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  • A magnetic field of 100 G (1 G = 10-4 T) is required which is uniform in a region of linear dimension about 10 cm and area of cross-section about 10-3 m2. The maximum current-carrying capacity of a given coil of wire is 15 A and the number of turns per unit length that can be wound round a core is at most 1000 turns  m-1. Suggest some appropriate design particulars of a solenoid for the required purpose. Assume the core is not ferromagnetic

A magnetic field of 100 G (1 G = 10-4 T) | Class 12 Physics Chapter Moving Charges and Magnetism, Moving Charges and Magnetism NCERT Solutions

Q15.

A magnetic field of 100 G (1 G = 10-4 T) is required which is uniform in a region of linear dimension about 10 cm and area of cross-section about 10-3 m2. The maximum current-carrying capacity of a given coil of wire is 15 A and the number of turns per unit length that can be wound round a core is at most 1000 turns  m-1. Suggest some appropriate design particulars of a solenoid for the required purpose. Assume the core is not ferromagnetic

Magnetic field strength, B = 100 G = 100 × 10- 4 T

Number of turns per unit length, n = 1000 turns m- 1

Current flowing in the coil, I = 15 A

Permeability of free space, µ= 4π x 10-7TmA-1

Magnetic field is given by the relation,

 

 

If the length of the coil is taken as 50 cm, radius 4 cm, number of turns 400, and current 10 A, then these values are not unique for the given purpose. There is always a possibility of some adjustments with limits.

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Important Questions & Answers

What is the correct answer to: A magnetic field of 100 G (1 G = 10-4 T) is required which is uniform in a region of linear dimension about 10 cm and area of cross-section about 10-3 m2. The maximum current-carrying capacity of a given coil of wire is 15 A and the number of turns per unit length that can be wound round a core is at most 1000 turns  m-1. Suggest some appropriate design particulars of a solenoid for the required purpose. Assume the core is not ferromagnetic?

Magnetic field strength, B = 100 G = 100 × 10- 4 T

Number of turns per unit length, n = 1000 turns m- 1

Current flowing in the coil, I = 15 A

Permeability of free space, µ0 = 4π x 10-7Tm...

How do you solve A magnetic field of 100 G (1 G = 10-4 T) is required which is uniform in a region of linear dimension about 10 cm and area of cross-section about 10-3 m2. The maximum current-carrying capacity of a given coil of wire is 15 A and the number of turns per unit length that can be wound round a core is at most 1000 turns  m-1. Suggest some appropriate design particulars of a solenoid for the required purpose. Assume the core is not ferromagnetic step by step?

Step-by-step explanation:
• Magnetic field strength, B = 100 G = 100 × 10- 4 T

• Number of turns per unit length, n = 1000 turns m- 1

• Current flowing in the coil, I = 15 A

Why is this answer important for exams?

This question is important because it tests key concepts from the NCERT syllabus and is frequently asked in CBSE exams.

Which NCERT concept is used in this question?

This question is based on core NCERT concepts explained in the chapter and should be revised thoroughly before exams.

What common mistakes should be avoided in this question?

Students often lose marks by skipping steps, writing incomplete explanations, or misunderstanding keywords used in the question.

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