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Examples of Fundamental theorem of Arithmetic Video Lecture - Class 10

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FAQs on Examples of Fundamental theorem of Arithmetic Video Lecture - Class 10

1. What is the Fundamental Theorem of Arithmetic?
Ans. The Fundamental Theorem of Arithmetic states that every positive integer greater than 1 can be uniquely expressed as a product of prime numbers, up to the order of the factors.
2. How does the Fundamental Theorem of Arithmetic help in prime factorization?
Ans. The Fundamental Theorem of Arithmetic guarantees that any given number can be broken down into a unique set of prime factors. This helps in prime factorization as it allows us to find the prime factors of a number by repeatedly dividing it by prime numbers until we obtain a product of only primes.
3. Can the Fundamental Theorem of Arithmetic be applied to negative numbers?
Ans. No, the Fundamental Theorem of Arithmetic only applies to positive integers greater than 1. Negative numbers and fractions cannot be expressed as a product of primes in the same way.
4. How is the Fundamental Theorem of Arithmetic used in solving problems involving LCM and GCD?
Ans. The Fundamental Theorem of Arithmetic is used in solving problems involving the Least Common Multiple (LCM) and Greatest Common Divisor (GCD). By finding the prime factorization of each number, we can determine the LCM by taking the highest power of each prime factor. Similarly, the GCD can be obtained by taking the lowest power of each prime factor.
5. What is the significance of the Fundamental Theorem of Arithmetic in cryptography?
Ans. The Fundamental Theorem of Arithmetic plays a crucial role in cryptography, particularly in the field of public-key encryption. The security of many encryption algorithms is based on the difficulty of factoring large numbers into their prime factors. The uniqueness property of prime factorization ensures that the encryption and decryption keys used in these algorithms are secure and cannot be easily reverse-engineered.
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