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Typology: Schemes and Mind Maps
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y 0 , y 1 , y 2 ,...
representing the amount of resources they have at each date
y = {y 0 , y 1 , y 2 ,... }
c 0 , c 1 , c 2 ,...
c = {c 0 , c 1 , c 2 ,... }
U (c)
which ranks consumption streams
rat
which may be positive or negative
ct + at+1 (1 + r)at + yt
with the understanding that a 0 = 0
constraint holds with equality
ct + at+1 = (1 + r)at + yt
R^2 c 0 + Rc 1 + c 2 + a 3 = R^2 y 0 + Ry 1 + y 2
c 0 +R ^1 c 1 +R ^2 c 2 +· · · +R T^ cT +R T^ aT +1 = y 0 +R ^1 y 1 +...+R TyT
X^ T
t=
R tct + R T^ aT +1 =
t=
R tyt
lim T!
R T^ aT +1 = 0
we get
X^1
t=
R tct =
t=
R tyt
(as opposed to their single-period budget constraint)
U (c)
subject to the budget constraint
p · c = p · y
U (c) + p · (y c)
@ @ct
U (c) = pt, t = 0, 1 , 2 ,...
c( , p)
p · c( , p) = p · y ) (y, p)
c⇤^ = c( (y, p), p)
via (income/wealth effects)
U (c) =
t=