In order to determine the x and y components of the initial velocity, use the following formulas:

where,
vo: magnitude of the initial velocity = 85.0 m/s
vox: x component of vo = ?
voy: y component of vo = ?
θ: angle above the horizontal = 65.0°
Replace the previous values into the expressions for vox and voy:

Hence, you obtain:
vox = 35.9 m/s
voy = 77.0 m/s