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Standard Form-Mathematical Modeling and Simulation-Homework, Exercises of Mathematical Modeling and Simulation

This assignment was given at The LNM Institute of Information Technology by Dr. Sham Thakur for subject of Mathematical Modeling and Simulation. Its main points are: Convert, Model, Standard, Identify, Formulate, Differential, Partial, Equation

Typology: Exercises

2011/2012

Uploaded on 07/03/2012

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Mathematical Modeling & Simulation
HOME WORK # 1
Due Date: One week from date of distribution in the class.
1.1 Convert the following model into a standard form and identify its main features:
2
2
7.9
8.2
4.6
dt
yd
yy =
; y(0) = 0., y(1) = 6.
1.2 Formulate the following model into a standard form and identify its main features:
q
x
q
dt
dx
q=
1
; x(0) = 1.,
xz
dt
dq
q
=+
2
1
; q(0) = 1.,
42
2
2= xy
dt
zd
; z(0) = 1.,
1.3 Formulate the following model into a standard form and identify its main features:
x
dt
xd
dt
xd
dt
dx
xt 3015301530)3exp(15 2
2
3
3=++
;
with ,
0.0)0( =x0.1)0(
=
x, 1.0)0(
=
x, 40.14)9(
=
x.
1.4 Change this differential model into a standard form and find out its main features:
)(30tan85.1
3
xwx
dx
dy =
; with 0.0)0(
=
y
, 0.2)0(
=
y
,
and tabular form of w(x) is following:
x 0 10 20 30
w(x) 2 5 8 11
1.5 Re-formulate this partial differential equation based model into a standard form and
identify its main features:
)()1()1()1)(1()1( 2
2
2
2
xG
x
y
yby
x
y
cx
x
y
cxby
t
y
by +
+
+=
++
+
;
with given conditions.
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Mathematical Modeling & Simulation

HOME WORK # 1

Due Date: One week from date of distribution in the class.

1.1 Convert the following model into a standard form and identify its main features:

2

2

  1. 7
  2. 8

dt

d y

y y

; y(0) = 0., y(1) = 6.

1.2 Formulate the following model into a standard form and identify its main features:

q

x q dt

dx

q

; x(0) = 1.,

z x dt

dq

q

2

; q(0) = 1.,

2

2

xy = dt

d z

; z(0) = 1.,

1.3 Formulate the following model into a standard form and identify its main features:

x dt

d x

dt

dx

dt

dx 15 exp( 3 t ) 30 x 15 30 15 30 2

2

3

3

− − + + − − =

;

with ,

x ( 0 )= 0. 0 x ′( 0 )= 1. 0 ,

x ′′( 0 )=− 0. 1 ,

x ( 9 )= 14. 40 .

1.4 Change this differential model into a standard form and find out its main features:

  1. 85 tan 30 ( )

3

x w x dx

dy − − = ⎥ ⎦

; with

y ( 0 )= 0. 0 ,

y ′ ( 0 )= 2. 0 ,

and tabular form of w(x) is following:

x 0 10 20 30

w(x) 2 5 8 11

1.5 Re-formulate this partial differential equation based model into a standard form and

identify its main features:

2

2

2

2

G x x

y byy x

y cx x

y by cx t

y by + ∂

;

with given conditions.

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