Whether Mg ( OH ) 2 will precipitate or not is to be identified. Concept introduction: Solubility product is equilibrium constant for reactions that occur when an ionic compound is dissolved to produce ions. It is denotedby K sp . Consider A x B y an ionic compound. Its dissociation occurs as: A x B y ⇌ x A y + + y A x − The expression for its K sp is as follows: K sp = [ A y + ] x [ B x − ] y A precipitate of an ionic compound will form when solution that contains constituent ion is mixed. The precipitation depends on value of ion product (IP). The IP is defined in the same way as K sp . Also, the concentrations in expression for IP are concentration at time t and not equilibrium concentrations. Consider A x B y to be an ionic compound. Its dissociation occurs as follows: A x B y ⇌ x A y + + y A x − The expression for its IP is as follows: IP = [ A y + ] t x [ B x − ] t y The negative logarithm of molar concentration of hydronium ion is called pH . The expression for pH is as follows: pH = − log 10 [ H 3 O + ] The relation between pH and pOH is as follows: pH + pOH = 14
Whether Mg ( OH ) 2 will precipitate or not is to be identified. Concept introduction: Solubility product is equilibrium constant for reactions that occur when an ionic compound is dissolved to produce ions. It is denotedby K sp . Consider A x B y an ionic compound. Its dissociation occurs as: A x B y ⇌ x A y + + y A x − The expression for its K sp is as follows: K sp = [ A y + ] x [ B x − ] y A precipitate of an ionic compound will form when solution that contains constituent ion is mixed. The precipitation depends on value of ion product (IP). The IP is defined in the same way as K sp . Also, the concentrations in expression for IP are concentration at time t and not equilibrium concentrations. Consider A x B y to be an ionic compound. Its dissociation occurs as follows: A x B y ⇌ x A y + + y A x − The expression for its IP is as follows: IP = [ A y + ] t x [ B x − ] t y The negative logarithm of molar concentration of hydronium ion is called pH . The expression for pH is as follows: pH = − log 10 [ H 3 O + ] The relation between pH and pOH is as follows: pH + pOH = 14
Solution Summary: The author explains that a precipitate of an ionic compound will form when solution that contains constituent ions is mixed.
Whether Mg(OH)2 will precipitate or not is to be identified.
Concept introduction:
Solubility product is equilibrium constant for reactions that occur when an ionic compound is dissolved to produce ions. It is denotedby Ksp. Consider AxBy an ionic compound. Its dissociation occurs as:
AxBy⇌xAy++yAx−
The expression for its Ksp is as follows:
Ksp=[Ay+]x[Bx−]y
A precipitate of an ionic compound will form when solution that contains constituent ion is mixed. The precipitation depends on value of ion product (IP). The IP is defined in the same way as Ksp. Also, the concentrations in expression for IP are concentration at time t and not equilibrium concentrations. Consider AxBy to be an ionic compound. Its dissociation occurs as follows:
AxBy⇌xAy++yAx−
The expression for its IP is as follows:
IP=[Ay+]tx[Bx−]ty
The negative logarithm of molar concentration of hydronium ion is called pH. The expression for pH is as follows:
In each case (more ductile, more brittle, more tough or resistant), indicate which parameter has a larger value.
parameter Elastic limit Tensile strength
more ductile
Strain at break Strength Elastic modulus
more fragile
more tough or resistant
4) A typical bottle of pop holds carbon dioxide at a pressure of 5 atm. What is the concentration of carbon dioxide in th
solution?
5) A stream flowing over rocks and such is exposed to the atmosphere and well aerated. What would be the nitrogen
concentration in the water at 25°C? (Air pressure is 1.000 bar.)
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Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell