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Andreyy89
3 years ago
12

What are the characteristics of temperature ​

Chemistry
1 answer:
Contact [7]3 years ago
6 0

Answer:

humidity, air temp and pressure,wind speed and direction,cloud cover and type,precipitation,atmospheric

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Lake Erie is bordered by four states: New York, Ohio, Pennsylvania and Michigan.
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When 8 moles of nh3 was used in a reaction how many mole of o2 needs to be used
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Answer: Uhmmmm what dude i dont know what to say how the heck so i solve this?

Explanation:

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3 years ago
2.00 L of a gas is collected at 25.0°C and 745.0 mmHg. What is the volume at 760.0 mmHg
Leviafan [203]

1.7960L

Explanation:

the mass of the gas is constant in both instances

pv/T=constant(according to pv=nRT)

745mmHg*2L/298K=760mmHg*v/273K

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It remains the same.
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Use your understanding of the ideal gas law to identify the correct relationships among the variables. Pressure is . Temperature
MAXImum [283]

Answer:

Pressure is inversely proportional to the volume of a gas at constant temperature and number of moles

Temperature is directly proportional to volume at constant pressure and number of moles

Volume is directly proportional to the number of moles of a gas at constant temperature and pressure

Explanation:

The ideal gas law is derived from a combination of the Boyle's, Charles' and Avogadro's law of gases.

Boyle's law states that at constant temperature, the volume of a given mass of gas (number of moles of gas is constant) is inversely proportional to the pressure exerted by the gas.

V ∝ 1/P (at constant n, T)

Charles'law states that at constant pressure, the volume of a given mass of gas (constant amount, n) is directly proportional to the temperature of the gas; V ∝ T (at constant n, P)

Avogadro’s law states that at constant temperature and pressure, the volume of a given mass of gas is directly proportional to the number of moles of gas present; V ∝ n(at constant T, P)

Combining the three equations gives the following relationship: V ∝ nT/P

By inserting a proportionality constant called the molar gas constant, R, in the relationship above, the ideal gas equation is derived as follows:

V = nRT/P or PV = nRT

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3 years ago
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