A statement is given followed by two conclusions. Find which conclusion is TRUE based on the given statement. Statement: \(C = A \le T < D \ge O;\ G \ge D < S;\ T \ge A\) Conclusions: I: A < O II: C < G
Only II
Conclusion I (A < O):
From the statement: \(A \le T < D\) gives \(A < D\), and \(D \ge O\) gives \(O \le D\).
Both A and O are below or equal to D, but their order with respect to each other is not fixed. Conclusion I is not necessarily true.
Conclusion II (C < G):
\(C = A,\ A \le T < D\) ⇒ \(C < D\). Also \(G \ge D\) ⇒ \(D \le G\).
Combining: \(C < D \le G\) ⇒ \(C < G\). Conclusion II is true.
Hence, only II follows. The answer is option A.
In a certain code language, ‘A + B’ means ‘A is the mother of B’; ‘A – B’ means ‘A is the brother of B’; ‘A × B’ means ‘A is the wife of B’ and ‘A ÷ B’ means ‘A is the father of B’. Based on the above, if M + Q – R × K – Y, then how is M related to Y?
In a certain code language, ‘TERRAIN’ is written as ‘VETTAIP’ and ‘TRAFFIC’ is written as ‘VTHAHIE’. How will ‘MOTOR’ be written in that language?
Select the option that is related to the third word in the same way as the second word is related to the first word. (The words must be considered as meaningful English words and must not be related to each other based on the number of letters/number of consonants/vowels in the word) Pig : Piglets :: Deer : ?
In the following questions, the symbols @, #, $, © and % are used with the following meaning as illustrated below:
P @ Q ⇒ P ≥ Q
P # Q ⇒ P ≤ Q
P $ Q ⇒ P < Q
P © Q ⇒ P > Q
P % Q ⇒ P = Q
Statements: M © N, N # O
Conclusions: I. M © O II. M @ O
Read the given statement and conclusions carefully. Decide which of the given conclusions is/are definitely TRUE from the statement. Statement: P > Q < S > T = R ≥ U > V. Conclusion I: V < S. Conclusion II: P > T
In the following questions, the symbols $, #, @, % and * illustrate the following meanings.
Statements:
K # L, L % M, M * N, N # O
Conclusions:
I. K # M
II. K * M
III. L % O
Statement:
D ? M β P × K Ω F ? T; M × G
Conclusions:
I. K @ G
II. T ? P
III. F β MStatement:
T @ I × H Ω U ? P β V ? L; H @ L
Conclusions:
I. T Ω L
II. V β T
III. I @ LStatements:
P # B $ T; R & B $ S; L % R # Q
Conclusions:
I. P # Q
II. L & Q
III. T % S
IV. P # S
Statement:
R $ W % P; N & W # S; J % T @ N; K & T
Conclusions:
I. N # J
II. P # S
III. R @ P
IV. W $ K