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{x2+y2}={x2-y2}. {.} is fractional part... ...
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draw the graph of y= cos(cos-1x) + sin(sin-1x) ...
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draw the graph of sin(cos-1x)=y ...
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draw the graph of... y=e-1/{x} {x} is fractional part of x ...
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y=e{x}-1 ...
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x = y+1 This one is simple.. isnt it :) ...
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x4=1-y2 ...
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Cos (Sin x) This is easy .. isnt it? ...
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Tan-1(tanX) ...
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(xy)2N+1=M M<0 ...
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(xy)2N=M M>0 N is very large Integer ...
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21-01-09 x21-01=y09 ...
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If you understood some of the questions that we have done so far.. then this one will be easy as well... {x2}={-y2} ...
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y={√x} ...
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x+y=x3+y3 I dont know the solution.. and first look i could not convince myself that i wud be albe to get a solution either ;) but then that is the fun of all mathematics isnt it ? :) btw this is a bonus question for the reas ...
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Draw the graph for... {y2}={(1-x)2} {} stands for fractional part ...
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[xy]=1 draw this graph... ...
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xy=2 ...
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Draw the graph for the case when n is veyr very large! xn+yn=1 ...
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[sin (x+{y})] = 1 ...
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Plot the graph of {x2} = {y2} ...
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e{x}=e{y} Give the graph of this function and give the complete explanation of why this is possible! ...
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Draw the points on the plane which have the property that the distance of the point from the x axis is the square of the distance of the point from the y axis! ...
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Plot the graph of ... y=x+x2+x3...... infinity ...
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Draw the graph of ... {x+y}={x-y} ...
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draw the graph of y={x}2+{-x}2 ...
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xy = 2 ...
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plot {x2} and {x}2 on the same graph ...
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ex = 2-{y} ...
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Draw the graph of x<y intersection with x<y4 ...