CH5, is it existed, would not be an element but a compound as it contains two elements bonded together (carbon and hydrogen). But CH5 cannot exist as carbon cannot bond with more than 4 other atoms.
CH4 is the compound known as methane.
The conjugate acid of CH3 (methane) would be CH5+, which is an unstable species known as a methyl cation.
C4H10 is the molecular formula for butane, as it represents the actual number of atoms of each element in a single molecule of the compound. The empirical formula for butane would be CH5, as it shows the simplest whole number ratio of atoms present in the compound.
It is an element. Elements are composed of atoms, and atoms of elements combine chemically to form compounds.
This chemical element is dysprosium (Dy).
The element name for element number 31 is Gallium.
Methanium is not a stable compound; however, its formula would be CH5+.
Yes, CH5 is a molecular formula that represents a hypothetical carbon hydrogen compound. However, CH5 does not correspond to any stable molecule as hydrogen can only form one covalent bond.
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There is no such compound. CH4 is methane (aka natural gas).
CH5 is not a possible molecular formula because hydrogen typically forms one bond, so it cannot form five bonds to carbon in a stable molecule.
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The conjugate acid of CH3 (methane) would be CH5+, which is an unstable species known as a methyl cation.
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The empirical formula for C8H10 is CH5. This is found by dividing the subscripts in the molecular formula by their greatest common factor.
C4H10 is the molecular formula for butane, as it represents the actual number of atoms of each element in a single molecule of the compound. The empirical formula for butane would be CH5, as it shows the simplest whole number ratio of atoms present in the compound.