Which bond energy is greatest?
The maximum bond energy is of N2 because N2 molecule is formed by 3 covalent bonds and O2 molecule is formed by 2 covalent bonds. Since N2 has more covalent bonds and smaller in size then carbon so the bond energy is more.
Hence, C−C bond has highest bond energy.
In chemistry, covalent bond is the strongest bond. In such bonding, each of two atoms shares electrons that binds them together. For example, water molecules are bonded together where both hydrogen atoms and oxygen atoms share electrons to form a covalent bond. Was this answer helpful?
Hence, Option(a) Cl2 has the maximum bonding energy.
Complete answer: The order from strongest to weakest bonds is: Covalent bond > ionic bond > hydrogen bond >Van der Waals forces.
Therefore, the order of strength of bonds from the strongest to weakest is; Ionic bond > Covalent bond > Hydrogen bond > Van der Waals interaction.
C-C is stronger. Assuming you meant electrostatic bonds, i.e. the bond between the two atoms.
Which of the following molecules has the highest value of carbon-carbon bond energy? Solution : With increase in bond order, bond length decreases while bond orders. However, the bond enthalpy of `CO (kJ "mol"^(-1))` is more than that of `N_2(946 kJ "mol"^(-1))` because CO is polar while `N_2` is nonpolar.
More effective axial and sideways overlapping between atomic orbitals of carbon and those of oxygen atom is higher due to the smaller size of the oxygen atom. Oxygen is more electronegative than oxygen atom, due to these factors CO has the highest bond energy.
Therefore, the order from strongest to weakest bond is Ionic bond > Covalent bond > Hydrogen bond > Vander Waals interaction.
Why is covalent bond the strongest?
Covalent bonds are the strongest bonds in nature and under normal biological conditions have to be broken with the help of enzymes. This is due to the even sharing of electrons between the bonded atoms and as with anything equally shared there is no conflict to weaken the arrangement.
There are three types of bonds that are important to biology: ionic (second strongest), covalent (strongest), and hydrogen (weakest).

Answer and Explanation: I2 has a bond energy of 151 kJ/mol while Cl2 C l 2 has a bond energy of 242 kJ/mol. These are both non-polar covalent compounds but the chlorine bond is closer to the nucleus of each of the two chlorine atoms than the iodine bond is and this makes the chlorine bond tighter and harder to break.
F2 has higher bond energy than the Cl2 .
Br2 molecules are larger than Cl2 molecules, so more electrons are present in Br2 molecules. Therefore there are stronger van der waals forces between Br2 molecules than Cl2 molecules, so more energy is needed to melt Br2.
As we shall explore in this section on ionic bonding, ionic bonds result from the mutual attraction between oppositely charged ions. They tend to be stronger than covalent bonds due to the coulombic attraction between ions of opposite charges.
The higher the bond energy, the 'stronger' we say the bond is between the two atoms, and the distance between them (bond length) is smaller.
The bond energy is directly proportional to electronegativity and bond strength. Which means, when the bond strength increases, it requires more energy to break that bond. Hence, the bond energy increases. Hence, the correct order of bond energy order is, \[C - Cl > C - Br > C - I\].
Ionic bond is much stronger than covalent bond because it involves complete transfer of electrons because of which there is formation of cation and anion and there exist huge electrostatic forces of attraction. They also have high melting and boiling point which proves that the ionic bond is very strong.
Since the bond with most electronegativity difference would be the strongest, it would be the O-H bond.
Which bond is stronger CH or CF?
The bond is labeled as "the strongest in organic chemistry," because fluorine forms the strongest single bond to carbon. Carbon–fluorine bonds can have a bond dissociation energy (BDE) of up to 130 kcal/mol. The BDE (strength of the bond) of C–F is higher than other carbon–halogen and carbon–hydrogen bonds.
In any case the CH bond is stronger than the CC single bond.
A fundamental re-assessment of the overall energetics of biochemical electron transfer chains and cycles is presented, highlighting the crucial role of the highest-energy molecule involved, O2.
Answer and Explanation: The organic compound that stores the most energy is lipids.
Because of this, in double bonds the atoms are closer to each other and you will have apply more energy to take them appart and hence they are stronger than the single bonds, in which the atoms are relatively away from each other.
Ionic bond: Ionic bonds are the strongest bonds because these are formed due to the electrostatic attraction of an electron from one atom to another. Covalent bond: These are also considered the strongest bond but not as much as an ionic bond, and these bonds are formed when the atoms share the pairs of electrons.
Hydrogen bonds are a special case of dipole-dipole interactions. H-bonds are the strongest intermolecular force.
Ionic and covalent bonds are strong bonds that require considerable energy to break. However, not all bonds between elements are ionic or covalent bonds. Weaker bonds can also form. These are attractions that occur between positive and negative charges that do not require much energy to break.
Covalent bonds are more stable because they have lower energy than the separate atoms would. As the atoms first begin to interact, the attractive force is stronger than the repulsive force and so the potential energy of the system decreases, as seen in the diagram.
Answer: The covalent bond is stronger than the ionic bond. The covalent bond is formed by sharing of electrons. There is an atomic orbital overlapping occurring in two bond-forming atoms and a sigma bond is formed. The bond length is small, hence the influence of attractive force is greater and atoms get closer.
Which has higher bond energy and stronger bond?
Bond energy of Cl2 is highest among all halogen molecules.
Hence the bond energy order is Cl2>Br2>I2.
In F2, interelectronic repulsions amongst the lone pairs make the F-F bond weak. Therefore, the bond is the strongest in Cl2.
O3 has longer and weaker bonds than O2, whereas SO2 has shorter and stronger bonds than SO.
Solution : Nitrogen molecule has highest bond energy due to presence of triple bond.
Which is stronger and why? Comparing the bond strength in H2 and Cl2 the chlorine/chlorine bond energy is smaller compared to the hydrogen/hydrogen bond energy. Because of the larger size of the chlorine atom, there are greater electron/electron repulsions.
Chlorine will have the highest bond energy.
in the example of halogens, a Br-Br bond is weaker than a Cl-Cl bond as each bromine atom has an extra shell of electrons meaning that there is less of an electrostatic attraction between the pair of bonding electrons and the nuclei of the molecules.
Therefore the bond length of C 2 H 6 is the longest. Hence it is the correct option.
In any case the CH bond is stronger than the CC single bond.
Which C-C bond has the highest bond dissociation energy?
Solution : `C-C` bond dissociation energy is 355 kj `"mol"_(-1)` which is the highest among the carbon family members.
Bond energy is determined by measuring the heat required to break one mole of molecules into their individual atoms, and it represents the average energy associated with breaking the individual bonds of a molecule.
Molecular oxygen, O2, is photolyzed by light of 241 nm and has a bond energy of 498 kJ/mol.
The bond energy in the gaseous diatomic species BB is 297 ±21 kJ mol-1.
<br> the bond length increases in the order `HF lt HC l lt HBR lt HI`.
Carbon-carbon bond (C-C) has the longest bond length.
The longest bond is considered to be a carbon-carbon bond, present in diamond. Its length is 154 pm. It is the longest due to the three-dimensional structure of diamond, and the carbon atoms bonded through covalent bonds.
Heavier isotopes make stronger bonds, therefore C-D and C-T bonds are stronger than C-H bonds.
Since the energy is the same at the dissociation limit, the bond energy is effect- ively higher for the C-D bond. In other words, the C-D bond is stronger. Therefore, any reaction in which the C-H bond is broken during or before the rate determining step will be slower if the hydrogen is replaced by a deuterium.
Solution : The bond energies of F-F, C-C, N-N and O-O bonds are 33, 80, 39 and 34.2 `kJ//mol` respectively. Therefore molecule of C-C has the highest bond energy.
Which of the following bond is strongest CC Si Si Sn Sn Pb Pb?
- Therefore, Sn-Sn bond has the highest bond energy. Therefore, the correct option is option (D).
Therefore, the order from strongest to weakest bond is Ionic bond > Covalent bond > Hydrogen bond > Vander Waals interaction.