Home
Class 11
CHEMISTRY
One mole of calcium phosphide on reactio...

One mole of calcium phosphide on reaction with excess of water gives

A

one mole of `PH_(3)`

B

moles of `Ca(OH)_(2)`

C

2 moles of `PH_(3)`

D

3 moles of CaO

Text Solution

Verified by Experts

The correct Answer is:
B, C

`Ca_(3)P_(2)+6H_(2)Orarr3Ca(OH)_(2)+2PH_(3)`
Promotional Banner

Similar Questions

Explore conceptually related problems

One mole of magnesium nitride on reaction with an excess of water gives

How do calcium phosphide and heavy water react ?

One mole of ethyl acetate on treatment with an excess of LiAIH_4 in dry ether and subsequent acidification produces

One gram of calcium is treated with excess dilute hydrochloric acid. Calculate the volume of hyrogen liberated at 700 torr 27^(@)C ?

Which of the following compounds when started with one mole, will give two moles of CH_4 when treated with excess of methyl magnesiuin broinide?

One mole benzene diazonium chloride is treated with HBr (excess) in the presence of CuBr . Volume of N_(2) liberated at STP is

One mole Benzene in presence of light on reaction with 'x' moles of Cl_2 forms B.H.C. what is 'x' ?

A complex compound of cobalt contains five NH_(3) molecules. One nitro group and two chloride ions for one Co atom. One mole of this compound produces three mole ions in aq. solution. On reacting with excess of AgNO_(3) solution, two moles of AgCl get precipitated. IUPAC name of the complex compound is

A complex compound of cobalt contains five NH_(3) molecules. One nitro group and two chloride ions for one Co atom. One mole of this compound produces three mole ions in aq. solution. On reacting with excess of AgNO_(3) solution, two moles of AgCl get precipitated. EAN, of central atom of the complex is

A complex compound of cobalt contains five NH_(3) molecules. One nitro group and two chloride ions for one Co atom. One mole of this compound produces three mole ions in aq. solution. On reacting with excess of AgNO_(3) solution, two moles of AgCl get precipitated. The formula of the complex compound is