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Tanzania [10]
3 years ago
12

Cuál es el radio atómico de una molécula diatómica si su diámetro es de 2,28 angstroms?

Chemistry
1 answer:
aliya0001 [1]3 years ago
7 0

Answer:

1.14 angstroms

Explanation:

Matemáticamente, el radio atómico de una molécula diatómica se define como la mitad del diámetro de la molécula diatómica.

Esto significa que para obtener el valor del radio atómico de la molécula diatómica, necesitamos dividir el diámetro de la molécula diatómica entre 2 En esta pregunta, lo que haremos es dividir el diámetro dado en la pregunta por 2 Por lo tanto,

el radio atómico será 2.28 angstroms / 2 = 1.14 angstroms Entonces, el radio atómico de la molécula diatómica es 1.14 angstroms

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9.41 atm is the pressure in atmospheres of the gas remaining in the flask

<h3>What is the pressure in atmospheres?</h3>

The equation NH3(g) + HCl(g) ==> NH4Cl(s) is balanced.

Divide the moles of each reactant by its coefficient in the balanced equation, and the limiting reagent is identified as the one whose value is less. With the issue we now have...

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NH4Cl will this reaction produce in grams

0.1764 moles of HCl multiplied by one mole of NH4Cl per mole of HCl results in 9.44 g of NH4Cl (3 sig. figs.)

the gas pressure, measured in atmospheres, that is still in the flask

NH3(g) plus HCl(g) results in NH4Cl (s)

0.3688......0.1764............0..........

Initial

-0.1764....-0.1764........+0.1764...Change

Equilibrium: 0.1924.......0...............+0.1924

There are 0.1924 moles of NH3 and no other gases in the flask. This is at a temperature of 25 °C (+273 = 298 °K) in a volume of 0.5 L. After that, we may determine the pressure by using the ideal gas law (P).

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P = 9.41 atm

9.41 atm is the pressure in atmospheres of the gas remaining in the flask

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