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In the following question below are given some statements followed by some conclusions. Taking the given statements to be true even if they seem to be at variance from commonly known facts, read all the conclusions and then decide which of the given conclusion/conclusions logically follows/follow the given statements. Statements: (A) Some cars are horses. (B) All horses are guns. (C) All guns are cows. Conclusions: I. Some cows are cars. II. Some cows are horses. III. Some cows are guns.

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In the following question below are given some statements followed by some conclusions. Taking the given statements to be true even if they seem to be at variance from commonly known facts, read all the conclusions and then decide which of the given conclusion/conclusions logically follows/follow the given statements.

Statements:

(A) Some cars are horses.

(B) All horses are guns.

(C) All guns are cows.

Conclusions:

I. Some cows are cars.

II. Some cows are horses.

III. Some cows are guns.
1). Only I follows
2). Only I and IV follow
3). Only II and III follow
4). All follow

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What will come in the place of question mark (?) in the following question? [(2 + 3 – 37) / (31 – 23)] + {23 – 9} × [(5 + 2 + 32) / (31 – 6 × 3)] = ?

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What will come in the place of question mark (?) in the following question?

[(2 + 3 – 37) / (31 – 23)] + {23 – 9} × [(5 + 2 + 32) / (31 – 6 × 3)] = ?
1). 32
2). 38
3). 47
4). 54

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In a row of 63 cars, black car is 32nd from the right end. What is its position from left end?

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In a row of 63 cars, black car is 32nd from the right end. What is its position from left end?
1). 32
2). 31
3). 33
4). 34

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Which of the following has become the world's first district using both 5G coverage and broadband gigabit network?

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Which of the following has become the world's first district using both 5G coverage and broadband gigabit network?
1). Frankfurt
2). Perth
3). Shanghai
4). Hamburg

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If tan A = 1 and tan \(B = \sqrt 3 \) then value of cos (A + B) is

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If tan A = 1 and tan \(B = \sqrt 3 \) then value of cos (A + B) is
1). \(\frac{{1 + \sqrt 3 }}{{2\sqrt 2 }}\)
2). \(\frac{{1 - \sqrt 3 }}{{\sqrt 2 }}\)
3). \(\frac{{1 - \sqrt 3 }}{{2\sqrt 2 }}\)
4). \(\frac{{1 + \sqrt 3 }}{4}\)