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acmilan

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Hi I was wondering if people could help out with some questions:

1.
Tom is playing 50 black jack games tomorrow
The probability that he wins is 0.3 on a fine day and 0.6 on a wet day
The probability that it will rain tomorrow is 0.8
How many games would Tom expect to win tomorrow?

2. If a,b,c are in proportion (ie. a/b = b/c) show that the roots of
ax^2 + bx + c = 0 are imaginary

3.Find the equation to the tangent to the curve y = a^3 - 2a and x = 2a^2 - 3 at the point where a = 2

Thanks
 

withoutaface

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acmilan1987 said:
Hi I was wondering if people could help out with some questions:

1.
Tom is playing 50 black jack games tomorrow
The probability that he wins is 0.3 on a fine day and 0.6 on a wet day
The probability that it will rain tomorrow is 0.8
How many games would Tom expect to win tomorrow?

2. If a,b,c are in proportion (ie. a/b = b/c) show that the roots of
ax^2 + bx + c = 0 are imaginary

3.Find the equation to the tangent to the curve y = a^3 - 2a and x = 2a^2 - 3 at the point where a = 2

Thanks
2. discriminant= b<sup>2</sup>-4ac=b<sup>2</sup>-4(b<sup>2</sup>/c)*c=-3b<sup>2</sup><0

the roots are complex, not imaginary because you end up with x=-b(1+sqrt3)/2a

3. find values of x and y

y=8-4=4

x=8-3=5

Find m

dy/dx=(dy/da)/(dx/da)=(3a<sup>2</sup>-2)/(4a)
m=10/8=5/4

then you substitute into m(x-x1)=y-y1, but you get the idea
Ill have a look at number one and post a solution when I can.

EDIT: For 1 try finding the greatest coefficient on both a rainy day and sunny day, then:

.8*(rainy day games)+.2*(sunny day games)

I think.
 
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mojako

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no, the roots are imaginary

discriminant: b^2 - 4ac, where b^2 = ac from a/b=b/c
So, discriminant = -3ac, where ac = b^2 and is therefore positive
hence the discriminant is negative and the root is imaginary.. (i.e. not real)
in 3U context, imaginary means it doesnt belong to the real number field :p
btw, I think there's a minor typo in ur answer/explanation to this question.
 
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wogboy

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1.
Tom is playing 50 black jack games tomorrow
The probability that he wins is 0.3 on a fine day and 0.6 on a wet day
The probability that it will rain tomorrow is 0.8
How many games would Tom expect to win tomorrow?
P(WIN) = P(RAIN)*P(WIN | RAIN) + P(FINE)*P(WIN | FINE)
= 0.8*0.6 + 0.3*0.2
= 0.54

So the expected value of wins in 50 games is 50*P(WIN)
= 27
 

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