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spayn [35]
2 years ago
10

Which lewis electron-dot diagram correctly represents a hydroxide ion

Chemistry
1 answer:
andrew11 [14]2 years ago
5 0
Complete Question is attached below,

Answer:
            Option-A is the correct answer.

Explanation:
                   As we know Hydroxide contains one hydrogen and one oxygen atom. Also one negative charge is being carried bu hydroxide ion as,,,

                                                       OH⁻

Now in order to draw its lewis structure we first of all calculate the total number of valence electrons of both elements i.e.

Valence electrons in Oxygen      =   6

valence electrons in Hydrogen   =   1

Number of negative charges      =   1
                                                     ------------
Total valence electrons                    8

Now, we draw both elements and connect them via a single bond and subtract 2 electrons per single bond,

                                                 =  8  -  2

                                                 =  6

Now these six electrons are added to oxygen atom as it is more electronegative element. Hence, a structure shown in Option-A is formed, and the negative charge is in fact the -1 formal charge of oxygen atom.

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Answer:

0.037 volts

Explanation:

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in sample of elemental bromine, 55% or the atoms are Br-79, and the remainder are Br-81. if this sample is typical of naturally
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Answer:

The average atomic mass of bromine is 79.9 amu.

Explanation:

Given data:

Percentage of Br⁷⁹ = 55%

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Formula:

Average atomic mass = [mass of isotope× its abundance] + [mass of isotope× its abundance] +...[ ] / 100

Now we will put the values in formula.

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2 years ago
Two gas jars are connected to each other, but they are separated by a closed valve. One gas jar contains oxygen, and the other c
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The combustion of one mole of liquid ethanol, CH3CH2OH, produces 1367 kJ of heat. Calculate how much heat is produced when 235.0
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Answer:- 6984 kJ of heat is produced.

Solution:- From given information, 1367 kJ of heat is produced by the combustion of 1 mole of ethanol. We are asked to calculate the heat produced by the combustion of 235.0 g of ethanol.

Let's convert given grams to moles and multiply by the heat produced by one mole of ethanol to get the total heat produced. Molar mass of ethanol is 46 grams per mole. The set will be:

235.0g(\frac{1mole}{46g})(\frac{1367 kJ}{1mole})

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So, 6984 kJ of heat is produced by the combustion of 235.0 g of liquid ethanol.

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