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{x}=tan y Damn.. this is too easy... try this one too.. {x}=tan {y} ...
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Sketch the graph of (1) y = | [x] + x - [x] | where [.] represents G.I.F. ...
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draw the graph of y = x+1/x-1 ...
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y=log{ex} {.} stands for fractional part of x. ...
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Draw the graph of y = [sin [x]] ...
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Draw the graph of {y} = [sin x] fractional part of y equal to greatest integer of sin x ...
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Draw the graph of [y] = [sin x] ...
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Draw the graph of y=[[sin x]]+[[cos x]] There are nested greatest integers [1] ...
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y= sin πx + sin π{x} where {} denotes fractional part of x ...
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using graphs or otherwise, find the number of solutions of log10x = sin x (someone asked this to me yesterday) ...
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An easy one after a long long time? y = sin (3x) + cos (2x) ...
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An easy one after a long long time? y = sin2(x) + sin (x) ...
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Q Draw the graph of {x}/[x] and [x]/{x} and check whether there is a solution from (1,5) or not ...
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|y|=|x+ex| ...
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sin2(x+y) = 1 ...
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sin (sin {x}) ...
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draw the graph of sin (cos {x}) ...
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draw the graph of cos sin ({x}) ...
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|z2-4|<1 Where z is any complex number on the Argand plane.. ...
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Draw the graph of y = x2/x2-1 and y = x/x-1 on the same sheet and compare their behavior ...
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Draw the graph of y=tan-1(2tanx) ...
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Draw the graph of y=tan(2tan-1x) ...
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Draw the graph of [x2]-[x]2 ...
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Simplest? 1<|z|<3 z is a complex number ...
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y=tan(tan-1x) and y=tan-1(tan x) on the same graph.. ...
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This question was asked by sumeet. Q Find the roots of e(x-1)+x-2=0 ...
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|z2-1| < 1 Where z is any complex number on the Argand plane.. ...
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[sin x] = [cos y] ...
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[tan x + sin y] = 1 ...
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[tan x + sin x] = 1 ...