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The number of girls appearing for an admission test is twice the number of boys. If 30% of the girls and 45% of the boys get admission, the percentage of candidates who do not get admission is
  • a)
    65
  • b)
    50
  • c)
    60
  • d)
    35
Correct answer is option 'A'. Can you explain this answer?
Verified Answer
The number of girls appearing for an admission test is twice the numbe...
Let the number of girls be 2x and number of boys be x.
Girls getting admission = 0.6x
Boys getting admission = 0.45x
Number of students not getting admission = 3x – 0.6x -0.45x = 1.95x
Percentage = (1.95x/3x) * 100 = 65%
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Most Upvoted Answer
The number of girls appearing for an admission test is twice the numbe...
To solve this question, we need to break it down into steps and calculate the number of boys and girls, as well as the number of candidates who do not get admission.

Step 1: Let's assume the number of boys as 'x'.
Therefore, the number of girls will be twice the number of boys, which is 2x.

Step 2: Calculate the number of candidates who get admission.
30% of the girls get admission, which means 0.30 * 2x = 0.60x girls get admission.
45% of the boys get admission, which means 0.45 * x = 0.45x boys get admission.
So, the total number of candidates who get admission is 0.60x + 0.45x = 1.05x.

Step 3: Calculate the number of candidates who do not get admission.
The total number of candidates who appeared for the admission test is the sum of the number of boys and girls, which is x + 2x = 3x.
The number of candidates who do not get admission is the difference between the total number of candidates and the number of candidates who get admission, which is 3x - 1.05x = 1.95x.

Step 4: Calculate the percentage of candidates who do not get admission.
To find the percentage, we divide the number of candidates who do not get admission by the total number of candidates and multiply by 100.
(1.95x / 3x) * 100 = 65%

Hence, the correct answer is option A) 65%.
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The number of girls appearing for an admission test is twice the numbe...
A
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