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Think of a single bond, it only shares one pair of electrons. But a triple bond shares three pairs of electrons. More shared electrons means a stronger bond will result because the other atom's positively charged nucleus is even more attracted to the electrons than the previous bond. This increased attraction pulls the nuclei closer together creating a shorter distance between the two atom. The shorter the bond, the stronger the bond because it requires more energy to separate it

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13y ago
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11y ago

It depends on what molecules you are using. The stability of any type of bond changes as you have a different compund.

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11y ago

Triple bonds have more Valence Electrons that can act as nucleophiles (i.e. they are more available to "attack" other atoms) than double bonds

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12y ago

because it takes a lot of temparatures to break double and triple bond

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Q: Why triple bond is the most stable compound?
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Why is a triple bond the most difficult to break?

The main reason for this is because, within the triple bond there is a high concentration of electrons. Therefore, electrophillic elements like oxygen will be attracted to the bond. These elements can steal electrons from the bond and form a related compound. Better answers will probably follow, but this is a start at least.


How many bonds does carbon need to form to be a stable compound?

The strongest and most stable bonds involve carbon (C) to carbon bonds. C in sp, sp2, and sp3 hybridization, that is single, double and triple bonds, are the most stable.


What is the complete definition of triple covalent bond?

A triple bond in chemistry is a chemical bond between two chemical elements involving six bonding electrons instead of the usual two in a covalent single bond. The most common triple bond, that between two carbon atoms, can be found in alkynes. Other functional groups containing a triple bond are cyanides and isocyanides. Some diatomic molecules, such as dinitrogen and carbon monoxide are also triple bonded. In-skeletal formula the triple bond is drawn as three parallel lines between the two connected atoms.


What type of structure must each atom in a compound usually exhibit for the compound to be stable?

spherical packaged structureszumdahl textbook answer: "..the most important requirement for the formation of a stable compound is that the atoms achieve noble gas electron configurations."


What do you call a compound that is held together by an ionic bond?

most ionic compounds are salt

Related questions

Is nitrogen commonly found?

Nitrogen is the most common gas found in the atmosphere. It is very stable because it has a triple bond between atoms.


How are molecules of an element and a compound different?

Hydrogen symbol : H , and atomic number : 1 is an element . Whereas H2 is the hydrogen compound . The element may not be stable but molecule are always stable . When we see the molecular structure of hydrogen element , the outer most valence shell has one electron , which means hydrogen needs one more electron to fulfill its duplet . When the octate and duplet are fulfilled they are stable . In compound various element and molecules , bond to complete each others octate or duplet . Compound have certain bond . Eg electrovalent bond and covalent bond .


Why is a triple bond the most difficult to break?

The main reason for this is because, within the triple bond there is a high concentration of electrons. Therefore, electrophillic elements like oxygen will be attracted to the bond. These elements can steal electrons from the bond and form a related compound. Better answers will probably follow, but this is a start at least.


How many bonds does carbon need to form to be a stable compound?

The strongest and most stable bonds involve carbon (C) to carbon bonds. C in sp, sp2, and sp3 hybridization, that is single, double and triple bonds, are the most stable.


What type of bond is the most stable?

The most stable bond is the bond that is most symmetrical, in terms of molecular shape. However, a sigma bond is stronger than, say, a pi or delta bond, due to the manner of the sigma bond (head-head) and pi bonds (side to side overlap).


What is the complete definition of triple covalent bond?

A triple bond in chemistry is a chemical bond between two chemical elements involving six bonding electrons instead of the usual two in a covalent single bond. The most common triple bond, that between two carbon atoms, can be found in alkynes. Other functional groups containing a triple bond are cyanides and isocyanides. Some diatomic molecules, such as dinitrogen and carbon monoxide are also triple bonded. In-skeletal formula the triple bond is drawn as three parallel lines between the two connected atoms.


What type of structure must each atom in a compound usually exhibit for the compound to be stable?

spherical packaged structureszumdahl textbook answer: "..the most important requirement for the formation of a stable compound is that the atoms achieve noble gas electron configurations."


What do you call a compound that is held together by an ionic bond?

most ionic compounds are salt


Diatomic molecule with a triple covalent bond?

The most common one is molecular nitrogen, with formula N2.


Is carbonate CO3 a stable compound?

Carbonate is not a compound at all, because it is not electrically neutral; instead it is a polyatomic ion, with a charge of -2. Most carbonate salts are stable at standard temperature and pressure, but most of them will convert from carbonates to oxides by releasing carbon dioxide when heated sufficiently.


When atoms share these a covalent bond is formed?

There are many examples of compounds formed with covalent bonding. Here are some: Water Methane Ethanol Polystyrene Sulphur Dioxide There are many more [both organic and in-organic compounds]


What molecule is most chemically stable oxygen nitrogen or hydrogen?

Nitrogen is the most chemically stable of the three elements listed at standard temperature and pressure, because all of the elements listed occur as diatomic molecules under these conditions. The triple bond between two nitrogen atoms requires more energy to break than either the double bonds between two oxygen atoms or the single bonds between two hydrogen atoms, and breaking this bond is almost always required before further reaction can occur.