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Content Curator | Updated On - Apr 25, 2024
JEE Main 2017 Question Papers are available for both Paper 1 and Paper 2. JEE Main 2017 was conducted by CBSE (Central Board of Secondary Education) for the last time in both pen and paper and CBT mode. The exam was held as a pen and paper test on April 2, 2017 and on April 8 and 9, 2017 as a computer-based test. JEE Main 2017 had two papers- Paper 1 was conducted both offline and online. For Paper 2, candidates had to give the exam in pen and paper mode. The duration allotted for each paper was 3 hours i.e 180 minutes. The medium of JEE Main 2016 Question Paper was in English, Hindi, and Gujrati (in particular areas). For every wrong answer, one-fourth mark was deducted. The question paper had a moderate level of difficulty.
Candidates appearing for JEE Main 2024 can use the links below to download JEE Main 2017 Question Papers for free to prepare better for the exam.
Also Check:
JEE Main 2017 Question Papers
Paper/Subject | Exam Date | Slot/Session | Question Paper |
---|---|---|---|
B.E/B.Tech | April 2, 2017 | Offline - Code A | Check Here |
B.E/B.Tech | April 2, 2017 | Offline - Code B | Check Here |
B.E/B.Tech | April 2, 2017 | Offline - Code C | Check here |
B.E/B.Tech | April 2, 2017 | Offline - Code D | Check here |
B.E/B.Tech | April 8, 2017 | Online | Check here |
B.E/B.Tech | April 9, 2017 | Online | Check here |
B.Arch | April 2, 2017 | Offline - Code W | Check here |
B.Arch | April 2, 2017 | Offline - Code X | Check here |
B.Arch | April 2, 2017 | Offline - Code Y | Check here |
JEE Main 2017 Questions
1. Let S = {1,2,3,..., 20}, R1 = {(a, b): a divide b}, R2 = {(a, b): a is integral multiple of b} and a, b ∈ S. n(R1 - R2) = ?
3. How many of the following compounds have zero dipole moment ?
\(NH_3, H_2O, HF, CO_2, SO_2, BF_3, CH_4\)
\(NH_3, H_2O, HF, CO_2, SO_2, BF_3, CH_4\)
4. Calculate the Molarity of a Solution having density = \(1.5\) \(g/ml\). \(\%(w/w)\) of Solute is \(36\%\) and Molecular weight of Solute is \(36\) \(g/mol\)
5. Calculate the Molarity of a Solution having density = \(1.5\) \(g/ml\). \(\%(w/w)\) of Solute is \(36\%\) and Molecular weight of Solute is \(36\) \(g/mol\)
*The article might have information for the previous academic years, which will be updated soon subject to the notification issued by the University/College.