Group 1 | Group 2 | ||
(P) | Cinnamate-4-hydroxylase | (i) | L-phenylalanine → Cinnamic acid |
(Q) | Glycerate kinase | (ii) | Glyceraldehyde 3-phosphate → dihydroxyacetone phosphate |
(R) | PEP carboxylase | (iii) | Glycolate + O\(_2\) → Glyoxylate + H\(_2\)O\(_2\) |
(S) | Nitrate reductase | (iv) | NO\(_3^-\) + NAD(P)H + H\(^+\) → NO\(_2^-\) + NAD(P)\(^+\) + H\(_2\)O |
Match the following
List - A | List - B | ||
---|---|---|---|
A. | Hydrolases | I. | Argino succinase |
B. | Lyase | II. | Fructose 1,6 bisphosphatase |
C. | Ligase | III. | Hexokinase |
D. | Transferase | IV. | Ribose-5-phosphoisomerase |
V. | Glutamine synthetase |
The graph showing the concept of activation energy of enzyme is given below. Observe the graph and choose the correct option for M and N.
The \( F_{121} \) value of a known microorganism with \( Z \) value of \( 11^\circ C \) is 2.4 min for 99.9999% inactivation. For a 12D inactivation of the said microorganism at \( 143^\circ C \), the \( F \) value (in min) is .......... (rounded off to 3 decimal places)
Three villages P, Q, and R are located in such a way that the distance PQ = 13 km, QR = 14 km, and RP = 15 km, as shown in the figure. A straight road joins Q and R. It is proposed to connect P to this road QR by constructing another road. What is the minimum possible length (in km) of this connecting road?
Note: The figure shown is representative.
For the clock shown in the figure, if
O = O Q S Z P R T, and
X = X Z P W Y O Q,
then which one among the given options is most appropriate for P?