CBSE Class 9 Science Exemplar Chapter 4: Structure of the Atom NCERT Solutions
This comprehensive set of NCERT Solutions for CBSE Class 9 Science Exemplar, Chapter 4, focuses on the Structure of the Atom. It covers fundamental concepts like atomic number, mass number, electronic distribution, and the historical development of atomic models, including Rutherford's scattering experiment and Dalton's atomic theory. The solutions provide clear explanations for multiple-choice questions, helping students grasp the properties of subatomic particles and the arrangement of electrons in atoms. These solutions are designed to reinforce learning and aid students in their exam preparation by offering step-by-step guidance and clarifying complex ideas related to atomic structure.
Quick info
| Board | CBSE |
|---|---|
| Class | Class 9 |
| Subject | Science Exemplar |
| Session | 2026 |
| Language | English |
| Type | NCERT Solutions |
| Chapter | Chapter 4 |
Chapter summary
Chapter 4 of the CBSE Class 9 Science Exemplar, focusing on the Structure of the Atom, delves into the fundamental building blocks of matter. These NCERT Solutions explain key concepts such as atomic number, mass number, isotopes, and isobars. They also cover the historical evolution of atomic models, including Rutherford's alpha-particle scattering experiment and its implications, leading to the discovery of the nucleus. The solutions clarify the electronic configuration of elements and the distribution of electrons in different shells, crucial for understanding chemical behavior.
Learning outcomes
- Understand the electronic distribution in atoms based on atomic number.
- Identify the discovery of the atomic nucleus through Rutherford's experiment.
- Determine the representation of an element using its atomic and mass numbers.
- Recall the key explanations provided by Dalton's atomic theory.
- Analyze the validity of statements regarding Rutherford's atomic model.
- Differentiate between atomic number and mass number in elements.
Topics covered
Paper topics
- Structure of the Atom
- Atomic Models
- Rutherford's Scattering Experiment
- Nucleus
- Dalton's Atomic Theory
- Subatomic Particles
- Electrons
- Protons
- Neutrons
- Atomic Number
- Mass Number
- Electronic Distribution
Important topics
- Rutherford's alpha-particle scattering experiment and discovery of the nucleus
- Dalton's atomic theory and its explanations
- Relationship between atomic number, mass number, protons, neutrons, and electrons
- Electronic configuration and distribution in shells
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Questions and Solutions
Question 1
2, 8, 2
8, 2, 2
Question 2
Electron
Proton
Nucleus in the atom
Atomic mass
Question 3
^{31}_{15}X
^{31}_{16}X
^{16}_{15}X
^{15}_{16}X
Question 4
(i) Law of conservation of mass
(ii) Law of constant composition
(iii) Law of radioactivity
(iv) Law of multiple proportion
Options:
(i), (ii) and (iii)
(i), (iii) and (iv)
(ii), (iii) and (iv)
(i), (ii) and (iv)
Question 5
(i) It considered the nucleus as positively charged.
(ii) It established that the $\alpha$-particles are four times as heavy as a hydrogen atom.
(iii) It can be compared to the solar system.
(iv) It was in agreement with Thomson's model.
Options:
(i) and (iii)
(ii) and (iii)
(i) and (iv)
only (i)
Question 6
(i) Atomic number = number of protons + number of electrons
(ii) Mass number = number of protons + number of neutrons
(iii) Atomic mass = number of protons = number of neutrons
(iv) Atomic number = number of protons = number of electrons
Options:
(i) and (ii)
(i) and (iii)
(ii) and (iii)
(ii) and (iv)
Common mistakes
- Confusing atomic number with mass number.
- Incorrectly calculating the number of protons, neutrons, or electrons.
- Misinterpreting the conclusions of Rutherford's scattering experiment.
- Errors in representing an element with its atomic and mass numbers.
Revision tips
- Review the electronic configuration rules for different elements.
- Understand the significance of Rutherford's alpha-particle scattering experiment.
- Practice representing elements using their atomic and mass numbers.
- Memorize the key postulates of Dalton's atomic theory and their explanations.
- Focus on the differences and similarities between various atomic models.
Practice MCQs
Q1. Which of the following correctly represents the electronic distribution in the Magnesium (Mg) atom, given its atomic number is 12?
Explanation: The atomic number of Magnesium (Mg) is 12. This means it has 12 electrons. The electronic distribution follows the shell structure: the first shell (K) can hold up to 2 electrons, the second shell (L) up to 8, and the third shell (M) can hold more. Thus, the distribution is 2 electrons in the first shell, 8 in the second, and the remaining 2 in the third shell.
Q2. Rutherford's 'alpha ($$) particles scattering experiment' led to which significant discovery about the atom?
Explanation: Rutherford's experiment, where alpha particles were scattered by a thin gold foil, showed that most particles passed straight through, but some were deflected, and a few even bounced back. This indicated the presence of a small, dense, positively charged region within the atom, which he termed the nucleus.
Q3. An element X has 15 electrons and 16 neutrons. Which of the following is the correct representation of this element?
Explanation: The number of electrons in a neutral atom is equal to the number of protons, which is the atomic number. So, the atomic number of element X is 15. The mass number is the sum of protons and neutrons. Here, mass numbe(protons) + 16 (neutrons) = 31. Therefore, the correct representation is $^{31}_{15}X$.
Q4. Which of the following fundamental laws was successfully explained by Dalton's atomic theory?
Explanation: Dalton's atomic theory successfully explained the Law of Conservation of Mass (matter is neither created nor destroyed in a chemical reaction) and the Law of Constant Composition (a chemical compound always contains the same elements in the same proportion by mass). It also explained the Law of Multiple Proportions. However, it did not address radioactivity.
Q5. Which of the following statements about Rutherford's model of the atom are considered correct?
Explanation: Rutherford's model proposed a positively charged nucleus at the center of the atom. He also compared the atom to the solar system, with electrons revolving around the nucleus like planets around the sun. The deflection of alpha particles by the nucleus confirmed its positive charge. His model differed significantly from Thomson's model.
Q6. For any given element, which of the following statements are true regarding its atomic structure?
Explanation: In a neutral atom, the atomic number (which is equal to the number of protons) is always equal to the number of electrons. The mass number is defined as the sum of protons and neutrons in the nucleus. Atomic mass is approximately equal to the mass number but can differ slightly due to binding energy and isotopes. Statement (iii) is incorrect as atomic mass is not necessarily equal to the number of protons and neutrons.
Frequently asked questions
What is the main focus of Chapter 4, 'Structure of the Atom', in the Class 9 Science Exemplar?
Chapter 4 focuses on the fundamental structure of atoms, including the discovery and properties of subatomic particles (protons, neutrons, electrons), historical atomic models like Rutherford's, and the concepts of atomic number and mass number.
How does Rutherford's alpha-particle scattering experiment help us understand atomic structure?
This experiment led to the discovery of the atomic nucleus. It showed that the atom has a small, dense, positively charged center (the nucleus) where most of the mass is concentrated, and that electrons orbit this nucleus.
What is the difference between atomic number and mass number?
The atomic number represents the number of protons in an atom's nucleus (and also the number of electrons in a neutral atom), defining the element. The mass number is the total number of protons and neutrons in the nucleus.
How are electrons distributed in an atom according to the concepts in this chapter?
Electrons are distributed in specific energy shells or orbits around the nucleus. The distribution follows rules where the inner shells are filled first, with the first shell holding a maximum of 2 electrons, the second up to 8, and so on.
What are the key takeaways from Dalton's atomic theory mentioned in these solutions?
Dalton's theory successfully explained the laws of conservation of mass and constant composition. It proposed that atoms are indivisible and that atoms of the same element are identical.
How can these NCERT Solutions help in exam preparation?
These solutions provide clear, step-by-step explanations for complex concepts and questions, helping students understand the underlying principles of atomic structure and revise effectively for their exams.
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