Dissociation is the process by which ions separate when an ionic solid dissolves in a solvent. The compound is simply broken down into its elements when reacted with a solvent.
For example, if you have the compound AB, it could be broken down into A + B
AB ----> A + B
You could also take the example of dinitrogen tetroxide (N2O4) dissociating to nitrogen dioxide (NO2)
N2O4 ----> 2 NO2
which is the same as writing
N2O4 ----> NO2 + NO2
so you can see how N2O4 was broken down into smaller parts
In a molecular equation, all reactants and products are written as complete formulas, while in an ionic equation, only ions that participate in the reaction are written. Ionic equations focus on the dissociation of ionic compounds into their constituent ions, whereas molecular equations do not show this dissociation. Ionic equations provide a more accurate representation of the species involved in a reaction in solution compared to molecular equations.
Dissociation refers to the breaking apart of a compound into ions in a solvent, while solvation involves the surrounding of solute particles by solvent molecules. Dissociation is a specific process that occurs for ionic compounds, whereas solvation can occur for both ionic and molecular compounds.
No, a sugar solution is typically molecular because sugar molecules do not dissociate into ions when dissolved in water. Ionic solutions, on the other hand, are formed by the dissociation of ions in water.
Dissociation is an endothermic process.
First, molecular weight is a direct function of the level of dissociation and hence an indirect function of temperature. Dissociated Air has a significantly (about an order or magnitude) lower molecular weight as associated air (e.g. air at room temperature). Dissociation for air starts somewhere around 2000 Celsius (that's where O2 goes into O+O) and hence, the molecular weight of air up to 2000 Celsius is constant. This also affects the "specific gas constant" which drastically decreases in temperature regimes where dissociation occurs.With that said, the molecular weight of DRY air (no water vapor) is 28.97. Engineering Toolbox does a good job of breaking down the composition of associated air, see the URL below:http://www.engineeringtoolbox.com/molecular-mass-air-d_679.html
In a molecular equation, all reactants and products are written as complete formulas, while in an ionic equation, only ions that participate in the reaction are written. Ionic equations focus on the dissociation of ionic compounds into their constituent ions, whereas molecular equations do not show this dissociation. Ionic equations provide a more accurate representation of the species involved in a reaction in solution compared to molecular equations.
Dissociation refers to the breaking apart of a compound into ions in a solvent, while solvation involves the surrounding of solute particles by solvent molecules. Dissociation is a specific process that occurs for ionic compounds, whereas solvation can occur for both ionic and molecular compounds.
Frank Paul Tully has written: 'Crossed molecular beam study of the collision-induced dissociation of alkali halides'
No, a sugar solution is typically molecular because sugar molecules do not dissociate into ions when dissolved in water. Ionic solutions, on the other hand, are formed by the dissociation of ions in water.
1. ATP hydrolysis 2. Cross-bridge formation 3. Release of ADP and phosphate (p) 4. ATP binding; Cross-bridge dissociation
Joseph Charles Alfano has written: 'The electronic spectroscopy, photophysics and dissociation dynamics of small Van der Waals clusters in a molecular beam'
Kaiqin Lao has written: 'Polarized emission spectroscopy studies of the photodissocation of dynamics of small molecules' -- subject(s): Photochemistry, Dissociation, Molecular dynamics
Dissociation is a dangerous mental disease.
Dissociation is an endothermic process.
First, molecular weight is a direct function of the level of dissociation and hence an indirect function of temperature. Dissociated Air has a significantly (about an order or magnitude) lower molecular weight as associated air (e.g. air at room temperature). Dissociation for air starts somewhere around 2000 Celsius (that's where O2 goes into O+O) and hence, the molecular weight of air up to 2000 Celsius is constant. This also affects the "specific gas constant" which drastically decreases in temperature regimes where dissociation occurs.With that said, the molecular weight of DRY air (no water vapor) is 28.97. Engineering Toolbox does a good job of breaking down the composition of associated air, see the URL below:http://www.engineeringtoolbox.com/molecular-mass-air-d_679.html
False. When a molecular solid mixes with water, the solute typically breaks apart into individual ions or molecules, rather than breaking down into individual molecules. This process is known as dissociation.
The dissociation of a compound is when a molecular compound, for example: HCl(g) is broken apart to give H+ and Cl- ions when it is dissolved in water. Example the dissociation of compound HCl(g): HCl(g) --(H2O)--> H+ (aq) + Cl-(aq)