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Find the coordinates of a paint on a circle with radius 25 corresponding to an angle of 135'1 my) - I: | :} Round your

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Find the coordinates of a paint on a circle with radius 25 corresponding to an angle of 135'1 my) - I: | :} Round your answers to three decimal places. 9TT If d = then find exact values for the following: sec(8) equals V2 csc(#) equals tan (@) equals cot(0) equals 7r If 19 = T' then find exact values for the following: 5613(9) equals |:| cscEB} equals :1 tan[9) equals :l cot] equals |:] .5 . . . 4 Based on the graph above, determine the amplitude midline, and period of the function Find a function of the form 3; = Amkz} + Cor y = A maa-j + 0' whose graph matches the function shown below: iaa-LLiL-i Leave your answer in exact form: if necessary, type [1.1 for 1r. 2 sin (t) + cos?(t) Simplify to an expression involving a single trig function with no fractions. sin (t) If needed, enter squared trigonometric expressions using the following notation. Example: Enter sin (t) as (sin(t) )2.\fUse a half angle or reduction formula to fill in the blanks in the identity below: {605(53):}: - +| cost: I] Use half angle or power reduction formulas to fill in the blanks in the identity below: (sin(7x)) cos cos(Solve 3 905(31) = 2 for the smallest three positive solutions. Give your answers accurate to at least two decimal places as a list separated by commas 7r Solve T 5'111(EI) = E for the four smallest positive solutions Give your answers accurate to at least two decimal places, as a list separated by commas A Ferris wheel is 30 meters in diameter and boarded from a platform that is 1 meters above the ground. The six o'clock position on the Ferris wheel is level with the loading platform; The wheel completes 1 full revolution in 10 minutes. How man},I minutes of the ride are spent higher than 29 meters above the ground? 6 y = f(x) 5 + + 4 + + 2 X 2 3 4 5 6 8 9 Enter each answer as a whole number or a fraction, or DNE for Does Not Exist or undefined. lim f(x) - 2 f(x + 2) lim f(f(x) + 2) = 1-+3 lim f(2 + h) - f(2) h-+0 h

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