees Celsius is heated at constant pressure until it fills a volume of 50 L. What is the new temperature in Celsius. T1= 273 + 10 = 283 T2= V1= 25 L V2= 50 L
Guided Practice A sample of 25 L of NH3 gas at 10 degrees Celsius is heated at constant pressure until it fills a volume of 50 L. What is the new temperature in Celsius. T1= 273 + 10= 283 V1 = V2 T2= T1 T2 V1= 25 L V2= 50 L
Guided Practice A sample of 25 L of NH3 gas at 10 degrees Celsius is heated at constant pressure until it fills a volume of 50 L. What is the new temperature in Celsius. T1= 273 + 10 = 283 V1 = V2 T2= T1 T2 V1= 25 L V2= 50 L 25 = 50 283 T2
Guided Practice A sample of 25 L of NH3 gas at 10 degrees Celsius is heated at constant pressure until it fills a volume of 50 L. What is the new temperature in Celsius. T1= 273 + 10 = 283 V1 = V2 T2= T1 T2 V1= 25 L V2= 50 L 25 = 50 283 T2 25 (T2) = 283 (50)
Guided Practice A sample of 25 L of NH3 gas at 10 degrees Celsius is heated at constant pressure until it fills a volume of 50 L. What is the new temperature in Celsius. T1= 273 + 10= 283 V1 = V2 T2= T1 T2 V1= 25 L V2= 50 L 25 = 50 283 T2 25 (T2) = 283 (50) (T2) = 283(50) 25
Guided Practice A sample of 25 L of NH3 gas at 10 degrees Celsius is heated at constant pressure until it fills a volume of 50 L. What is the new temperature in Celsius. T1= 273 + 10 = 283 V1 = V2 T2= T1 T2 V1= 25 L V2= 50 L 25 = 50 283 T2 25 (T2) = 283 (50) (T2) = 283(50) 25 T2 = 14150 / 25 = 566 K
Guided Practice - 3 • Convert 34 kPa to Pascals
Guided Practice - 3 • Convert 34 kPa to Pascals
Guided Practice - 3 • Convert 34 kPa to Pascals
Guided Practice - 3 • Convert 34 kPa to Pascals
Guided Practice - 3 • Convert 34 kPa to Pascals
Guided Practice - 3 • Convert 34 kPa to Pascals