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andrey2020 [161]
3 years ago
3

Use the periodic table to select the element from the drop-down menu that has the correct relative electronegativity.

Chemistry
2 answers:
timofeeve [1]3 years ago
8 0

Answers


Mg > Ca

P > As

C <N

Br < Cl


Solnce55 [7]3 years ago
6 0
The trend of the electronegativy in the periodic table is that it grows in a row from left to right, and decreases in a column from up to bottom.

That leads to the fact the F is the most electronegative element (noble gases do not count for electronegativity because they have the valence electron sehll full).

So, you can compate electronegativities of elements in a same row or in a same column. Also if an element is upper and more to the right than other you know that it is more electroneative.

From that, you cannot compare P, C and Br, because they are more or less in the same diagonal. and you cannot infere from that the correct order of their relative electronegativities.

You can compare Mg elements in the same row and column:

In its row, Mg is more electronegative than Na and less electronegative than Al, Si, P, S and Cl

In its column, Mg is less electronegative than Be and more electronegative than Ca, Sr, Ba and Ra.

That is how you can compare: elements to the right are more electronetatives than other elements in the same row that are more to the left; elements upper are more electronegative than other elements in the same column.
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The decomposition of NH4HS is endothermic: NH4HS(s)⇌NH3(g)+H2S(g) Part A Which change to an equilibrium mixture of this reaction
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Explanation:

According to Le Chatelier's principle, any disturbance caused in an equilibrium reaction will shift the equilibrium in a direction that will oppose the change.

As the given reaction is as follows.

       NH_{4}HS(s) \rightleftharpoons NH_{3}(g) + H_{2}S(g)

(a)  When increase the temperature of the reactants or system then equilibrium will shift in forward direction where there is less temperature. It is possible for an endothermic reaction.

Thus, formation of H_{2}S will increase.

  • (b)  When we decrease the volume (at constant temperature) of given reaction mixture then it implies that there will be increase in pressure of the system. So, equilibrium will shift in a direction where there will be decrease in composition of gaseous phase. That is, in the backward direction reaction will shift.

Hence, formation of H_{2}S will decrease with decrease in volume.

  • When we increase the mount of NH_{4}HS then equilibrium will shift in the direction of decrease in concentration that is, in the forward direction.

Thus, we can conclude that formation of H_{2}S will increase then.

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3 years ago
An article in Science News stated, "Noble gases are snobs." What did the author mean?
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Answer:

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Noble gases occupy the last group of the periodic table

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What this means is that they have attained stability and thus do not take part in chemical bonding that usually invloves the transfer or sharing of electrons

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