12216664824 | Hydrogen + Non Metal | Acid | 0 | |
12216664825 | Metal + Oxygen | metallic oxide [basic oxide] , its a base | 1 | |
12216664826 | Acidic oxide + Water | Acid | 2 | |
12216664827 | Neutral oxide + Water | No reaction | 3 | |
12216664828 | Basic Oxide + Water | Base | 4 | |
12216664829 | active metal + water | metallic hydroxide + hydrogen | 5 | |
12216664830 | Normal Salt + CONC sulphuric acid | Acid Salt + Displaced VOLATILE acid | 6 | |
12216664831 | Salt + Base | Normal Salt + Precipitated basic Hydroxide | 7 | |
12216664832 | Non Metal + Nitric Acid | Sulphuric Acid + Water + Hydrogen | 8 | |
12216664833 | Carbonate/Nitrate + Heat | Oxide + Nitrogen/Carbon Dioxide + Oxygen | 9 | |
12216664834 | On heating, a less volatile base | Displaces a more volatile base. | 10 | |
12216664835 | Metallic Salt + Aqueous Base | Salt + Insoluble Hydroxide | 11 | |
12216664836 | Ammonium Salt + base | Salt + Base | 12 | |
12216664837 | Metal + Non - Metal | Soluble or Insoluble Salt | 13 | |
12216664838 | Active metal + dil.Acid | Soluble Salt + Hydrogen | 14 | |
12216664839 | Soluble Salt Solution + Soluble Salt Solution | Insoluble Precipitated Salt + Soluble Salt | 15 | |
12216664840 | Insoluble Base + dil.Acid | Soluble Salt + Water | 16 | |
12216664841 | Soluble Base + dil.Acid | Soluble Salt + Water | 17 | |
12216664842 | A carbonate or a bicarbonate + dil.Acid | Salt + Water + Carbon Dioxide | 18 | |
12218213491 | Sulphur + Concentrated Nitric Acid | Sulphuric Acid + Water + Nitrogen Dioxide | 19 | |
12218215897 | Chlorine is passed through aqueous sulphur dioxide | Hydrochloric acid + Water | 20 | |
12218217269 | Sulphuryl Chloride is hydrolysed | Sulphuric acid along with Hydrochloric acid | 21 | |
12218255261 | Active metal + Sulphuric Acid | Salt and Hydrogen | 22 | |
12218258305 | Base + Sulphuric Acid | Salt and Water | 23 | |
12218259073 | Bicarbonate/Carbonate + Sulphuric acid | Salt + Water + Carbon Dioxide | 24 | |
12218261894 | Bisulphite/Sulphite + Sulphuric Acid | Salt + Water + Sulphur Dioxide | 25 | |
12218263365 | Sulphide + Sulphuric Acid | Salt + Hydrogen Sulphide | 26 | |
12218265757 | Salt of Volatile Acid + Non-Volatile Acid | Acid Salt + Displaced Volatile Acid | 27 | |
12218272739 | Compound + Sulphuric Acid | Oxidised Product + Water + Sulphur Dioxide | 28 | |
12218277646 | Substance dehydrated with conc.H2SO4 | Dehydrated Product + Water Formed | 29 | |
12218283239 | Potassium Nitrate + Sulphuric Acid | Potassium Bisulphate + Nitric Acid Vapours | 30 | |
12218287901 | Decomposition of Nitric Acid | Nitrogen Dioxide + Water + Oxygen | 31 | |
12219892027 | Metal + Cold and Dilute Nitric Acid | Oxidised Product + Hydrogen | 32 | |
12219892028 | Non Metal + Hot concentrated nitric acid | Oxidised product + Water + Nitrogen Dioxide | 33 | |
12219892029 | Metal + Hot dil Nitric Acid | Oxidised Product + Water + Nitrogen Dioxide | 34 | |
12219892030 | Acidified Iron Sulphate + Dil.Nitric Acid | Oxidised Product + Water + Nitric Oxide | 35 | |
12219892031 | Ammonia + Drying Agent | Ammonium(Drying agents radical) | 36 | |
12219892032 | Metal Nitride + Warm Water | Metal hydroxide + Ammonia | 37 | |
12219892033 | Nitrogen + Hydrogen | Ammonia + 22400 cals | 38 | |
12219892034 | Ammonia + Oxygen (Burning of ammonia in oxygen) | Nitrogen + Water | 39 | |
12219892035 | Ammonia + Oxygen (Catalytic oxidation) [Platinum as catalyst at 800C] | Nitric Oxide + Steam + Heat | 40 | |
12219892036 | Ammonia + Water | Liquor Ammonia | 41 | |
12219892037 | Liquor Ammonia | NH4OH | 42 | |
12219892038 | Ammonia + dil Acid | Ammonium Salt | 43 | |
12219892039 | Aqueous Ammonia + dil.Acid | Ammonium Salt + Water | 44 | |
12219892040 | Metallic Salt Solution + Ammonium Hydroxide | Metallic hydroxide + Ammonium Salt | 45 | |
12219892041 | Reducing agent(Ammonia Here) + Heated Metallic Oxide | Reduced Product(Just metal in this case) + Water + Nitrogen | 46 | |
12219892042 | Metal Chloride + Sulphuric Acid | Metallic Bisulphate + Hydrogen Chloride | 47 | |
12219892043 | Oxidising Agent + dilHcl | Chloride + Water + Chloriine | 48 | |
12219892044 | Nascent Chlorine + Metal | Soluble chloride | 49 | |
12219892045 | Conc. Ore + Oxide | Oxide + Radical Oxide of the Ore | 50 | |
12219892046 | Thermal Decomposition of Hg and Ag oxides give | Metal + Oxygen | 51 | |
12219892047 | Amphoteric Oxide + Base | Salt + Water | 52 | |
12219892048 | Salt on hydrolysis | Soluble Hydroxide + Insoluble Hydroxide | 53 | |
12219892049 | Insoluble Hydroxide on Ignition | Pure Metal Oxide + Waater | 54 | |
12219892050 | Active metal + dil Hydrochloric Acid | Chloride and Hydrogen | 55 | |
12219892051 | Base + Hcl(Dil) | Chloride + Water | 56 | |
12219892052 | Metallic Carnbonate/ Bicarbonate + dilHcl | Chloride + Water + Carbon Dioxide | 57 | |
12219892053 | Metallic Sulphite/Bisulphite +dil.Hcl | Chloride + Water + Sulphur Dioxide | 58 | |
12219892054 | Metallic Sulphide + dil Hydrochloric Acid | Chloride + Hydrogen Sulphide | 59 | |
12219892055 | Sliver Nitrate + dil.HCL | Silver Chloride + Nitric Acid | 60 | |
12219892056 | An Example of Decarboxylation | Sodium Acetate + Sodalime will give Methane and Na2CO3 and Sodium Propinoate + Sodalime will give ethane + Na2CO3 | 61 | |
12219892057 | Preparation of Alkane from alkyl Halides | Methyl Iodide + Sodium in the presence of ether will give ethane and Sodium Iodide and Ethyl Bromide + Nascent Hydrogen will give Ethane and Hydrogen Bromide | 62 | |
12219892058 | Alkane + oxygen(excess) | carbon dioxide + water | 63 | |
12219892059 | Alkane + Oxygen(limited) | Carbon Monoxide + Water | 64 | |
12219892060 | Alkane + Oxygen(Very Limited) | Carbon and Water | 65 | |
12219892061 | Example of Catalytic Oxidation of Alkane | Methane + Oxygen in a Copper Tube at 200C and 100 atmos gives methanol; Methane + Oxygen in the presence of Molybednum Oxide gives Methanal and Water | 66 | |
12219892062 | What does controlled slow oxidation of Alkanes give? | Gives alcohols, aldehydes and acids; Methane in the presence of Oxygen and Potassium Dichromate first gibes METHANOL and then METHANAL and then gives METHANOIC ACID | 67 | |
12219918499 | Pyrolysis of Alkanes | Methane at high temperatures gives ethyne and hydrogen; ethyne at 500C and in the presence of Aluminium Oxide gives Ethane and Hydrogen | 68 | |
12219918500 | What type of reaction is catalytic cracking? | Dehydrogenation reaction | 69 | |
12219918501 | Preparation of Ethene by Dehydration | Ethanol in the presence of conc.H2SO4 at 170C or Aluminium Oxide at 350C gives Ethene | 70 | |
12219918502 | Ethanol in the presence of conc.H2SO4 at 170C or Aluminium Oxide at 350C gives | Ethene | 71 | |
12219918503 | ethyne at 500C and in the presence of Aluminium Oxide gives | Ethane | 72 | |
12219918504 | Methane + Oxygen in a Copper Tube at 200C and 100 atmos gives | Methanol | 73 | |
12219918505 | Example of dehydrohalogenation | Bromo Ethane along with ALCOHOLIC KOH gives Ethene + Potassium Bromide + Water | 74 | |
12219918506 | Bromo Ethane along with ALCOHOLIC KOH gives | Ethene + Potassium Bromide + Water | 75 | |
12219918507 | Ethane in the presence of Silica Alumina at 500C gives [dehydrogenation] | Ethene | 76 | |
12219918508 | Ethene + Ozone | Ethylene Ozonide | 77 | |
12219918509 | Ethene + Cold dil Alkaline KMnO4 soln | Ethane -1,2 diol | 78 | |
12219918510 | Ethene undergoes polymerization and gives | Poly Ethene | 79 | |
12219918511 | Calcium Carbide is added to water | Calcium Hydroxide + Ethyne | 80 | |
12219918512 | 1,2 dibromoethene is added to boiling alcoholic KOH | Acetylene | 81 | |
12219918513 | Alkyl Halide + Alkali Soln gives | Alcohol | 82 | |
12219918514 | Cane sugar + Water in the presence of invertase gives | Glucose and fructose | 83 | |
12219918515 | Ethyl Alcohol + Nascent Oxygen in the presence of acidified Potassium Dichromate | Acetaldehyde and water | 84 | |
12219918516 | Acetaldehyde + Nascent Oxygen gives Acetic Acid | 85 |
Chemical Block reactions Flashcards
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