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In Class 10 Science, under the chapter Chemical Substances – Nature and Behaviour, students study acids, bases, and salts through their properties, reactions, and everyday examples. The topic explains how these substances behave with indicators and with one another, including neutralisation, and introduces the formation and practical importance of common salts.
TOPIC PRACTICE
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Medium · Level 13 · sodium hydroxide,base,hydroxide ion,Acids, Bases, and Salts,acids bases and salts,Chemical Substances – Nature and Behaviour,chemical substances nature and behaviour,ScienceView options
Hydrogen ion
Hydroxide ion
Carbonate ion
Nitrate ion
Medium · Level 13 · hydrochloric acid,hydrogen ion,strong acid,Acids, Bases, and Salts,acids bases and salts,Chemical Substances – Nature and Behaviour,chemical substances nature and behaviour,ScienceView options
Hydrogen ion
Hydroxide ion
Carbonate ion
Sodium ion
Medium · Level 13 · strong acid,hydrochloric acid,ionisation,Acids, Bases, and Salts,acids bases and salts,Chemical Substances – Nature and Behaviour,chemical substances nature and behaviour,ScienceView options
Hydrochloric acid
Ethanoic acid
Carbonic acid
Ethanoic acid present in vinegar
Medium · Level 13 · weak acid,ethanoic acid,conductivity,Acids, Bases, and Salts,acids bases and salts,Chemical Substances – Nature and Behaviour,chemical substances nature and behaviour,ScienceView options
It ionises less
It is stronger
It is a base
It contains no water
Medium · Level 13 · metal oxides,basic nature,neutralisation,Acids, Bases, and Salts,acids bases and salts,Chemical Substances – Nature and Behaviour,chemical substances nature and behaviour,ScienceView options
Acidic
Basic
Neutral
Vapour-like
Medium · Level 13 · non-metal oxide,acidic oxide,litmus,Acids, Bases, and Salts,acids bases and salts,Chemical Substances – Nature and Behaviour,chemical substances nature and behaviour,ScienceView options
Acidic solution
Basic solution
Always neutral solution
Metallic solution
Medium · Level 13 · carbon dioxide,acidic oxide,non-metal oxide,Acids, Bases, and Salts,acids bases and salts,Chemical Substances – Nature and Behaviour,chemical substances nature and behaviour,ScienceView options
It reacts with water or bases in an acidic-oxide manner
It forms a metal
It turns red litmus blue
It is always a base
Medium · Level 13 · turmeric,natural indicator,base,Acids, Bases, and Salts,acids bases and salts,Chemical Substances – Nature and Behaviour,chemical substances nature and behaviour,ScienceView options
It remains yellow
Reddish-brown
Blue
Green
Medium · Level 13 · phenolphthalein,acidic solution,indicator,Acids, Bases, and Salts,acids bases and salts,Chemical Substances – Nature and Behaviour,chemical substances nature and behaviour,ScienceView options
Pink
Colourless
Blue
Green
Medium · Level 13 · methyl orange,basic solution,acid-base indicator,Acids, Bases, and Salts,acids bases and salts,Chemical Substances – Nature and Behaviour,chemical substances nature and behaviour,ScienceView options
Red
Yellow
Blue
Violet
Medium · Level 13 · baking soda,carbon dioxide,food chemistry,Acids, Bases, and Salts,acids bases and salts,Chemical Substances – Nature and Behaviour,chemical substances nature and behaviour,ScienceView options
By producing carbon dioxide bubbles
By making hydrogen solid
By producing chlorine
By turning food into metal
Medium · Level 13 · baking soda,sodium carbonate,thermal decomposition,Acids, Bases, and Salts,acids bases and salts,Chemical Substances – Nature and Behaviour,chemical substances nature and behaviour,ScienceView options
Sodium carbonate
Sodium chloride
Calcium carbonate
Ammonium chloride
Medium · Level 13 · washing soda,hard water,calcium magnesium ions,Acids, Bases, and Salts,acids bases and salts,Chemical Substances – Nature and Behaviour,chemical substances nature and behaviour,ScienceView options
Calcium and magnesium ions
Sodium and chloride ions
Hydrogen and nitrate ions
Copper and sulphate ions
Medium · Level 13 · washing soda,chemical name,hydrated salt,Acids, Bases, and Salts,acids bases and salts,Chemical Substances – Nature and Behaviour,chemical substances nature and behaviour,ScienceView options
Sodium carbonate decahydrate
Sodium hydrogen carbonate
Calcium oxychloride
Calcium sulphate hemihydrate
Easy · Level 13 · baking soda,sodium hydrogen carbonate,salts,Acids, Bases, and Salts,acids bases and salts,Chemical Substances – Nature and Behaviour,chemical substances nature and behaviour,ScienceView options
Sodium hydrogen carbonate
Sodium carbonate decahydrate
Calcium sulphate
Sodium chloride
Medium · Level 13 · gypsum,plaster of Paris,controlled heating,Acids, Bases, and Salts,acids bases and salts,Chemical Substances – Nature and Behaviour,chemical substances nature and behaviour,ScienceView options
By controlled heating of gypsum
By adding common salt to gypsum
By cooling gypsum
By converting gypsum into sugar
Medium · Level 13 · plaster of Paris,gypsum,hardening reaction,Acids, Bases, and Salts,acids bases and salts,Chemical Substances – Nature and Behaviour,chemical substances nature and behaviour,ScienceView options
It changes into gypsum
It forms sodium chloride
It forms carbon dioxide
It forms sugar
Medium · Level 13 · copper sulphate,heating,water of crystallisation,Acids, Bases, and Salts,acids bases and salts,Chemical Substances – Nature and Behaviour,chemical substances nature and behaviour,ScienceView options
Water of crystallisation is removed
Chlorine is added
Sodium is formed
Carbon dioxide forms
Medium · Level 13 · water of crystallisation,salts,hydrated crystals,Acids, Bases, and Salts,acids bases and salts,Chemical Substances – Nature and Behaviour,chemical substances nature and behaviour,ScienceView options
Fixed amount of water present in salt crystals
Ordinary river water
Only water dissolved in acid
Vapour formed in a base
Medium · Level 13 · bleaching powder,chlorine,slaked lime,Acids, Bases, and Salts,acids bases and salts,Chemical Substances – Nature and Behaviour,chemical substances nature and behaviour,ScienceView options
Dry slaked lime
Sodium chloride
Gypsum
Washing soda
Question 1MediumLevel 13
Which ion does sodium hydroxide mainly produce when dissolved in water?
Correct answer: B
Sodium hydroxide, NaOH, is a strong base and an ionic compound. In water it dissociates almost completely according to NaOH → Na⁺ + OH⁻. The hydroxide ions increase the concentration of OH⁻ in the solution and give it basic properties. Hydrogen ions are associated with acids, whereas carbonate and nitrate ions are not present in sodium hydroxide. Thus option B is correct.
Which ion does hydrochloric acid mainly produce when dissolved in water?
Correct answer: A
Hydrochloric acid, HCl, is a strong acid. When it dissolves in water, it ionises almost completely, forming hydronium ions and chloride ions; this is often represented at school level as HCl → H⁺ + Cl⁻. The H⁺ ions account for acidic properties. Hydroxide ions are produced by bases, and sodium or carbonate ions are not constituents of HCl. Therefore option A is correct.
The extent of ionisation distinguishes strong and weak acids. Hydrochloric acid is a strong acid, so its molecules ionise almost completely in water, producing a high concentration of H₃O⁺ ions. Ethanoic acid and carbonic acid are weak acids and ionise only partially; vinegar contains dilute ethanoic acid. Hence hydrochloric acid ionises more completely, making option A correct.
Why is the conductivity of ethanoic acid lower than that of hydrochloric acid at the same concentration?
Correct answer: A
Electrical conductivity in an aqueous solution depends largely on the concentration and mobility of charged particles. At the same concentration, hydrochloric acid, a strong acid, ionises almost completely and produces more ions. Ethanoic acid is weak and ionises only partially, so it supplies fewer charge carriers and conducts less electricity. It is not a base and does contain water when tested as a solution. Option A is correct.
Metal oxides form salt and water when they react with acids. What nature does this demonstrate?
Correct answer: B
A metal oxide that reacts with an acid to produce salt and water is undergoing a neutralisation reaction. For example, CuO + 2HCl → CuCl₂ + H₂O. In this reaction, the metal oxide behaves like a base because it neutralises the acid. Therefore metal oxides are generally basic in nature, although a few oxides may be amphoteric. Option B is the appropriate answer.
What type of solution can many non-metal oxides form when dissolved in water?
Correct answer: A
Many non-metal oxides are acidic oxides. When they dissolve in or react with water, they can form acids; for example, CO₂ + H₂O ⇌ H₂CO₃. The resulting solution may show acidic behaviour, such as turning blue litmus red. The word ‘many’ is important because not every non-metal oxide behaves identically. Thus option A is correct, while ‘always neutral’ is too absolute.
Carbon dioxide is an oxide of a non-metal and shows acidic behaviour. With water it forms carbonic acid: CO₂ + H₂O ⇌ H₂CO₃. It also reacts with bases, such as Ca(OH)₂, to form a salt and water: CO₂ + Ca(OH)₂ → CaCO₃ + H₂O. These reactions justify its classification as an acidic oxide. It does not turn red litmus blue, so option A is correct.
What colour does turmeric show when it comes into contact with a basic substance?
Correct answer: B
Turmeric contains a natural indicator substance called curcumin. In an acidic or neutral medium, turmeric generally remains yellow, but in contact with a basic substance it changes to a reddish-brown colour. This colour change occurs because the indicator responds to the alkaline medium. Blue and green are not the characteristic turmeric response, and remaining yellow describes non-basic conditions. Therefore option B is correct.
How does phenolphthalein appear in an acidic solution?
Correct answer: B
Phenolphthalein is an acid-base indicator whose colour depends on the pH of the solution. It is colourless in acidic and approximately neutral solutions, but it turns pink or magenta in a sufficiently basic solution. Therefore an acidic solution does not produce the pink colour associated with a base. Since blue and green are not its characteristic responses, option B, colourless, is correct.
What colour does methyl orange give in a basic solution?
Correct answer: B
Methyl orange is an acid–base indicator whose colour depends on the acidity of the solution. It is red in an acidic medium and changes through an intermediate shade near its transition range, but it appears yellow in a basic or alkaline medium. Therefore, option B is correct. Blue and violet are not the standard alkaline colour of methyl orange, while red indicates an acidic medium.
How does baking soda help food rise when it reacts with an acid?
Correct answer: A
Baking soda is sodium hydrogen carbonate, NaHCO₃. When it reacts with an acid, the reaction produces carbon dioxide gas, along with a salt and water; for example, an acid plus hydrogencarbonate releases CO₂. The gas gets trapped as small bubbles in the batter or dough, making it expand, rise, and become porous. Thus option A is correct; the other choices describe substances or changes not produced in this reaction.
Which solid mainly remains when baking soda is heated?
Correct answer: A
Baking soda is sodium hydrogen carbonate, NaHCO₃. On heating, it undergoes thermal decomposition: 2NaHCO₃ → Na₂CO₃ + CO₂ + H₂O. Carbon dioxide escapes as a gas and water leaves as vapour, so sodium carbonate remains as the principal solid residue. Therefore option A is correct. Sodium chloride, calcium carbonate, and ammonium chloride are not the solid products of this decomposition.
Washing soda helps soften hard water by removing which ions?
Correct answer: A
Hard water mainly contains dissolved calcium ions, Ca²⁺, and magnesium ions, Mg²⁺, which react with soap to form scum. Washing soda, sodium carbonate, supplies carbonate ions that precipitate these ions as insoluble carbonates, such as calcium carbonate and magnesium carbonate. Removing them reduces water hardness, so option A is correct. Sodium and chloride ions generally remain soluble and do not cause ordinary hardness.
Washing soda is the hydrated salt sodium carbonate decahydrate, written as Na₂CO₃·10H₂O. The ten water molecules are called water of crystallisation and are part of the crystal structure. Therefore option A is correct. Sodium hydrogen carbonate is baking soda, calcium oxychloride is bleaching powder, and calcium sulphate hemihydrate is plaster of Paris, so those alternatives name different compounds.
Baking soda is the common name for sodium hydrogen carbonate, whose formula is NaHCO₃. It is a mild basic salt and reacts with acids to release carbon dioxide, which explains its use in baking and some antacid preparations. Hence option A is correct. Sodium carbonate decahydrate is washing soda, calcium sulphate is a different salt, and sodium chloride is common table salt, so none of those alternatives identifies baking soda.
Gypsum is calcium sulphate dihydrate, CaSO₄·2H₂O. When it is heated carefully at about 373 K, part of its water of crystallisation is removed and calcium sulphate hemihydrate, CaSO₄·½H₂O, is formed; this is plaster of Paris. Controlled heating is essential because excessive heating can remove too much water and produce a different form. Therefore option A is correct, while mixing salt, cooling, or converting it to sugar is irrelevant.
Why does plaster of Paris harden when water is added?
Correct answer: A
Plaster of Paris is calcium sulphate hemihydrate, CaSO₄·½H₂O. When water is added, it combines with water and re-forms gypsum, calcium sulphate dihydrate, CaSO₄·2H₂O. The newly formed interlocking gypsum crystals set into a hard mass, which is why the material is useful for casts and moulds. Thus option A is correct; no sodium chloride, carbon dioxide, or sugar is formed in this setting reaction.
Why does the blue colour of copper sulphate crystals disappear on heating?
Correct answer: A
Blue copper sulphate crystals are hydrated copper sulphate, CuSO₄·5H₂O. On heating, they lose their water of crystallisation and become anhydrous copper sulphate, CuSO₄, which is white or nearly white. Adding water can restore the blue hydrated form. Therefore option A is correct. Chlorine is not added, sodium is not produced, and carbon dioxide is not responsible for this colour change.
Water of crystallisation is the fixed number of water molecules chemically associated with the formula unit of certain crystalline salts. It is not merely moisture on the surface or any water used to dissolve a substance. For example, washing soda contains ten water molecules, Na₂CO₃·10H₂O, and blue copper sulphate contains five, CuSO₄·5H₂O. Therefore option A gives the correct definition; the other choices describe unrelated forms of water.
Bleaching powder is prepared by action of chlorine on which substance?
Correct answer: A
The governing concept is the preparation of bleaching powder, also called calcium oxychloride. Chlorine gas is passed over dry slaked lime, Ca(OH)₂, to form bleaching powder, commonly represented as CaOCl₂. Thus option A is correct. Sodium chloride is used to make brine, while gypsum and washing soda are not the reactants used in this preparation.
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