The number of moles is 1.49 and the molar mass is 176.124 g/mol.
To determine the number of moles, we can use the formula:
moles = mass / molar mass
Given that the mass of the gas is 262g and the molar mass is 176.124 g/mol, we can substitute these values into the formula:
moles = 262g / 176.124 g/mol = 1.49 moles (rounded to two decimal places).
Therefore, the number of moles is 1.49. The molar mass of the compound is 176.124 g/mol. In order to determine what element this is, we would need more information about the compound.
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Explanation:
Most of the carbon compound are convalent in nature and all of the electrons participates in bond formation as such there is no free electrons left to conduct electricity. Moreover carbon compound doesn't readily dissociates to form ions, which conduct electricity. Hence carbon compound are poor conductor of electricity.
Answer:
It is because all the valence electrons are used to form covalent bonds. So, there will be no electrons left to flow the electric current through them.
Explanation:
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Answer: Radiation
Explanation: There are three modes of heat transfer:
1. Conduction: This type of heat transfer happens when there is direct contact between the two object.
2. Convection: This type of heat transfer happens when there is a movement of fluid (liquid or gas).
3. Radiation: This type of heat transfer happens when there is direct transfer of energy through space.
(2) nitrogen (4) fluorine
Answer: Option (1) is the correct answer.
Explanation:
Carbon atoms are able to combine with its atoms resulting in formation of long chains. This property of carbon is known as catenation. Whereas carbon atom also has the property to combine with other atoms and results in the formation of long chains or rings.
On the other hand, oxygen, nitrogen, and fluorine does not form long chains or rings.
Thus, we can conclude that carbon is the element whose atoms can bond with each other to form long chains or rings.
B. 8
C. 3
D. 4
Which equation represents the oxidation half reaction?
(1) Zn(s) + 2e– → Zn2+(aq)
(2) Zn(s) → Zn2+(aq) + 2e–
(3) Cu2+(aq) → Cu(s) + 2e–
(4) Cu2+(aq) + 2e– → Cu(s)
Answer: Option (2) is the correct answer.
Explanation:
Oxidation is the process in which there is loss of electrons or increase in oxidation number of the element.
Whereas reduction is the process in which there is gain of electrons or decrease in oxidation number of the element.
For example,
Oxidation-half reaction:
Reduction-half reaction:
Thus, we can conclude that the given equation Zn(s) → Zn2+(aq) + 2e– represents the oxidation half reaction.
The equation that represents the oxidation half reaction is Zn(s) → Zn2+(aq) + 2e–
Oxidation reaction is the process in which there is loss of electrons or increase in oxidation number of the element.
From all the given half reaction, there is only one reaction with increase in oxidation number;
Zn(s) → Zn2+(aq) + 2e–
Thus, there is increase in oxidation number of 0 to + 2.
Learn more about oxidation number here: brainly.com/question/27239694
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Solidsto gases without entering liquid state