Line 5: Line 5:
  
 
del=0.001
 
del=0.001
 +
 
t=0:del:0.1
 
t=0:del:0.1
  
 
y=sin(2*pi*330*t)%E
 
y=sin(2*pi*330*t)%E
 +
 
sound(y,1/del)
 
sound(y,1/del)
 +
 
pause(0.2)
 
pause(0.2)
 +
 
y1=sin(2*pi*330*t)%E
 
y1=sin(2*pi*330*t)%E
 +
 
sound(y1,1/del)
 
sound(y1,1/del)
 +
 
pause(0.2)
 
pause(0.2)
 +
 
y2=sin(2*pi*330*t)%E
 
y2=sin(2*pi*330*t)%E
 +
 
sound(y2,1/del)
 
sound(y2,1/del)
 +
 
pause(0.2)
 
pause(0.2)
 +
 
y3=sin(2*pi*396*t)%G
 
y3=sin(2*pi*396*t)%G
 +
 
sound(y3,1/del)
 
sound(y3,1/del)
 +
 
pause(0.2)
 
pause(0.2)
 +
 
y4=sin(2*pi*264*t)%C
 
y4=sin(2*pi*264*t)%C
 +
 
sound(y4,1/del)
 
sound(y4,1/del)
 +
 
pause(0.2)
 
pause(0.2)
 +
 
y5=sin(2*pi*330*t)%E
 
y5=sin(2*pi*330*t)%E
 +
 
sound(y5,1/del)
 
sound(y5,1/del)
 +
 
pause(0.2)
 
pause(0.2)
 +
 
y6=sin(2*pi*396*t)%G
 
y6=sin(2*pi*396*t)%G
 +
 
sound(y6,1/del)
 
sound(y6,1/del)
 +
 
pause(0.2)
 
pause(0.2)
 +
 
y7=sin(2*pi*264*t)%C
 
y7=sin(2*pi*264*t)%C
 +
 
sound(y7,1/del)
 
sound(y7,1/del)
 +
 
pause(0.2)
 
pause(0.2)
 +
 
y8=sin(2*pi*198*t)%Glow
 
y8=sin(2*pi*198*t)%Glow
 +
 
sound(y8,1/del)
 
sound(y8,1/del)
 +
 
pause(0.2)
 
pause(0.2)
 +
 
y9=sin(2*pi*165*t)%Elow
 
y9=sin(2*pi*165*t)%Elow
 +
 
sound(y9,1/del)
 
sound(y9,1/del)
 +
 
pause(0.2)
 
pause(0.2)
 +
 
y10=sin(2*pi*220*t)%Alow
 
y10=sin(2*pi*220*t)%Alow
 +
 
sound(y10,1/del)
 
sound(y10,1/del)
 +
 
pause(0.2)
 
pause(0.2)
 +
 
y11=sin(2*pi*247.5*t)%Blow
 
y11=sin(2*pi*247.5*t)%Blow
 +
 
sound(y11,1/del)
 
sound(y11,1/del)
 +
 
pause(0.2)
 
pause(0.2)
 +
 
y12=sin(2*pi*209*t)%A#low
 
y12=sin(2*pi*209*t)%A#low
 +
 
sound(y12,1/del)
 
sound(y12,1/del)
 +
 
pause(0.2)
 
pause(0.2)
 +
 
y13=sin(2*pi*220*t)%Alow
 
y13=sin(2*pi*220*t)%Alow
 +
 
sound(y13,1/del)
 
sound(y13,1/del)

Latest revision as of 06:40, 25 June 2009

%Name: Chen Chen %Hw1 for ECE301 %June 25 2009


del=0.001

t=0:del:0.1

y=sin(2*pi*330*t)%E

sound(y,1/del)

pause(0.2)

y1=sin(2*pi*330*t)%E

sound(y1,1/del)

pause(0.2)

y2=sin(2*pi*330*t)%E

sound(y2,1/del)

pause(0.2)

y3=sin(2*pi*396*t)%G

sound(y3,1/del)

pause(0.2)

y4=sin(2*pi*264*t)%C

sound(y4,1/del)

pause(0.2)

y5=sin(2*pi*330*t)%E

sound(y5,1/del)

pause(0.2)

y6=sin(2*pi*396*t)%G

sound(y6,1/del)

pause(0.2)

y7=sin(2*pi*264*t)%C

sound(y7,1/del)

pause(0.2)

y8=sin(2*pi*198*t)%Glow

sound(y8,1/del)

pause(0.2)

y9=sin(2*pi*165*t)%Elow

sound(y9,1/del)

pause(0.2)

y10=sin(2*pi*220*t)%Alow

sound(y10,1/del)

pause(0.2)

y11=sin(2*pi*247.5*t)%Blow

sound(y11,1/del)

pause(0.2)

y12=sin(2*pi*209*t)%A#low

sound(y12,1/del)

pause(0.2)

y13=sin(2*pi*220*t)%Alow

sound(y13,1/del)

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Abstract algebra continues the conceptual developments of linear algebra, on an even grander scale.

Dr. Paul Garrett