You have quite a bit of information given, some of it is ac performance and some of it is dc bias conditions. You will need to calculate those specifications in terms of circuit components, which will lead to simultaneous constraints on the component values.
The only way to find these constraints is to start writing equations. As a first step, I would look at the dc circuit and try to determine the ac transistor model parameters. You have a few explicit dc bias conditions: Vce = 10 volts, Ve = 2 volts. This also specifies the dc voltage across Rc. If you know the dc current, you have Rc and Re specified. One thing that grabs my attention is that βre = 650 ohms. This is because re depends on the bias current so you may be able to use this information to find the dc bias current. Now β is always statistically variable so this is not the best way to find the dc bias current if there is another way. The other use for βre is in computing ac input impedance since this will be the value of re reflected into the base side of the circuit (β>>1).
With the dc voltage at the emitter, you know the voltage at the base, which let's you find a ratio for R1 and R2. From there you will have to look at the ac model. The ac input impedance will place a second constraint on R1 and R2, which (given Re and βre), you will be able to solve. If you couldn't find Re before, the output impedance may place a second needed constraint on Rc, which will specify Re from dc bias conditions. Actually that may be one of the first steps to find Rc and Re.
As you can see, you need to write down the equations and keep in mind what the specifications are telling you about component constraints.
I see you've moved onto a JFET in similar configuration so maybe you've left this one already but the problem is almost the same.