CBSE Class 10 Science Chapter 3: Metals and Non-Metals NCERT Solutions
This chapter delves into the fascinating world of metals and non-metals, exploring their properties and reactions. The NCERT Solutions for Class 10 Science, Chapter 3, provide comprehensive explanations and step-by-step solutions to the exercises. Key concepts covered include displacement reactions, the process of rusting and methods to prevent it, and the characteristic properties of metals and non-metals like malleability and conductivity. The solutions also explain the concept of amphoteric oxides with examples. These solutions are designed to help students grasp the fundamental principles of chemistry related to metals and non-metals, aiding in their exam preparation and building a strong foundation for future studies.
Quick info
| Board | CBSE |
|---|---|
| Class | Class 10 |
| Subject | Science |
| Session | 2026 |
| Language | English |
| Type | NCERT Solutions |
| Chapter | Chapter 3 |
Chapter summary
Chapter 3 of the NCERT Class 10 Science textbook focuses on Metals and Non-Metals. The provided solutions cover essential topics such as identifying displacement reactions, understanding the prevention of rusting in iron objects, and differentiating between metals and non-metals based on their physical properties like malleability and electrical conductivity. It also explains the nature of amphoteric oxides with relevant chemical equations. These solutions offer clear explanations for all exercise questions.
Learning outcomes
- Understand the concept of displacement reactions and predict their occurrence.
- Identify suitable methods for preventing rusting of iron.
- Distinguish between metals and non-metals using physical properties.
- Define amphoteric oxides and provide examples.
- Write chemical equations for reactions of amphoteric oxides with acids and bases.
Topics covered
Paper topics
- Metals and Non-metals
- Displacement Reactions
- Reactivity Series
- Rusting of Iron
- Prevention of Rusting
- Physical Properties of Metals
- Physical Properties of Non-metals
- Amphoteric Oxides
- Chemical Reactions of Oxides
Important topics
- Displacement Reactions
- Prevention of Rusting
- Distinguishing Metals and Non-metals
- Amphoteric Oxides
PDF preview
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Questions and Solutions
Question 1
- NaCl solution and copper metal
- MgCl2 solution and aluminium metal
- FeSO4 solution and silver metal
- AgNO3 solution and copper metal.
Let's analyze the options:
- Sodium (Na) is much more reactive than copper (Cu). Copper cannot displace sodium from NaCl solution.
- Aluminium (Al) is more reactive than magnesium (Mg). Aluminium cannot displace magnesium from MgCl2 solution.
- Iron (Fe) is more reactive than silver (Ag). Iron can displace silver from AgNO3 solution, but the question asks about FeSO4 solution and silver metal. Silver is less reactive than iron, so silver metal cannot displace iron from FeSO4 solution.
- Copper (Cu) is more reactive than silver (Ag). Therefore, copper metal can displace silver from AgNO3 solution.
Question 2
- Applying grease
- Applying paint
- Applying a coating of zinc
- All of the above.
Let's evaluate the given options for an iron frying pan:
- Applying grease: Grease forms a protective layer that prevents moisture and oxygen from reaching the iron surface, thus preventing rust. However, for a frying pan, this method is impractical as the grease would burn off during heating and be washed away during cleaning.
- Applying paint: Paint also forms a barrier against moisture and oxygen. Similar to grease, paint is not suitable for a frying pan because it would peel off or burn due to the high temperatures involved in cooking and repeated washing.
- Applying a coating of zinc (Galvanization): Zinc is more reactive than iron. When iron is coated with zinc, the zinc acts as a sacrificial metal. It corrodes preferentially, protecting the iron even if the coating is scratched. This is a very effective method for preventing rust.
- All of the above: While grease, paint, and zinc coating are general methods to prevent rusting, only applying a coating of zinc is practically suitable for a frying pan in the long run, considering its use.
Answer: Applying a coating of zinc is the most suitable method among the choices for long-term protection of an iron frying pan, although grease and paint can prevent rusting in other contexts.
Question 3
- calcium
- carbon
- silicon
- iron
Let's consider the options:
- Calcium (Ca): Calcium is a metal. It reacts with oxygen to form calcium oxide (CaO). Calcium oxide is a basic oxide with a very high melting point. Calcium oxide reacts with water to form calcium hydroxide (Ca(OH)2), which is soluble in water (though sparingly soluble, it dissolves enough to form a solution).
- Carbon (C): Carbon is a non-metal. It reacts with oxygen to form carbon dioxide (CO2). CO2 is a gas at room temperature and dissolves in water to form carbonic acid (H2CO3), but the oxide itself does not have a high melting point.
- Silicon (Si): Silicon is a metalloid. It reacts with oxygen to form silicon dioxide (SiO2), which has a very high melting point but is insoluble in water.
- Iron (Fe): Iron is a metal. It reacts with oxygen to form iron oxides (like Fe2O3). Iron oxides have high melting points but are generally insoluble in water.
Answer: The element is likely to be calcium.
Question 4
- zinc is costlier than tin.
- zinc has a higher melting point than tin.
- zinc is more reactive than tin.
- zinc is less reactive than tin.
We need to compare the reactivity of zinc and tin:
According to the reactivity series of metals, zinc is more reactive than tin. Both zinc and tin are more reactive than iron.
If a food can were coated with zinc, and the coating got scratched, exposing the iron underneath, the more reactive zinc would react preferentially with any acidic food components or moisture, protecting the iron. However, this reaction could also lead to the dissolution of zinc into the food, which can be harmful. Furthermore, if the can is dented or scratched, the zinc coating will corrode preferentially, protecting the iron. This is called sacrificial protection.
Tin, being less reactive than zinc, also provides a protective barrier. If the tin coating is scratched, the iron is exposed. Since tin is less reactive than iron, it does not offer sacrificial protection. Instead, if both tin and iron are exposed to an electrolyte, iron (being more reactive than tin) will corrode faster. However, tin is non-toxic and does not react with most food substances, making it a safer choice for coating food containers, even if it doesn't provide sacrificial protection.
The primary reason for choosing tin over zinc for food cans is that zinc is more reactive than tin. While zinc offers sacrificial protection, its higher reactivity can lead to undesirable reactions with food if the coating is compromised. Tin provides a safer, non-reactive barrier.
Answer: Food cans are coated with tin and not with zinc because zinc is more reactive than tin.
Question 5
- How could you use them to distinguish between samples of metals and non-metals?
- Assess the usefulness of these tests in distinguishing between metals and non-metals.
(a) Distinguishing between metals and non-metals:
- Test for Malleability: Take a small piece of the sample and strike it firmly with the hammer.
- If the sample can be beaten into thin sheets without breaking, it exhibits malleability and is likely a metal. For example, metals like copper, aluminium, and iron can be hammered into sheets.
- If the sample breaks into pieces or crumbles upon hammering, it is brittle and likely a non-metal. For example, coal or sulphur will break apart when hammered.
- Test for Electrical Conductivity: Set up a simple circuit using the battery, bulb, wires, and switch. Connect the sample to be tested in series with the bulb and battery.
- If the bulb glows when the sample is in the circuit, it means the sample conducts electricity and is therefore a metal. Metals like copper, iron, and aluminium are good conductors.
- If the bulb does not glow, it means the sample does not conduct electricity and is likely a non-metal. Non-metals like wood, plastic, or coal are poor conductors (insulators).
These tests are quite useful in distinguishing between most metals and non-metals because they are based on fundamental physical properties that differ significantly between the two categories.
- Malleability: Most metals are malleable, while most non-metals are brittle. This test is straightforward and requires only a hammer.
- Electrical Conductivity: Metals are generally excellent conductors of electricity, whereas non-metals are poor conductors (insulators). This test is also simple to perform with basic electrical components.
Question 6
This dual nature arises because these oxides contain elements that can exhibit variable oxidation states or have properties that allow them to interact with both acidic and basic substances.
Examples of amphoteric oxides:
- Aluminium oxide (Al2O3): Aluminium oxide reacts with acids to form aluminium salts and water, behaving as a base. It also reacts with strong bases to form aluminates and water, behaving as an acid.
Reaction with an acid (like Hydrochloric acid, HCl):
In this reaction, Al2O3 acts as a base.
Reaction with a base (like Sodium hydroxide, NaOH):
Or, more simply represented as:
In this reaction, Al2O3 acts as an acid.
- Zinc oxide (ZnO): Zinc oxide also displays amphoteric properties.
Reaction with an acid (like Sulfuric acid, H2SO4):
Here, ZnO acts as a base.
Reaction with a strong base (like Sodium hydroxide, NaOH):
Or, more simply represented as:
Here, ZnO acts as an acid.
Common mistakes
- Confusing the reactivity series, leading to incorrect predictions of displacement reactions.
- Not considering the practical limitations (like heating and washing) when suggesting methods to prevent rusting of kitchenware.
- Misidentifying the properties of metals and non-metals.
- Confusing acidic, basic, and amphoteric oxides.
Revision tips
- Memorize the reactivity series of metals to easily predict displacement reactions.
- Focus on the practical application of preventing rusting, especially for everyday objects.
- Practice distinguishing metals and non-metals using their physical properties.
- Understand the dual nature of amphoteric oxides by studying their reactions with both acids and bases.
Practice MCQs
Q1. Which of the following pairs will exhibit a displacement reaction?
Explanation: Copper is more reactive than silver, so it can displace silver from its salt solution (AgNO3). The other options involve less reactive metals trying to displace more reactive metals from their solutions, which does not happen.
Q2. Which method is NOT suitable for preventing an iron frying pan from rusting?
Explanation: While grease, paint, and zinc coating prevent rusting, grease and paint are not suitable for frying pans as they would be destroyed by heating and washing.
Q3. An element reacts with oxygen to form a compound with a high melting point, which is also soluble in water. This element is likely:
Explanation: Calcium is a metal that forms a basic oxide (CaO) with a high melting point. This oxide reacts with water to form calcium hydroxide, which is soluble. Carbon and silicon form covalent oxides, and iron forms an oxide with a high melting point but it's not typically soluble in water.
Q4. Food cans are coated with tin instead of zinc because:
Explanation: Zinc is more reactive than tin. If the tin coating is scratched, the more reactive zinc would react with the food, leading to corrosion and potential contamination. Tin, being less reactive, provides a protective layer without reacting with the food.
Q5. Which physical property allows metals to be hammered into thin sheets?
Explanation: Malleability is the property of a metal that allows it to be hammered or pressed into thin sheets without breaking. Ductility is the ability to be drawn into wires.
Q6. Amphoteric oxides can react with:
Explanation: Amphoteric oxides exhibit both acidic and basic properties. They react with acids to form salt and water (acting as a base) and react with bases to form salt and water (acting as an acid).
Frequently asked questions
What is a displacement reaction in the context of metals?
A displacement reaction occurs when a more reactive metal displaces a less reactive metal from its salt solution. For example, copper can displace silver from silver nitrate solution because copper is more reactive than silver.
Why is it important to prevent iron from rusting?
Rusting is the corrosion of iron, which weakens iron objects and reduces their lifespan. Preventing rusting ensures the durability and structural integrity of iron materials.
How can we distinguish between metals and non-metals using simple tests?
Metals are generally malleable (can be hammered into sheets) and good conductors of electricity. Non-metals are usually brittle and poor conductors of electricity. These physical properties can be tested using a hammer and a simple electrical circuit.
What are amphoteric oxides and what is a key characteristic?
Amphoteric oxides are oxides that can react with both acids and bases to form salt and water. This dual reactivity is their key characteristic.
Why is tin used to coat food cans instead of zinc?
Tin is used because it is less reactive than zinc. If the coating is damaged, tin will not react with the food, whereas more reactive zinc would.
How do the NCERT Solutions for Chapter 3 help students?
These solutions provide clear, step-by-step explanations for all exercise questions, helping students understand the concepts of metals, non-metals, their reactions, and properties, which is crucial for exam preparation.
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