Answer: The correct answer is Option 2.
Explanation:
Hydrocarbons are defined as the compounds which have a covalent bond present between hydrogen and carbon atoms. For Example: is a hydrocarbon. are not considered as hydrocarbons.
For the given options:
Option 1: butanal
The chemical formula for this compound is
This is not considered as a hydrocarbon because a covalent bond is present between carbon and oxygen atom.
Option 2: butyne
The chemical formula for this compound is
This is considered as a hydrocarbon because covalent bonds are present between carbon and hydrogen atoms only.
Option 3: 2-butanol
The chemical formula for this compound is
This is not considered as a hydrocarbon because a covalent bond is present between carbon and oxygen atom.
Option 4: 2-butanone
The chemical formula for this compound is
This is not considered as a hydrocarbon because a covalent bond is present between carbon and oxygen atom.
From the above information, the correct answer is Option 2.
The atomic theory develop and change as the from the Bohr's model is that how electrons occupy the space using the scientific method from the philosophy.
The John Dalton develop the Proust's work and then change the atomic philosophy of the into the scientific theory. Scientists did not believe that the electrons move in the regions not in the orbits and then they uses the mathematics and quantum numbers for the explanation.
The Bohr's model is to describe the chemical properties of an atom. The experiments demonstrated that atoms of the same element contains the different masses as the number of the neutrons can vary and called as the isotopes of the same element.
To learn more about atomic theory here
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1. In Natural Theology what were the 4 aspects of creation?
Answer:
A. 3.36g of Na.
B. 14.62g of Ba3(PO4)2.
Explanation:
We'll begin by writing the balanced equation for the reaction. This is given below:
3Ba + 2Na3PO4 → 6Na + Ba3(PO4)2
Next, we shall determine the mass of Ba that reacted and the mass of Na and Ba3(PO4)2 produced from the equation.
This is illustrated below:
Molar Mass of Ba = 137g/mol
Mass of Ba from the balanced equation = 3 x 137 = 411g
Molar mass of Na = 23g/mol
Mass of Na from the balanced equation = 6 x 23 = 138g
Molar mass of Ba3(PO4)2 = (3 x 137) + 2[31 + (4x16)] = 411 + 2[31 + 64] = 601g/mol
Mass of Ba3(PO4)2 from the balanced equation = 1 x 601 = 601g
Summary:
From the balanced equation above,
411g of Ba reacted to produce 138g of Na and 601g of Ba3(PO4)2.
A. Determination of the mass of Na produced by reacting 10g of Ba.
From the balanced equation above,
411g of Ba reacted to produce 138g of Na.
Therefore, 10g of Ba will react to produce = (10 x 138)/411 = 3.36g of Na.
Therefore, 3.36g of Na is produced.
B. Determination of the mass of Ba3(PO4)2 produced by reacting 10g of Ba.
From the balanced equation above,
411g of Ba reacted to produce 601g of Ba3(PO4)2.
Therefore, 10g of Ba will react to produce = (10 x 601)/411 = 14.62g of Ba3(PO4)2.
Therefore, 14.62g of Ba3(PO4)2 is produced.