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KClO(3)rarr KCl+O(2)...

KClO_(3)rarr KCl+O_(2)

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For the reaction, 2KClO_(3)rarr2KCl+3O_(2) , which statements (s) are (are) correct?

For the reactions : 4KClO _(3) rarr 3KClO_(4)+KCl if " "-(d[KClO_(3)])/(dt)=k_(1)[KClO_(3)]^(4) (d[KClO_(4)])/(dt)=k_(2)[KClO_(3)]^(4) (d[KCl])/(dt)=k_(3)[KClO_(3)]^(4) the correct relation between k_(1),k_(2) & k_(3) is :

Which of the following statement is not true about the following decomposition reaction? 2KClO_3rarr2KCl+3O_2

Balance the following chemical equation: KClO3 rarr KCl+O2

The following are two chemical equations. Distinguish between the chemical equations (i) and (ii) KClO_3 rarr KCl + O2 , 2KClO_3 rarr 2KCl + 3O_2

. A chemical equation has both qualitative and quantitative importance. Justify the statement. 2KClO_3 rarr 2KCl + 3O_2

2 g sample of KClO_(3) was heated under such conditions that a part of it decomposed according to the equation : 2KClO_(3) rarr 2KCl + 3O_(2) and the remaining underwent change according to the equation : 4KClO_(3)rarr 3KClO_(4)+KCl If the amount of O_(2) evolved was 146.8 ml at S.T.P., calculate the % by weight of KClO_(4) in the reside.

1 g sample of KClO_(3) was heated under such conditions that a part of it decomposed according to the equation : 2KClO_(3) rarr 2KCl + 3O_(2) and the remaining underwent change according to the equation : 4KClO_(3)rarr 3KClO_(4)+KCl If the amount of O_(2) evolved was 146.8 ml at S.T.P., calculate the % by weight of KClO_(4) in the reside.