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प्रश्न
What type of chemical bond is formed between carbon and bromine?
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उत्तर
Carbon and bromine are both non-metals. Hence the type of bond formed between them is covalent bond.
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संबंधित प्रश्न
State the reason why carbon can neither form C4+ cations nor C4− anions but forms covalent compound.
State the type of bonding in the following molecule.
Water
State whether the following statement is true or false:
Diamond and graphite are the covalent compounds of carbon element (C)
Buckminsterfullerene is spherical molecule in which 60 carbon atoms are arranged in interlocking hexagonal and pentagonal rings of carbon atoms.
How many hexagons of carbon atoms are present in one molecule of buckminsterfullerene?
What type of bonds are present in hydrogen chloride and oxygen?
Fill in the following blank with suitable word:
The form of carbon which is known as black lead is ...........
will CCl4 conduct electricity or not?
give reason for your choice.
Name one covalent compound containing chlorine.
Give the formula of the compound that would be formed by the combination of the following pair of elements:
K and H
One of the following contains a double bond as well as single bonds. This is:
(a) CO2
(b) O2
(c) C2H4
(d) C2H2
Which of the following has a triple bond as well as single bonds?
(a) ethene
(b) methane
(c) ethyne
(d) nitrogen
One of the following is not an allotrope of carbon. This is:
(a) diamond
(b) graphite
(c) cumene
(d) buckministerfullerene
What is the difference between ionic compounds and polar covalent compounds?
Explain why carbon tetrachloride does not dissolve in water.
Draw the electron dot diagram and structure of nitrogen molecule.
Explain the following:
Water is a polar covalent molecule.
What is the difference between :
Ionic compounds and covalent compounds
Carbon forms four covalent bonds by sharing its four valence electrons with four univalent atoms, e.g. hydrogen. After the formation of four bonds, carbon attains the electronic configuration of
In covalent compounds, the bond is formed due to ______ of electrons.
