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A curve is represented parametrically by...

A curve is represented parametrically by the equations `x=e^(1)cost andy=e^(1) sin t,` where t is a parameter. Then,
The relation between the parameter 't' and the angle `alpha` between the tangent to the given curve and X-axix is given by, 't' equals

A

`(pi)/2-alpha=t`

B

`(pi)/4+alpha=t`

C

`(pi)/4-alpha=t`

D

`alpha-(pi)/4=t`

Text Solution

Verified by Experts

The correct Answer is:
D

`y=e^(t)sintimplies(dy)/(dx) =e^(t)[cost+sint]`
`x=e^(t)costimplies(dx)/(dt)=e^(t)[cost-sint]`
`:.(dy)/(dx)=(cost+sint)/(cost-sint)=tanalpha`
`:.tan((pi)/4+t)=tanalpha`
`((pi)/4+t)=alpha`
`t=alpha-(pi)/4`
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