Phosphorus pentachloride reacts violently with water and can form explosive mixtures with it. Nonetheless...
P-Cl5 + 4H2O ----> H3PO4 + 5H-Cl
is a hydrolysis reaction (the addition of water to a molecule)
Al2SO43 CaOH2 - AlOH3 CaSO4. B. H3BO3 - H4B6O11 H2O C. NaOH Cl2 - NaCl NaClO H2O. D. Al O2- Al2O3. E. PCl5 H2O - HCl H3PO" is a 8.9 balanced equation Al2SO43 CaOH2 - AlOH3 CaSO4. B. H3BO3 - H4B6O11 H2O C. NaOH Cl2 - NaCl NaClO H2O. D. Al O2- Al2O3. E. PCl5 H2O - HCl H3PO" is a 8.9 balanced equation
Therte is no straight answer on this question.From PCl3 (trichloride) only phosphorous acid, H3PO3, can be obtained (oxidation state of Phophor is +3 and must stay unchanged due to lack of an oxidator)PCl3 + H2O --> H3PO3 + HCl Balance O:PCl3 + 3H2O --> H3PO3 + HCl Balance ClPCl3 + 3H2O --> H3PO3 + 3HCl Check H3*2 = 3+3 => OK!Phosphoric acid, H3PO4, can only be obtained from PCl5 (pentachloride) (The oxidation state of Phophor must have been +5 and could not be changed due to lack of a reductant)PCl5 + H2O --> H3PO4 + HCl Balance O:PCl5 + 4H2O --> H3PO4 + HCl Balance ClPCl5 + 4H2O --> H3PO4 + 5HCl Check H4*2 = 3+5 => OK!
The chemical equation for the reaction between hydrochloric acid (HCl) and lithium hydroxide (LiOH) is: HCl + LiOH -> LiCl + H2O This reaction produces lithium chloride (LiCl) as a salt and water (H2O) as a product.
The reaction between NaOH and HCl produces NaCl (sodium chloride) and H2O (water). The balanced chemical equation is: NaOH + HCl → NaCl + H2O.
The reactants are hydrochloric acid (HCl) and sodium hydroxide (NaOH).
Al2SO43 CaOH2 - AlOH3 CaSO4. B. H3BO3 - H4B6O11 H2O C. NaOH Cl2 - NaCl NaClO H2O. D. Al O2- Al2O3. E. PCl5 H2O - HCl H3PO" is a 8.9 balanced equation Al2SO43 CaOH2 - AlOH3 CaSO4. B. H3BO3 - H4B6O11 H2O C. NaOH Cl2 - NaCl NaClO H2O. D. Al O2- Al2O3. E. PCl5 H2O - HCl H3PO" is a 8.9 balanced equation
Therte is no straight answer on this question.From PCl3 (trichloride) only phosphorous acid, H3PO3, can be obtained (oxidation state of Phophor is +3 and must stay unchanged due to lack of an oxidator)PCl3 + H2O --> H3PO3 + HCl Balance O:PCl3 + 3H2O --> H3PO3 + HCl Balance ClPCl3 + 3H2O --> H3PO3 + 3HCl Check H3*2 = 3+3 => OK!Phosphoric acid, H3PO4, can only be obtained from PCl5 (pentachloride) (The oxidation state of Phophor must have been +5 and could not be changed due to lack of a reductant)PCl5 + H2O --> H3PO4 + HCl Balance O:PCl5 + 4H2O --> H3PO4 + HCl Balance ClPCl5 + 4H2O --> H3PO4 + 5HCl Check H4*2 = 3+5 => OK!
CuO + 2HCL - CuCl2 + H2O
The chemical equation for the reaction between hydrochloric acid (HCl) and lithium hydroxide (LiOH) is: HCl + LiOH -> LiCl + H2O This reaction produces lithium chloride (LiCl) as a salt and water (H2O) as a product.
The reaction between NaOH and HCl produces NaCl (sodium chloride) and H2O (water). The balanced chemical equation is: NaOH + HCl → NaCl + H2O.
The reactants are hydrochloric acid (HCl) and sodium hydroxide (NaOH).
To balance the redox reaction involving H2O, Cl2, P4, POCl3, and HCl, you need to first assign oxidation numbers to each element and then balance the atoms and charges. The balanced equation is: 4 H2O + 6 Cl2 + P4 -> 4 H3PO4 + 6 POCl3 + 4 HCl.
The reactants in the reaction are hydrochloric acid (HCl) and sodium hydroxide (NaOH).
The reaction between H2O and Cl2 results in the formation of HCl and HOCl. This reaction occurs when chlorine gas is dissolved in water.
The chemical equation is:Na + OH- + H+ + Cl- = Na+ + Cl- + H2O(l)
NaClO3 + 6 HCl = 3 Cl2 + 3 H2O + NaCl
The chemical reaction between hydrochloric acid (HCl) and potassium hydroxide (KOH) produces water (H2O) and potassium chloride (KCl) as products. The balanced chemical equation for this reaction is: HCl + KOH → KCl + H2O.