I hope I'm not too late on this and he took the exam:
Question #1 dose not specify the orbital location of the satellite involved, so we would have to assume that it is a geosync satellite viewable to ground stations in that area, so the answer to the first question would be Tokyo at 48.5 degrees elevation, Halifax at 38.6 degrees and Copenhagen at 26.5 degrees.
Anchorage at 20 degrees, Oslo at 22 degrees and Stockholm at 22.4 degrees fall outside the 25 degree elevation limit.
Question #2 is also kind of a trick question, assuming that the satellite is viewable from both locations, (lets use 125E as it would be right in-between the two locations, as you need a base point to start the calculations) also the distance would be one way as the question states from the satellite to the earth station.
So from 125E to Kuala Lumpur is 36,409 kM (22,623 miles) this equals a 121.6 mS delay.
And from 125E to Sydney is 37657 kM (23,399 miles) this equals a 125.8 mS delay.
Also the correct distance to a true geo orbit is 26,199 miles or 42,164 kM, you have to deduct the earths radius of 3963 miles or 6378 kM (at the equator at sea level) after that.
All GEO orbits are based from the center of the earth out to the satellite, there are 3 GEO orbits, the first is the transit orbit, this is lower then the GEO parking orbit, this is for moving satellites around the Clark belt, (the satellite travels faster in a lower orbit compared to one in a parking orbit) the third is the graveyard orbit, this is higher then the GEO parking orbit, this is where all satellites that have ended their usefulness or have run out of fuel or power end up (if they can move them), in some cases GEO satellites are de-orbited but this is only done on rare occasions as the de-orbiting of a GEO satellite is very tricky, with over 7,000 to 10,000 satellites in a low earth orbit (depending on where you start it off) you could run the risk of actually hitting one.