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2(x;y) c nu n(x;y) = i=1 c iu i(x;y) will also solve the equation The linear equation (19) is called homogeneous linear PDE, while the equation Lu= g(x;y) (111) is called inhomogeneous linear equation Notice that if uh is a solution to the homogeneous equation (19), and upis a particular solution to the inhomogeneous equation (111Annual M anagem ent F ee M ax 1 50% per annum R epurc has e C harge N / A Perf orm anc e F ee N / A M inim um I nv es t m ent / A l l f i g u re s a re s u b j e c t t o f re q u e n t c h a n g e s o n a d a i l y b a s i s a n d t h e p e rc e n t a g e s m i g h t n o t a d d u p t o 1 0 0 % d u e t o ro u n d i n g悤 IFF13 U } b v t ցB Ă Ċ ӂł B T C g PS3 p Q u t @ C i t @ ^ W 13 v ̍U T C g ł B ~ b V 41 `50 ~ b V 51 `60 ~ b V 61 `




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Which yields the same result after taking probabilities (since P(U = F(x)) = 0 since U is a continuous rv) 11 Examples The inverse transform method can be used in practice as long as we are able to get an explicit formula for F 1(y) in closed form We illustrate withB a h j _ l Z l _ e v g h k l v ^ e y ` b a g b K M L I k b k l _ f u h o e Z ` ^ _ g b y h j l h \ h c \ h ^ u g Z Z a _ B a h j _ l Z l _ e v g h k l vS l o w c o o k e d 1 2 h o u r r i b s , A s i a n s e s a m e s l a w £700 CHICKEN LIVER PARFAIT (TGF) R e d o n i o n c h u t n e y , s o u r d o u g h , p i s t a c h i o c r u m b £700 TRIO OF KING SCALLOPS (GF) ADD CHICKEN £250 ADD SALMON £350 ADD RUMP STEAK £450 BUTTERMILK CHICKEN & PANCAKES



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Minimize cTx subject to (AU)x b for U ∈ U can always represent formulation constraintwise, consider only one inequality (au)Tx ≤ b for all u ∈ U • Simple example U = {u ∈ Rn kuk ∞ ≤ δ}, then aTxδkxk 1 ≤ b E64b, Stanford University 10Draw the Venn diagrams for each of these combinations of the sets A, B, C We assume for each of these, that the intersection of A, B, and C is nonempty In each picture, the toned area represents the set in question a) A ∩ (B ∪ C) b) AC ∩ BC ∩ CC c) (A – B) ∪ (A – C) ∪ (B – C) Problem Eight (1722) Can you conclude that APROPERTIES OF LOGARITHMS If b, a, and c are positive real numbers, 56 , and n is a real number, then 1 Product 078 0 8 2 Quotient 9



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B u s L i n i e 50 F a h rp l ä n e Ab f a h r z eit en in R ich t u n g B a sel E u r o a ir p o r t Mo n t a g 0 0 1 0 2 3 5 0 Dien st a g 0 0 1 0 2 3 5 0 Mit t w o ch 0 0 1 0 2 3 5 0 Do n n er st a g 0 0 1 0 2 3 5 0 F r eit a g 0 0 1 0 2 3 5 0 Sa mst a g 0 0 1 0 2 3 5 0( B ) 306 C M 2 ( C ) 312 C M 2 ( D ) 316 C M 2 S o l u t i o n ( B ) 6 A B C D i s a q u ad r i l at e r al w i t h A B =9 c m, B C =40 c m, C D =28 c m, D A =15Solution The first step is to choose an expression for u We choose u = 3x2 4 because then du = 6xdx, and we already have du in the integrand Write the integral in terms of u ∫6x(3x2 4)4dx = ∫u4du Remember that du is the derivative of the expression chosen for u, regardless of what is inside the integrand




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27 Tangent Planes to Level Surfaces Suppose S is a surface with equation F(x, y, z) = k, that is, it is a level surface of a function F of three variables, and let P(x 0, y 0, z 0) be a point on S Let C be any curve that lies on the surface S and passes through the point PRecall that the curve C is described by a continuous vector function r(t) = 〈x(t), y(t), z(t)〉Z b a f(x), as some authors do (7) Z d c f(u)du = Z b a f(u(x)) du dx dx, u = u(x), c = u(a), d = u(b) change of variables formula In words, we can change the variable from u to x, provided we (i) express du in terms of dx;For any unit vector, u =〈u x,u y〉let If this limit exists, this is called the directional derivative of f at the point (a,b) in the direction of u Theorem Let f be differentiable at the point (a,b) Then f has a directional derivative at (a,b) in the direction of u u = u xi




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