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Nookie1986 [14]
2 years ago
15

Use the periodic table to determine the electron configuration for aluminum (al) and arsenic (as) in noble-gas notation.

Chemistry
2 answers:
stellarik [79]2 years ago
6 0

Answer: Electronic configuration of

1. Aluminium is [Ne]3s^23p^1

2. Arsenic is [Ar]4s^23d^{10}4p^3

Explanation: To write the electronic configuration of the elements in the noble gas notation, we first count the total number of electrons and then write the noble gas which lies before the same element.

  • <u>For Aluminium:</u>

Atomic number = 13

Total number of electrons = 13

Noble gas which lies before this element is Neon (Ne).

Neon has 10 electrons, rest 3 electrons are filled in 3s and 3p sub-shells.

Electronic configuration of Aluminium becomes [Ne]3s^23p^1

  • <u>For Arsenic:</u>

Atomic number = 33

Total number of electrons = 33

Noble gas which lies before this element is Argon (Ar).

Neon has 18 electrons, rest 15 electrons are filled in 4s , 3d and 4p sub-shells.

Electronic configuration of Arsenic becomes [Ar]4s^23d^{10}4p^3.

inessss [21]2 years ago
5 0
Al: [Ne] 2s2 2p1 

As: [Ar] 4s2 3d10 4p3 
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2 years ago
The concentration of Si in an Fe-Si alloy is 0.25 wt%. What is the concentration in kilograms of Si per cubic meter of alloy?
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Now we have to calculate the concentration in kilograms of Si per cubic meter of alloy.

Concentration of Si in kilograms =  \frac{\text{Weight of Si in 100 g of alloy}}{\text{Volume of 100 g of alloy}}

Concentration of Si in kilograms =  \frac{\text{Weight of Si in 100 g of alloy}}{\frac{\text{Wight of Fe}}{\text{Density of Fe}}+\frac{\text{Wight of Si}}{\text{Density of Si}}}

Now put all the given values in this expression, we get:

Concentration of Si in kilograms = \frac{0.00025kg}{\frac{99.75g}{7.87\times 10^6g/m^3}+\frac{0.25g}{2.23\times 10^6g/m^3}}

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2 years ago
A 3.140 molal solution of NaCl is prepared. How many grams of NaCl are present in a sample containing 2.314 kg of water?
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Answer:

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Athletic trainers use instant ice packs that can be cooled quickly on demand. Squeezing the pack breaks an inner container, allo
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Answer:

The heat flow is  best described as an exchange of heat between the system and the surroundings.

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Heat is a form of energy which is transferred spontaneously from a hotter body to a cool body as a result of temperature differences between the substances. In the problem , it can be said that heat moves from  the surroundings which may be a fractured knee of the athlete to the ice packs.  

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