Yes. As installed the lifter sits on the far end of the base circle. It traveled 336 degrees to get to .050.
The other measurement was just made from where the lifter sits centered on the base circle or 180 from top of lift.
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Based on your statement, "It traveled 336 degrees to get to .050". I see the following:
When you zeroed your degree wheel at TDC, both lifters are on the base circle of the cam lobe, i.e. TDC #1 Firing Position. You rotated the crankshaft 180-degrees to BDC (end of power stroke/beginning of exhaust stroke), then another 156 to where the tappet is at .050 lift. 180 + 156 = 336 crankshaft-degrees out of 720-degrees of crankshaft rotation to complete all four strokes of a four stroke internal combustion engine.
What you actually want to look at is cam timing events relative to the appropriate stroke (out of the four strokes). So far, in 336-degrees of crankshaft rotation, the firing stroke is complete (180-degrees) and 156-degrees (out of 180-degrees) of the exhaust stroke have been completed. Now the intake valve is starting to open during the overlap period, 24-degrees BTDC (Before Top Dead Centre).
If you add up the events and compare them to your cam card Intake Duration @ .050 of 231-degrees - add (24-degrees BTDC) + (180-degrees for the intake stroke) = 204-degrees. Subtract 204 from 231 = 27-degrees or the @ .050 intake tappet closing point should be 27-degrees ABDC (After Bottom Dead Centre). This is where you appear to be now, advanced 14.5-degrees. According to your cam card (and my math), the @ .050 opening point should be 9.5-degrees BTDC and close 41.5-degrees ABDC.
I think you have some errors in your measurements somewhere. I'm curious if, with your current setup, will your @ .050 intake valve closure point be 27-degrees ABDC? I would recheck zero on your degree wheel to make sure it didn't get accidentally bumped (I do this all the time).
Next, get the peak lift point out of your head! That point is totally irrelevant to finding centerline of your cam. In fact, peak lift doesn't always correspond to lobe centerline. Only concern yourself with the @ .050 opening and closing points.
Lastly, you may be fighting accumulated error. From what I understand, the cam bearing bores are machined in a different operation than the main bores and the lifter bores in yet again another operation. 14.5-degrees sounds a bit excessive for the marks to be off, but if you get your numbers to come into spec and repeat, the engine won't care what number is stamped on the crank sprocket.
You need to get your technique down first. A little extra practice won't hurt.
The following is FYI:
What does it mean for the end user who is degreeing his/her camshaft? If the lifter bores are not exactly centered on the camshaft, cam timing will be either advanced or retarded. Advanced if the bearing journals are shifted to the right or lifter bores are shifted to the left. You may also find that the camshaft is not parallel to the crankshaft and the degree of advance/retard will vary from the front cylinders to the rear. Then you have crank index, cam index, and manufacturing tolerance on everything compounding the problem.
What can be done about this? Short of correcting the cam bearing and lifter bores, if you are OCD about your cam timing, centerline the intake lobes for the four corner cylinders and split the difference to achieve the best compromise between all cylinders. Otherwise, only the #1 cylinder will be optimized and all others are an unknown compromise.
There are plenty of engines out there, that have had only the #1 centerlined, that haul the mail. I'm only trying to say, you may be fighting accumulated error.
Good luck,
Joe