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SSC & Banking · Practice Sheet 47

Sheet code: SSC-BANKING-S47 · 20 questions

Name: ______________
Date: ______________
  1. 1.
    Quantitative Aptitude

    Two varieties costing ₹24 and ₹71 per kg are mixed to give a mixture worth ₹55 per kg. Find the mixing ratio.

    Formula:Alligation (Mixtures)
    q1q2=p2mmp1\dfrac{q_1}{q_2} = \dfrac{p_2-m}{m-p_1}
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  2. 2.
    Mathematics

    Find the distance between the points (2, -2) and (-2, -6).

    Formula:Distance Between Two Points
    d=(x2x1)2+(y2y1)2d = \sqrt{(x_2-x_1)^2 + (y_2-y_1)^2}
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  3. 3.
    Quantitative Aptitude

    Find the HCF and LCM of 25 and 17.

    Formula:LCM & HCF
    LCM×HCF=a×b\text{LCM}\times\text{HCF} = a\times b
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  4. 4.
    Mathematics

    Find the distance between the points (-1, 2) and (-5, -1).

    Formula:Distance Between Two Points
    d=(x2x1)2+(y2y1)2d = \sqrt{(x_2-x_1)^2 + (y_2-y_1)^2}
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  5. 5.
    Quantitative Aptitude

    A invests ₹7,000 and B invests ₹8,000 for the same period. If the total profit is ₹22,000, find A's share.

    Formula:Partnership (profit share)
    ShareA=Profit×AA+B\text{Share}_A = \text{Profit}\times\dfrac{A}{A+B}
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  6. 6.
    Mathematics

    In an arithmetic progression with first term 16 and common difference 8, find term number 14.

    Formula:AP nth Term
    an=a+(n1)da_n = a + (n-1)d
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  7. 7.
    Quantitative Aptitude

    Find the average of these 8 numbers: 90, 80, 44, 68, 29, 36, 37, 47.

    Formula:Arithmetic Mean
    xˉ=xn\bar{x} = \dfrac{\sum x}{n}
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  8. 8.
    Quantitative Aptitude

    The sum of the ages of two people is 50 years, and one is 10 years older than the other. Find their ages.

    Formula:Ages (linear equations)
    x+(x+d)=Sx + (x+d) = S
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  9. 9.
    Quantitative Aptitude

    The marked price of an item is ₹400. After a 50% discount, find the selling price.

    Formula:Discount & Selling Price
    SP=MP(1d100)SP = MP\left(1-\dfrac{d}{100}\right)
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  10. 10.
    Quantitative Aptitude

    Two varieties costing ₹37 and ₹67 per kg are mixed to give a mixture worth ₹42 per kg. Find the mixing ratio.

    Formula:Alligation (Mixtures)
    q1q2=p2mmp1\dfrac{q_1}{q_2} = \dfrac{p_2-m}{m-p_1}
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  11. 11.
    Quantitative Aptitude

    Find the HCF and LCM of 14 and 29.

    Formula:LCM & HCF
    LCM×HCF=a×b\text{LCM}\times\text{HCF} = a\times b
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  12. 12.
    Mathematics

    In an arithmetic progression with first term 8 and common difference 2, find term number 17.

    Formula:AP nth Term
    an=a+(n1)da_n = a + (n-1)d
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  13. 13.
    Mathematics

    Find the distance between the points (-7, 8) and (-3, 1).

    Formula:Distance Between Two Points
    d=(x2x1)2+(y2y1)2d = \sqrt{(x_2-x_1)^2 + (y_2-y_1)^2}
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  14. 14.
    Quantitative Aptitude

    A value changes from 200 to 160. Find the percentage decrease.

    Formula:Percentage Change
    %change=newoldold×100\%\,\text{change} = \dfrac{|new-old|}{old}\times 100
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  15. 15.
    Quantitative Aptitude

    Find the HCF and LCM of 19 and 25.

    Formula:LCM & HCF
    LCM×HCF=a×b\text{LCM}\times\text{HCF} = a\times b
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  16. 16.
    Quantitative Aptitude

    A invests ₹3,000 and B invests ₹2,000 for the same period. If the total profit is ₹20,000, find A's share.

    Formula:Partnership (profit share)
    ShareA=Profit×AA+B\text{Share}_A = \text{Profit}\times\dfrac{A}{A+B}
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  17. 17.
    Quantitative Aptitude

    A can finish a job in 6 days and B in 13 days. Working together, how long will they take?

    Formula:Time & Work (combined)
    T=xyx+yT = \dfrac{xy}{x+y}
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  18. 18.
    Quantitative Aptitude

    What is 60% of 240?

    Formula:Percentage of a Number
    Value=P100×N\text{Value} = \dfrac{P}{100}\times N
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  19. 19.
    Quantitative Aptitude

    The marked price of an item is ₹1,900. After a 10% discount, find the selling price.

    Formula:Discount & Selling Price
    SP=MP(1d100)SP = MP\left(1-\dfrac{d}{100}\right)
    View formula →
  20. 20.
    Quantitative Aptitude

    The sum of the ages of two people is 36 years, and one is 14 years older than the other. Find their ages.

    Formula:Ages (linear equations)
    x+(x+d)=Sx + (x+d) = S
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