KCET 2021 Biology Question Paper with Answer Key PDFs (August 28 - Morning Session)

KCET 2021 Biology Question paper with answer key pdf conducted on August 28, 2021 in Morning Session 10:30 AM to 11:50 AM is available for download. The exam was successfully organized by Karnataka Examinations Authority (KEA). In terms of difficulty level, KCET was of Moderate level. The question paper comprised a total of 60 questions.

KCET 2021 Biology Question Paper with Answer Key PDFs Morning Session 

KCET 2021 Biology Question Paper PDF KCET 2021 Biology Answer Key PDF
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KCET Previous Year Question Paper with Answer Key PDFs

Collegedunia has provided KCET Previous Year Question paper pdf with answer key in the links given below:

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KCET Questions

  • 1.
    In Leucosolenia, food is stored in

      • archaeocytes
      • choanocytes
      • amoebocytes
      • porocytes

    • 2.
      On the basis of standard electrode potential of redox couples given below, find out which of the following is the strongest oxidising agent. (E$^{\circ}$ values : $Fe^{3+}\left| Fe^{2+}=+ 0.77 V ; I_{2\left(s\right)}\right|I^{- } =$ $+ 0.54 V; Cu^{2+}\left|Cu= + .34 V ; Ag^{+}\right| Ag = + 0.80 V$)

        • $Fe^{3+}$
        • $I_{2(s)}$
        • $Cu^{2+}$
        • $Ag^{+}$

      • 3.
        Among the following, the achiral amino acid is

          • 2-ethylalanine
          • 2-methylglycine
          • 2-hydroxymethylserine
          • tryptophan

        • 4.
          Ammonia, on reaction with excess of chlorine, gives

            • $NCl _{3}$ and $HCl$
            • $N _{4}$ and $NH _{4} Cl$
            • $NCl _{3}$ and $NH _{4} Cl$
            • $N _{2}$ and $HCl$

          • 5.
            Which one of the following is an amphoteric oxide?

              • $ZnO$
              • $Na _{2} O$
              • $SO _{2}$
              • $B _{2} O _{3}$

            • 6.
              After absorbring a slowly moving neutron of Mass mN (momentum $\approx$ 0) a nucleus of mass M breaks into two nuclei of masses $m_1$ and $5m_1$ ($6\, m_1 = M + mN$ ) respectively. If the de Broglic wavelength of the nucleus with mass $m_1$ is $\lambda$, the de Broglie wevelength of the nucleus will be:

                • $5\,\lambda$
                • $\lambda $\5
                • $\lambda$
                • $25\,\lambda$

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