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You won't acheive anything, yes it was hard, but everyone had to sit the same test. It's fair.holla back girl said:i am going to go and make my complaint now...
i thought the questions were beyond my reach even though i am a competent physics student.
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haha u musta copied me... got all the same as uXenocide said:1A
2D
3B
4D
5C
6B
7A
8C
9B
10B
11B
12A
13A
14B
15D
Just checked these, 99% sure they are all correct.
but can holes physically travel??seadonkey said:15D use right hand palm rule... electrons up holes down
Yeah i agree but i thought thickness of wire would affect the amount of current... simply because there is less resistance and i dunno the Earth's mag field is everywhere would it really matter the most? I'm just being hopeful lolrowan brand said:i agree
einstein explained - but crap question writing really
i disagree about question 6. Using teh formula F = BIL sin theta
re-arranged this becomes I = F/ (BL sin theta)
Hence since i is proportional to L (length of wire), B, sin theta (which is the orientation to the external field which is the eearths field, hence orientation DOES matter), and is also proportional to force which is the speed which teh thing is rotated.
Hence the only answer can be B. as all the others are implicated in teh induction of current as seen in the above formula.
i think i gave an explanation to that in my last post AreYouAlright?Originally Posted by AreYouAlright?
I have a couple questions... why is Q13. a) and not C) Phosphorus... Phosphorus has more electrons in valence band so wouldn't the dopant level be higher as shown?....
yes holes r just an empty spaces within the lattice due 2 group 3 dopant.jake2.0 said:but can holes physically travel??
AreYouAlright?, the thickness would indeed affect the current reading as you say. but it is the LEAST likely answer because:Originally Posted by AreYouAlright?
Yeah i agree but i thought thickness of wire would affect the amount of current... simply because there is less resistance and i dunno the Earth's mag field is everywhere would it really matter the most? I'm just being hopeful lol
ok, i agree with ur explanation but how does the orientation of the wire affect the reisitance??who_loves_maths said:AreYouAlright?, the thickness would indeed affect the current reading as you say. but it is the LEAST likely answer because:
when/if you increase the thickness of the wire, you increase the current. but, you also increase the weight of the wire. as a result of weighing more, the wire will be rotated slower than before by the students. hence, the rate of cutting flux will be reduced - thereby diminishing the induced E.M.F. as a result, the current will also be belittled.
so the net overall effect of increasing wire thickness equates to almost nothing.
Originally Posted by chensta
i spent a while on the cooper wire questions, then i thought it this way
magnetic field is vertically up out of earth right? and the wire is horiztonal, so it is already at perpendicular....what tricked me is north/east etc, i was looking at it on a vertical plane, but really its all on horizontal...so no matter which direction, it will still be cutting the flux....
hi xrtzx,Originally Posted by xrtzx
ok, i agree with ur explanation but how does the orientation of the wire affect the reisitance??