head 1.37; access; symbols; locks www-data:1.37; strict; comment @# @; 1.37 date 2005.03.07.15.34.15; author www-data; state Exp; branches; next 1.36; 1.36 date 2004.03.15.10.49.25; author www-data; state Exp; branches; next 1.35; 1.35 date 2004.03.08.07.11.33; author www-data; state Exp; branches; next 1.34; 1.34 date 2004.03.08.07.11.08; author www-data; state Exp; branches; next 1.33; 1.33 date 2004.02.17.09.52.38; author www-data; state Exp; branches; next 1.32; 1.32 date 2004.02.17.09.52.12; author www-data; state Exp; branches; next 1.31; 1.31 date 2004.02.17.09.51.20; author www-data; state Exp; branches; next 1.30; 1.30 date 2004.02.17.09.40.56; author www-data; state Exp; branches; next 1.29; 1.29 date 2004.02.17.09.40.19; author www-data; state Exp; branches; next 1.28; 1.28 date 2004.02.17.09.39.33; author www-data; state Exp; branches; next 1.27; 1.27 date 2004.02.17.09.37.29; author www-data; state Exp; branches; next 1.26; 1.26 date 2004.02.17.09.35.46; author www-data; state Exp; branches; next 1.25; 1.25 date 2004.02.17.09.31.38; author www-data; state Exp; branches; next 1.24; 1.24 date 2004.02.17.09.19.01; author www-data; state Exp; branches; next 1.23; 1.23 date 2004.02.17.09.17.46; author www-data; state Exp; branches; next 1.22; 1.22 date 2004.02.17.09.14.07; author www-data; state Exp; branches; next 1.21; 1.21 date 2004.02.17.09.13.38; author www-data; state Exp; branches; next 1.20; 1.20 date 2004.02.17.09.13.23; author www-data; state Exp; branches; next 1.19; 1.19 date 2004.02.17.08.41.09; author www-data; state Exp; branches; next 1.18; 1.18 date 2004.02.17.08.40.45; author www-data; state Exp; branches; next 1.17; 1.17 date 2004.02.17.08.40.17; author www-data; state Exp; branches; next 1.16; 1.16 date 2004.02.17.08.39.41; author www-data; state Exp; branches; next 1.15; 1.15 date 2004.02.17.08.39.35; author www-data; state Exp; branches; next 1.14; 1.14 date 2004.02.17.08.32.49; author www-data; state Exp; branches; next 1.13; 1.13 date 2004.02.17.08.32.35; author www-data; state Exp; branches; next 1.12; 1.12 date 2004.02.17.08.31.48; author www-data; state Exp; branches; next 1.11; 1.11 date 2004.02.17.08.31.20; author www-data; state Exp; branches; next 1.10; 1.10 date 2004.02.17.08.27.54; author www-data; state Exp; branches; next 1.9; 1.9 date 2004.02.17.08.27.50; author www-data; state Exp; branches; next 1.8; 1.8 date 2004.02.17.08.27.38; author www-data; state Exp; branches; next 1.7; 1.7 date 2004.02.17.08.27.32; author www-data; state Exp; branches; next 1.6; 1.6 date 2004.02.17.08.26.11; author www-data; state Exp; branches; next 1.5; 1.5 date 2004.02.17.08.26.00; author www-data; state Exp; branches; next 1.4; 1.4 date 2004.02.17.08.24.19; author www-data; state Exp; branches; next 1.3; 1.3 date 2004.02.17.08.24.02; author www-data; state Exp; branches; next 1.2; 1.2 date 2004.02.17.08.23.32; author www-data; state Exp; branches; next 1.1; 1.1 date 2004.02.17.08.10.43; author www-data; state Exp; branches; next ; desc @site.py @ 1.37 log @site.py @ text @ How to make Something That makes

How to make Something That makes (almost) Anything MAS 961, 2004

XU SUN 2004


Theme of the class

Introducing Myself

Assignments 1, 2, 3 sputtering

Projects

Modela

modela
edit @ 1.36 log @site.py @ text @d26 3 d31 2 a32 1 @ 1.35 log @site.py @ text @d21 2 a22 1 1, 2, 3

@ 1.34 log @site.py @ text @d21 1 a21 1 1, 23

@ 1.33 log @site.py @ text @d1 1 a1 6

1. Rapid fabrication and test of prototyping microstrip circuit

There are two parts: the first is fabrication of microstrip or tripline circuit; the second is test of the circuits. In the first part, we can develop the present machine that can make printed circuit board; In the second part, I want to design a low cost simple analyzer to quick test s-parameter. d3 7 d11 1 a11 5

2. 2D self-assembly

In order to achieve self-assembly of nanoscale objects such as electrical devices or biological materials, I want to build a prototyping fab-line or fab-table, that can make arbitrarily complex 2D patterns. d13 11 a23 12

3. Smell propagator and synthesizer

We are watching TV, surfing on internet all the day. That is because at transmitter the information in images and sound can be encoded as digital form, reproduced easily and propagated as electromagnetic waves. At another end, human sensor systems such as vision sensors and auditory sensors can seamlessly detect the received signal. But sense of smell seems a different story. It is basically chemical. However, recent research revealed the olfactory sensor may be detecting the different frequency of molecular vibration to generate sense of smell. I want to explore the possibility to encode smell information in digital bits and transform the digital bits to physical smell information. d25 1 d27 1 @ 1.32 log @site.py @ text @d15 1 a15 1

3. Smell detector and synthesizer @ 1.31 log @site.py @ text @d11 3 a13 1 electrical devices or biological materials, I want to build a prototyping fab-line or fab-table, that can @ 1.30 log @site.py @ text @d11 1 a11 1 electrical devices or biological materials, we want to build a prototyping fab-line @ 1.29 log @site.py @ text @d7 1 a7 3

@ 1.28 log @site.py @ text @d8 1 a8 1 @ 1.27 log @site.py @ text @d7 3 a9 1 @ 1.26 log @site.py @ text @d10 2 a11 1

In order to achieve self-assembly of nanoscale objects such as electrical devices or biological materials, we want to build a fab-line @ 1.25 log @site.py @ text @d18 2 a19 2 received waves. But sense of smell seems a different story. It is basically chemical. However, recent research revealed the olfactory d21 4 a24 1 vibration to generate sense of smell. chemical signal is transformed to electrical signal. @ 1.24 log @site.py @ text @d10 1 a10 1

In order to achieve self-assembly of nanoscale devices, the first step is to experiment on @ 1.23 log @site.py @ text @d6 1 a6 1 vector network analyzer to quick test s-parameter. @ 1.22 log @site.py @ text @d6 1 a6 1 vector network analyzer to fast test s-parameter. @ 1.21 log @site.py @ text @d2 4 a5 2 There are two parts: the first is fabrication of microstrip or tripline circuit; the second is test of the circuits. In the first part, we can develop the present machine that can make printed circuit board; In the second part, I want to design a low cost simple @ 1.20 log @site.py @ text @d2 4 a5 1 There are two parts: the first is fabrication of microstrip or tripline circuit; the second is test of the circuits. In the first part, we can develop the present machine that can make printed circuit board; In the second part, I want to design a low cost simple vector network analyzer to fast test s-parameter. @ 1.19 log @site.py @ text @d1 5 a5 2

1. microfluidic

2. self-assembly @ 1.18 log @site.py @ text @d4 1 a4 1 3. Smell detector and synthesizer @ 1.17 log @site.py @ text @d1 2 a2 2 1. microfluidic 2. self-assembly @ 1.16 log @site.py @ text @a4 1

Basic Idea: @ 1.15 log @site.py @ text @d5 1 a5 1

Basic Idea: @ 1.14 log @site.py @ text @d1 3 d5 1 a5 1 Basic Idea: d14 1 a14 1 vibration to generate sense of smell. @ 1.13 log @site.py @ text @d8 4 a11 1 received waves. But sense of smell seems a different story. It is basically chemical. However, recent research revealed the olfactory sensor may be detecting the different frequency of molecular vibration to generate sense of smell. @ 1.12 log @site.py @ text @d7 2 a8 5 vision sensors and auditory sensors can seamlessly match the received waves. But sense of smell seems a different story. It is basically chemical. However, recent research revealed the olfactory sensor may be detecting the different frequency of molecular vibration to generate sense of smell. @ 1.11 log @site.py @ text @d3 1 a3 1

We are watching TV, surfing on internet all the day. That is d11 1 a11 1 generate sense of smell. @ 1.10 log @site.py @ text @d3 9 a11 1

We are watching TV, surfing on internet all the day. That is because at transmitter the information in images and sound can be encoded as digital form, reproduced easily and propagated as electromagnetic waves. At another end, human sensor systems such as vision sensors and auditory sensors can seamlessly match the received waves. But sense of smell seems a different story. It is basically chemical. However, recent research revealed the olfactory sensor may be detecting the different frequency of molecular vibration to generate sense of smell. @ 1.9 log @site.py @ text @d3 1 a3 2

We are watching TV, surfing on internet all the day. That is because at transmitter the information in images and sound can be encoded as digital form, reproduced easily and propagated as electromagnetic waves. At another end, human sensor systems such as vision sensors and auditory sensors can seamlessly match the received waves. But sense of smell seems a different story. It is basically chemical. However, recent research revealed the olfactory sensor may be detecting the different frequency of molecular vibration to generate sense of smell. @ 1.8 log @site.py @ text @d4 1 a4 1 We are watching TV, surfing on internet all the day. That is because at transmitter the information in images and sound can be encoded as digital form, reproduced easily and propagated as electromagnetic waves. At another end, human sensor systems such as vision sensors and auditory sensors can seamlessly match the received waves. But sense of smell seems a different story. It is basically chemical. However, recent research revealed the olfactory sensor may be detecting the different frequency of molecular vibration to generate sense of smell. a5 1 @ 1.7 log @site.py @ text @d3 2 a4 1

We are watching TV, surfing on internet all the day. That is because at transmitter the information in images and sound can be encoded as digital form, reproduced easily and propagated as electromagnetic waves. At another end, human sensor systems such as vision sensors and auditory sensors can seamlessly match the received waves. But sense of smell seems a different story. It is basically chemical. However, recent research revealed the olfactory sensor may be detecting the different frequency of molecular vibration to generate sense of smell. @ 1.6 log @site.py @ text @d3 2 a4 2

We are watching TV, surfing on internet all the day. That is because at transmitter the information in images and sound can be encoded as digital form, reproduced easily and propagated as electromagnetic waves. At another end, human sensor systems such as vision sensors and auditory sensors can seamlessly match the received waves. But sense of smell seems a different story. It is basically chemical. However, recent research revealed the olfactory sensor may be detecting the different frequency of molecular vibration to generate sense of smell.

@ 1.5 log @site.py @ text @d4 1 a4 1 @ 1.4 log @site.py @ text @d3 1 a3 1 We are watching TV, surfing on internet all the day. That is because at transmitter the information in images and sound can be encoded as digital form, reproduced easily and propagated as electromagnetic waves. At another end, human sensor systems such as vision sensors and auditory sensors can seamlessly match the received waves. But sense of smell seems a different story. It is basically chemical. However, recent research revealed the olfactory sensor may be detecting the different frequency of molecular vibration to generate sense of smell. @ 1.3 log @site.py @ text @d3 1 a3 2 We are watching TV, surfing on internet all the day. That is
because at transmitter the information in images and sound can be encoded as digital form, reproduced easily and propagated as electromagnetic waves. At another end, human sensor systems such as vision sensors and auditory sensors can seamlessly match the received waves. But sense of smell seems a different story. It is basically chemical. However, recent research revealed the olfactory sensor may be detecting the different frequency of molecular vibration to generate sense of smell. @ 1.2 log @site.py @ text @d3 2 a4 1 We are watching TV, surfing on internet all the day. That is because at transmitter the information in images and sound can be encoded as digital form, reproduced easily and propagated as electromagnetic waves. At another end, human sensor systems such as vision sensors and auditory sensors can seamlessly match the received waves. But sense of smell seems a different story. It is basically chemical. However, recent research revealed the olfactory sensor may be detecting the different frequency of molecular vibration to generate sense of smell. @ 1.1 log @site.py @ text @d1 5 a5 2 3. Smell synthesizer Basic Idea: @