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Original post by Darsns
I mean 70% is ridiculous too
i don’t think the top 10% will get 70%
I think it’ll be 60% for an A*
50% for an A
40% for B etc


60% overall? For an A*? Ur bugging bro
Reply 1181
Original post by danchez04
60% overall? For an A*? Ur bugging bro

Insane copium... it'll be 80% like every other test probably. Best to prepare for the worst.
Reply 1182
Original post by moheat13
Insane copium... it'll be 80% like every other test probably. Best to prepare for the worst.


Original post by danchez04
60% overall? For an A*? Ur bugging bro

wdym? some years had around 68%- 72% for an A*, a minimum of 80% for an A*? yh fat chance, haven't seen that in a while and it depends on the score this year, i can see A* being 65-70%, A 50 or 55%
(edited 10 months ago)
Original post by Darsns
I mean 70% is ridiculous too
i don’t think the top 10% will get 70%
I think it’ll be 60% for an A*
50% for an A
40% for B etc


Sounds reasonable, I don’t think it will be in 10 percent increments though. Maybe 68% for an A*, 59% for an A, and 51% for a B. Something along those lines
is there an unofficial ms
Original post by Kausar Khan
is there an unofficial ms

reply when u get it
Reply 1186
(Original post by Kausar Khan)is there an unofficial ms

lmk if u find it please
Reply 1187
Original post by Kausar Khan
is there an unofficial ms


if there’s not is anyone gonna make one??
Reply 1188
Original post by danchez04
60% overall? For an A*? Ur bugging bro


Yeah that's so low, it'll be 70% ish for an A*
Reply 1189
Think i got like 62 percentage overall. Thumbs up if that’s an A
Original post by hiphoplala
That was the easiest paper in existence, sorry for anyone that didn't feel the same.

I'll try explain the toughest ones. For the wave question:


Assume the angle at the second TIR was the critical angle (41.5) as the path was the limit Theta-i of the first glass TIR (48.5)
Theta-R(3.5) + 45= 48.5
1xsin(theta) = 1.5sin(3.5)
theta=5

Power was 16%, something like that

The question about the steel and aluminium: Find the extensions, take the moments of both side after you've found out the forces for x

i dont understand the prism question...

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