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CBSE Questions for Class 11 Engineering Maths Sequences And Series Quiz 8 - MCQExams.com

The value of S=6k=1(sin2πk7icos2πk7) ?
  • 1
  • 0
  • i
  • i

 The value of
11!+1+22!+1+2+33!+1+2+3+44!+\cods upto infinite terms is equal to 

  • (a)3e2
  • (b)3e1
  • (c)2e+1
  • (d)5e2
Find sum 12+32+52+...+(2n1)2
  • n(2n+1)(2n+1)3.
  • n(2n1)(2n+1)3.
  • 2n(2n1)(2n+1)3.
  • None of these
The sum to the first n terms of the series  12+34+78+1516+ is 9+210.  The value of n is
  • 10
  • 9
  • 8
  • none of these
If 20i=1sin1 xi=10πthen20i=1xi is equal to 
  • 20
  • 10
  • 0
  • 1
What is the sum of the series 1324+1724+11124+.....+13924
  • 1041
  • 4041
  • 2041
  • 3041
Number of identical terms in the sequence 2,5,8,11,___ upto 100 terms and 3,5,7,9,11____ upto 100 terms are
  • 17
  • 33
  • 50
  • 147
The value of the expression (1221)+(1421)+(1621)+...+(12021) is
  • 919
  • 1019
  • 1021
  • 1121
67,84,95,.,133,158
  • 116
  • 129
  • 108
  • 111
Let Sn=11+2008n+12+2008n+...+12009n. Then limnSn equals?
  • log(12008)
  • log(1+12008)
  • log(12009)
  • log(1+12009)
Find the value of ?. 
1052324_a17d200592ec4c5eb92acd3b598dee6f.png
  • 125
  • 25
  • 625
  • 156
If a2a3a1a4=a2+a3a1+a4=3(a2a3a1a4) then a1,a2 and a3 are in which progression?
  • A.P.
  • G.P.
  • H.P.
  • None of these
n=55n=5
  • True
  • False
The sum of all 2-digit numbers divisible by 5 is _________?
  • 1035
  • 1245
  • 1230
  • 945
If Sr=|2rxn(n+1)6r21yn2(2n+3)4r32nrzn3(n+1)| then nr=1Sr
does not depends on
  • x
  • y
  • n
  • all of these
If (12t1)+(22t2)+.......+(n21), then tn is
  • n2
  • n1
  • n+1
  • n
Insert the missing number in the given series : 0,4,18,48,?,180 
  • 58
  • 68
  • 84
  • 100
Ten students of the physics department decided to go on a educational trip.They hired a mini bus for the trip, but the bus can only carry eight students at a time and each student goes at least once. Find the minimum number of trips the bus has to make so that each students can go for equal number of trips.
  • 5
  • 4
  • 6
  • 8
For a sequence {an},a1=2 and an+1an=13. Then 20r=1ar is
  • 202[4+19×3]
  • 3(11320)
  • 2(1320)
  • (11320)
Number of rectangles in the grid shown which are not squares is?

  • 160
  • 162
  • 170
  • 185
1,2,1,4,3,8,9,5,27,16,?,?,?
  • 7,36,64
  • 7,25,64
  • 9,25,64
  • 7,25,49
If nr=1r(r+1)(2r+3)=an4+bn3+cn2+dn+e, then 
  • a + c = b + d
  • e = 0
  • a,b23,c1 are in A. P.
  • ca is an integer
nr=0(1)rnCr.(1+rn10)(1+n10n)r=
  • 0
  • 12
  • 1
  • none of these
Evaluate the definite integral:
π/20cos2x1+3sin2x dx
  • π/4
  • π/2
  • π/6
  • π/3
 75(1+1102+1.31.2.1104+1.3.51.2.3.1106+....)=2
  • True
  • False
The sum 2×5+5×9+8×13+10 term is 
  • 4500
  • 4555
  • 5454
  • None of these
 1+14+1.34.8+1.3.54.8.12+.....=2
  • True
  • False
A series is given as: 4+7+10+13+16+..... Find the sum of the series up to 10 terms.
  • 110
  • 125
  • 162
  • 175
The unit's place digit in (1446)4n+3 is
  • n
  • 0
  • 6
  • None of these
The sum of the infinite series, 12225+32524253+52546253+.......... is
  • 12
  • 2524
  • 2554
  • 125252
The sum of infinity of the series 11+11+2+11+2+3+______ is equal to:
  • 2
  • 52
  • 3
  • None of these
Solve then inequality 
x1x2
  • x1
  • x1
  • x0
  • xR
The sum of the series 1+2.2+3.22+4.23+5.24+.+100.299 is  ?
  • 99.21001
  • 100.2100+1
  • 99.2^[100}
  • 99.2100+1
If Sn=nΣr=1tr=16n(2n2+9n+13), then nΣr=1tr equals ?
  • 12n(n+1)
  • 12n(n+2)
  • 12n(n+3)
  • 12n(n+5)
If an=n(n!), then 100r=1ar is equal?
  • 101!
  • 100!1
  • 101!1
  • 101!+1
If a1=a2=2,an=an11(n>2) then a5 is ?
  • 1
  • 1
  • 0`
  • -2
The sum of the series 1+\dfrac{1}{4\times 2!}+\dfrac{1}{16\times 4!}+\dfrac{1}{64\times 6!}+....\infty is?
  • \dfrac{e+1}{\sqrt{e}}
  • \dfrac{e-1}{\sqrt{e}}
  • \dfrac{e+1}{2\sqrt{e}}
  • \dfrac{e-1}{2\sqrt{e}}
If {x}_{1},{x}_{2},. . . . .,{x}_{n} are any real number and n is any positive integer, then ?
  • n\sum _{ i=1 }^{ n }{ { x }_{ i }^{ 2 }<{ \left( \sum _{ i=1 }^{ n }{ { x }_{ i } } \right) }^{ 2 } }
  • n\sum _{ i=1 }^{ n }{ { x }_{ i }^{ 2 }\ge { \left( \sum _{ i=1 }^{ n }{ { x }_{ i } } \right) }^{ 2 } }
  • n\sum _{ i=1 }^{ n }{ { x }_{ i }^{ 2 }\ge n{ \left( \sum _{ i=1 }^{ n }{ { x }_{ i } } \right) }^{ 2 } }
  • None\ of\ the\ above
Sum  of first n terms of the series \frac{1}{2} + \frac{3}{4} + \frac{7}{8} + \frac{{15}}{{16}} + .... is equal to 
  • {2^n} - n - 1
  • 1 - {2^{ - n}}
  • n + {2^{ - 2}} - 1
  • none of these
The nth term of the series 4, 14, 30, 52, 80, 114, ... is
  • n^{2} + n + 2
  • 3n^{2} + n
  • 3n^{2} - 5n + 2
  • (n + 1)^{2}
The sum of (n+1) terms of \frac { 1 }{ 1 } +\frac { 1 }{ 1+2 } +\frac { 1 }{ 1+2+3 } +.......is
  • \frac { n }{ n+1 }
  • \frac { 2n }{ n+1 }
  • \frac { 2 }{ n\left( n+1 \right) }
  • \frac { 2\left( n+1 \right) }{ n+2 }
The sum of the series \dfrac {5}{1 \cdot 2 \cdot 3}+\dfrac {7}{3 \cdot 4 \cdot 5}+\dfrac {9}{5 \cdot 6 \cdot 7}+.... is
  • \log \dfrac {8}{e}
  • \log \dfrac {e}{8}
  • \log2
  • \log \dfrac {1}{2}
If the sum of the series 1+\dfrac{3}{x}+\dfrac{9}{x^{2}}+\dfrac{27}{x^{3}}+.... to \infty is a finite number then 
  • x>3
  • x<-3
  • x<-3\ or\ x>3
  • None\ of\ these
The sum of the series 1^{3}+3^{3}+5^{3}+.... upto 20 terms is
  • 319600
  • 321760
  • 306000
  • 347500
The value of \sum_{n=1}^{\infty}\dfrac{1}{(3n-2)(3n+1)} is equal to \dfrac{p}{q}, where p and q are relatively prime natural numbers. Then the value of (p^2+q^2) is equal to
  • 4
  • 9
  • 10
  • 13
Select the missing number from the given responses ?
1152619_1c6c0bc365ab41c2a693e97a6343ff43.PNG
  • 15
  • 10
  • 12
  • 17
If abc=1, then the value of \dfrac{1}{1+a+b^{-1}}+\dfrac{1}{1+b+c^{-1}}+\dfrac{1}{1+c+a^{-1}} is
  • abc
  • a
  • 1
  • 3
The sum 1 + 3 + 7 + 15 + 31 +  \ldots to n term is 
  • {2^n} - 2 - n
  • {2^{n - 1}} - 1 - n
  • {2^{n + 1}} - 2 - n
  • None of these
Find: 6,25,62,123,(?),341
  • 216
  • 214
  • 215
  • 218
Sum of n terms of the series 8+88+888+. equals
  • \dfrac {8}{18}[10^{n+1}-9n-10]
  • \dfrac {8}{18}[10^{n}-9n-10]
  • \dfrac {8}{18}[10^{n+1}+9n-10]
  • None\ of\ these
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