Answer:
Explanation:
Calcium oxide is fromed by the decomopostion of CaCO3 at high temperature.
CaCO3 ------> CaO +CO2
Hope this helps you
Answer : The concentration of remains at equilibrium will be, 0.37 M
Explanation : Given,
Equilibrium constant = 4.90
Initial concentration of = 2.00 M
The balanced equilibrium reaction is,
Initial conc. 2 M 0 0
At eqm. (2-2x) M x M x M
The expression of equilibrium constant for the reaction will be:
Now put all the values in this expression, we get :
By solving the term 'x' by quadratic equation, we get two value of 'x'.
Now put the values of 'x' in concentration of remains at equilibrium.
Concentration of remains at equilibrium =
Concentration of remains at equilibrium =
From this we conclude that, the amount of substance can not be negative at equilibrium. So, the value of 'x' which is equal to 1.291 M is not considered.
Therefore, the concentration of remains at equilibrium will be, 0.37 M
The weighted average (Avg) for these values has been 5.35.
The weighted average has been an arithmetic calculation of the mean value for the percent abundance of each value.
The weighted average (Avg) for the values has been given by:
The values have been given,
The weighted average has been given as:
For the given set of values, the weighted average (Avg) has been given as:
The weighted average (Avg) for these values has been 5.35.
Learn more about weighted average, here:
Answer:
5.35
Explanation:
Value 5.00 6.00 7.00
Weight 75.0% 15.0% 10.0 %
We can determine the weighted average of these values using the following expression.
Weighted average = ∑ wi × xi
where,
w: relative weight
x: value
Weighted average = 5.00 × 0.750 + 6.00 × 0.150 + 7.00 × 0.100
Weighted average = 5.35
Answer: The value of equilibrium constant for the net reaction is 11.37
Explanation:
The given chemical equations follows:
Equation 1:
Equation 2:
The net equation follows:
As, the net reaction is the result of the addition of first equation and the reverse of second equation. So, the equilibrium constant for the net reaction will be the multiplication of first equilibrium constant and the inverse of second equilibrium constant.
The value of equilibrium constant for net reaction is:
We are given:
Putting values in above equation, we get:
Hence, the value of equilibrium constant for the net reaction is 11.37
Answer : The correct option is, (A) , acidic
Explanation:
pH : It is defined as the negative logarithm of hydrogen ion or hydronium ion concentration.
When the value of pH is less then 7 then the solution will be acidic.
When the value of pH is more then 7 then the solution will be basic.
When the value of pH is equal to 7 then the solution will be neutral.
First we have to calculate the pH.
Now we have to calculate the pOH.
Now we have to calculate the concentration.
Therefore, the concentration is,
A− A) A nonmetal that gained one electron
B+ B) A metal that lost one electron
C2− C) A metal that lost two electrons
D2+ D) A nonmetal that gained two electrons
Answer:
c2-c
Explanation:
A mental that lost two electrons just joking I don't k ow but I think it ain't the first o e because of comment sense to the 5th power
Answer:
A and B
Explanation:
metal form ion by lossing elecron
non metal form ion by gaining electron
Answer:
Explanation:
Hello,
In this case, one can assume 1L as the volume of the solution, so we've got 0.010mg of cadmium. Now, as we're asked to know its molarity, one computes the moles of cadmium as follows:
Now, one obtains the molar concentration (molarity) as shown below:
Best regards.