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delta = .0001;

h=0:delta:1; %half note

q=0:delta:.5; %quarter note

dq=0:delta:.75; %dotted quarter note

e=0:delta:.25; %eight note

Ee = sin(2*pi*329.63*E); %eighth note E

Eq = sin(2*pi*329.63*Q); %quarter note E

E3dq = sin(2*pi*164.81*dQ); %dotted quarter note E3

Ce = sin(2*pi*326.63*Q); %eighth note C

Cdq = sin(2*pi*326.63*dQ); %dotted quarter note C

Gh = sin(2*pi*392*H); %half note G

G3dq = sin(2*pi*196*dQ); %dotted quarter note G3

G3h = sin(2*pi*196*H); %half note G3

A3q = sin(2*pi*220*Q); %quarter note A3

B3q = sin(2*pi*246.94*Q); %quarter note B3

Bb3e = sin(2*pi*233.08*E); %eighth note Asharp3

notes = [Ee Eq Eq Ce Eq Gh G3h Cdq G3dq E3dq A3q B3q Bb3e A3q];

sound (notes,1/delta);

Alumni Liaison

Ph.D. on Applied Mathematics in Aug 2007. Involved on applications of image super-resolution to electron microscopy

Francisco Blanco-Silva