In the given question, in 28 grams of molecule 0.636 moles are present.
A mole is the amount of a substance which comprises exactly 'elementary entities' of that substance.
To find the number of moles in 28 grams of , we first need to determine the molar mass of .
Molar mass of = 12.01 g/mol (carbon) + 2(16.00 g/mol) (oxygen)
= 44.01 g/mol
Now that we know the molar mass of , we can use the following formula to calculate the number of moles:
= 0.636 mol
Therefore, there are 0.636 moles in 28 grams of .
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Answer: +4
Explanation:
Firstly, we know that Oxygen should have an oxidation number of -2. This is because according to oxidation rules, Oxygen's number will always be -2 unless it is a part of a peroxide and then it will be -1 (ex: H2O2). UO2 is not a peroxide, so the regular rules will apply.
We also know that oxidation numbers in a molecule with no charge should add up to zero. There are two oxygen molecules which makes their total oxidation numbers equal to -4. Therefore, whatever U's oxidation number is should cancel out that -4 to make the total number 0.
So, U's oxidation number should be +4 since -4+4=0.
b. fission
c. physical
d. chemical
2. Ba2SO4
3. BaSO4
4. Ba(SO4)2
Answer:
3. BaSO4
Explanation:
the math will show you, and to answer your commented question "How does this evidence indicate that the reaction has occurred between ions ?" :
The reaction of the ions can be checked by a number of methods. In a chemical reaction, the ions are in the aqueous solution. This means that they are in solution, dissolved with charge. During the reaction (ionic) there is an attraction between the positive and negative ions. This makes a change in the state of the reactants in the products. In addition, the reaction can result in an immediate observable change such as the formation of a solid or precipitation.
Answer:
The same wavelength
Explanation:
The two sound waves shown in the diagram has the same wavelength as clearly shown.