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alexira [117]
3 years ago
9

Every principal energy level contains:

Chemistry
2 answers:
fenix001 [56]3 years ago
6 0

Answer:

An s sublevel

Explanation:

As can be seen in the picture not all energy levels have all  the types of sublevels (s, p, d, f).

Only the higher energy levels have all of them, but as it shows all start with an S sublevel

Korolek [52]3 years ago
5 0
S p d and f. 1s2 2s2 2p6 3s2 3p6 4s2 3d10 4p6 4d10 4f.. 
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VikaD [51]

Answer:

Cause the electron-dot diagram for neon is the highest: 18

Explanation:

3 0
3 years ago
A sample of oxygen gas at a pressure of 1.19 atm and a temperature of 24.4 °C, occupies a volume of 18.7 liters. If the gas is a
mihalych1998 [28]

Answer:

\boxed {\boxed {\sf 0.757 \ atm}}

Explanation:

We are asked to find the pressure of a gas given a change in volume. Since the temperature remains constant, we are only concerned with volume and pressure. We will use Boyle's Law, which states the volume is inversely proportional to the pressure. The formula for this law is:

P_1V_1= P_2V_2

Initially, the oxygen gas occupies a volume of 18.7 liters at a pressure of 1.19 atmospheres.

1.19 \ atm * 18.7 \ L = P_2V_2

The gas expands to a volume of 29.4 liters, but the pressure is unknown.

1.19 \ atm * 18.7 \ L = P_2 * 29.4 \ L

We are solving for the new pressure, so we must isolate the variable P_2. It is being multiplied by 29.4 liters. The inverse operation of multiplication is division. Divide both sides of the equation by 29.4 L.

\frac {1.19 \ atm * 18.7 \ L}{29.4 \ L} =\frac{ P_2 * 29.4 \ L}{29.4 \ L}

\frac {1.19 \ atm * 18.7 \ L}{29.4 \ L} =P_2

The units of liters cancel.

\frac {1.19 \ atm * 18.7 }{29.4 } =P_2

\frac {22.253}{29.4 } \ atm = P_2

0.7569047619 \ atm =P_2

The original measurements all have 3 significant figures, so our answer must have the same. For the number we calculated, that is the thousandth place. The 9 in the ten-thousandth place to the right of this place tells us to round the 6 up to a 7.

0.757 \ atm \approx P_2

The pressure of the gas sample is approximately <u>0.757 atmospheres.</u>

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4 years ago
Please help!!!<br> Its not chemistry is science.
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