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Subjects

Mathematics

Proof of irrationality of √2, √3, √5

√2, √3 और √5 की अपरिमेयता का प्रमाण

In this Class 10 Mathematics topic from the Real Numbers chapter, students learn how to prove that √2, √3 and √5 are irrational numbers. The proof begins by assuming that a square root can be written as a fraction p/q in lowest terms, then uses prime divisibility and the resulting contradiction to reject that assumption. Students also strengthen their understanding of rational and irrational numbers, prime factorisation, and the logical structure used in mathematical proofs.

Practice questions

01 (\sqrt{2}) is assumed rational and written as (\sqrt{2}=\frac{p}{q}). If (p) and (q) are coprime, what is the correct next conclusion from (p^2=2q^2)?

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02 While proving the irrationality of (\sqrt{3}), (p^2=3q^2) is obtained. Which conclusion about (p) with reason is correct?

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03 If (\sqrt{5}=\frac{p}{q}) is assumed in lowest form and (p^2=5q^2) is obtained, in which form should (p) be written?

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04 In the proof of (\sqrt{2}), after putting (p=2k), which equation follows from (p^2=2q^2)?

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05 In the proof of (\sqrt{3}), after putting (p=3k), (9k^2=3q^2) is obtained. What is the correct form of (q^2)?

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06 In the proof of (\sqrt{5}), after putting (p=5k), (25k^2=5q^2) is obtained. Which conclusion is correct?

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07 Which option is a wrong conclusion in the proof of (\sqrt{2})?

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08 If assuming (\sqrt{3}) rational makes both (p) and (q) divisible by (3), which fact is proved false?

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09 Where is the fact that (5) is prime used in the proof of irrationality of (\sqrt{5})?

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10 In the proof of (\sqrt{2}), after getting (q^2=2k^2), which reasoning is correct?

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11 Which option gives the correct order of the proof of (\sqrt{3})?

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12 In the proof of (\sqrt{5}), if (p=5k) and (q=5r) are obtained, which conclusion is correct?

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13 If a student stops at only (p^2=2q^2) while proving (\sqrt{2}) irrational, why is the proof incomplete?

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14 In the proof of (\sqrt{3}), why can we not directly say (q) is divisible by (3) from (p^2=3q^2)?

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15 Which statement is wrong in the proof of (\sqrt{5})?

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16 Why are (p) and (q) taken as coprime in all three proofs?

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17 Which option correctly states a difference between the proofs of (\sqrt{2}) and (\sqrt{3})?

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18 If assuming (\sqrt{5}) rational proves both (p) and (q) divisible by (5), what does this contradict?

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19 In the proof of (\sqrt{2}), both (p) and (q) are found even. Why is this called a contradiction?

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20 Which option is the correct short proof idea for the irrationality of (\sqrt{3})?

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21 In the proof of (\sqrt{5}), after (p^2=5q^2), when is (q) proved divisible by (5)?

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22 If (a^2=2b^2) and (a=2k), what is true about (b^2)?

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23 Which option is common in the proofs of (\sqrt{2}), (\sqrt{3}), and (\sqrt{5})?

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24 A student writes (\sqrt{3}=\frac{p}{q}), so (3=\frac{p}{q}). What is the mistake?

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25 In the proof of (\sqrt{5}), what does taking (\frac{p}{q}) in lowest form mean?

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