Monday, May 4, 2009

Make a solar cell in your kitchen

We found this article on http://www.scitoys.com/scitoys/scitoys/echem/echem2.html

It was super, super, super cool, so we thank them for allowing us to post it at TheSolarPlan.com! This is nifty!

A solar cell is a device for converting energy from the sun into electricity. The high-efficiency solar cells you can buy at Radio Shack and other stores are made from highly processed silicon, and require huge factories, high temperatures, vacuum equipment, and lots of money.

If we are willing to sacrifice efficiency for the ability to make our own solar cells in the kitchen out of materials from the neighborhood hardware store, we can demonstrate a working solar cell in about an hour.

Our solar cell is made from cuprous oxide instead of silicon. Cuprous oxide is one of the first materials known to display the photoelectric effect, in which light causes electricity to flow in a material.

Thinking about how to explain the photoelectric effect is what led Albert Einstein to the Nobel prize for physics, and to the theory of relativity.

Materials you will need

The solar cell is made from these materials:
A sheet of copper flashing from the hardware store. This normally costs about $5.00 per square foot. We will need about half a square foot.
Two alligator clip leads.
A sensitive micro-ammeter that can read currents between 10 and 50 microamperes. Radio Shack sells small LCD multimeters that will do, but I used a small surplus meter with a needle.
An electric stove. My kitchen stove is gas, so I bought a small one-burner electric hotplate for about $25. The little 700 watt burners probably won't work -- mine is 1100 watts, so the burner gets red hot.
A large clear plastic bottle off of which you can cut the top. I used a 2 liter spring water bottle. A large mouth glass jar will also work.
Table salt. We will want a couple tablespoons of salt.
Tap water.
Sand paper or a wire brush on an electric drill.
Sheet metal shears for cutting the copper sheet.






How to build the solar cell

My burner looks like this:

Make your own solar panel



The first step is to cut a piece of the copper sheeting that is about the size of the burner on the stove. Wash your hands so they don't have any grease or oil on them. Then wash the copper sheet with soap or cleanser to get any oil or grease off of it. Use the sandpaper or wire brush to thoroughly clean the copper sheeting, so that any sulphide or other light corrosion is removed.

Next, place the cleaned and dried copper sheet on the burner and turn the burner to its highest setting.

Make your own solar panel

As the copper starts to heat up, you will see beautiful oxidation patterns begin to form. Oranges, purples, and reds will cover the copper.


Make your own solar panel




As the copper gets hotter, the colors are replaced with a black coating of cupric oxide. This is not the oxide we want, but it will flake off later, showing the reds, oranges, pinks, and purples of the cuprous oxide layer underneath.


Make your own solar panel



The last bits of color disappear as the burner starts to glow red.


Make your own solar panel




When the burner is glowing red-hot, the sheet of copper will be coated with a black cupric oxide coat. Let it cook for a half an hour, so the black coating will be thick. This is important, since a thick coating will flake off nicely, while a thin coat will stay stuck to the copper.


Make your own solar panel




After the half hour of cooking, turn off the burner. Leave the hot copper on the burner to cool slowly. If you cool it too quickly, the black oxide will stay stuck to the copper.


How to make your own solar panel




As the copper cools, it shrinks. The black cupric oxide also shrinks. But they shrink at different rates, which makes the black cupric oxide flake off.


copper for solar panel




The little black flakes pop off the copper with enough force to make them fly a few inches. This means a little more cleaning effort around the stove, but it is fun to watch.



copper corrosion for solar panel



When the copper has cooled to room temperature (this takes about 20 minutes), most of the black oxide will be gone. A light scrubbing with your hands under running water will remove most of the small bits. Resist the temptation to remove all of the black spots by hard scrubbing or by flexing the soft copper. This might damage the delicate red cuprous oxide layer we need to make to solar cell work.



The rest of the assembly is very simple and quick.

Cut another sheet of copper about the same size as the first one. Bend both pieces gently, so they will fit into the plastic bottle or jar without touching one another. The cuprous oxide coating that was facing up on the burner is usually the best side to face outwards in the jar, because it has the smoothest, cleanest surface.

Attach the two alligator clip leads, one to the new copper plate, and one to the cuprous oxide coated plate. Connect the lead from the clean copper plate to the positive terminal of the meter. Connect the lead from the cuprous oxide plate to the negative terminal of the meter.

Now mix a couple tablespoons of salt into some hot tap water. Stir the saltwater until all the salt is dissolved. Then carefully pour the saltwater into the jar, being careful not to get the clip leads wet. The saltwater should not completely cover the plates -- you should leave about an inch of plate above the water, so you can move the solar cell around without getting the clip leads wet.



solar panel energy production



The photo above shows the solar cell in my shadow as I took the picture. Notice that the meter is reading about 6 microamps of current.

The solar cell is a battery, even in the dark, and will usually show a few microamps of current.





electricity production of solar cell



The above photo shows the solar cell in the sunshine. Notice that the meter has jumped up to about 33 microamps of current. Sometimes it will go over 50 microamps, swinging the needle all the way over to the right.



How does it do that?



Cuprous oxide is a type of material called a semiconductor. A semiconductor is in between a conductor, where electricity can flow freely, and an insulator, where electrons are bound tightly to their atoms and do not flow freely.

In a semiconductor, there is a gap, called a bandgap between the electrons that are bound tightly to the atom, and the electrons that are farther from the atom, which can move freely and conduct electricity.

Electrons cannot stay inside the bandgap. An electron cannot gain just a little bit of energy and move away from the atom's nucleus into the bandgap. An electron must gain enough energy to move farther away from the nucleus, outside of the bandgap.

Similarly, an electron outside the bandgap cannot lose a little bit of energy and fall just a little bit closer to the nucleus. It must lose enough energy to fall past the bandgap into the area where electrons are allowed.

When sunlight hits the electrons in the cuprous oxide, some of the electrons gain enough energy from the sunlight to jump past the bandgap and become free to conduct electricity.

The free electrons move into the saltwater, then into the clean copper plate, into the wire, through the meter, and back to the cuprous oxide plate.

As the electrons move through the meter, they perform the work needed to move the needle. When a shadow falls on the solar cell, fewer electrons move through the meter, and the needle dips back down.



A note about power

The cell produces 50 microamps at 0.25 volts.
This is 0.0000125 watts (12.5 microwatts).
Don't expect to light light bulbs or charge batteries with this device. It can be used as a light detector or light meter, but it would take acres of them to power your house.

The 0.0000125 watts (12.5 microwatts) is for a 0.01 square meter cell, or 1.25 milliwatts per square meter. To light a 100 watt light bulb, it would take 80 square meters of cuprous oxide for the sunlit side, and 80 square meters of copper for the dark electrode. To run a 1,000 watt stove, you would need 800 square meters of cuprous oxide, and another 800 square meters of plain copper, or 1,600 square meters all together. If this were to form the roof of a home, each home would be 30 meters long and 30 meters wide, assuming all they needed electricity for was one stove.

There are 17,222 square feet in 1,600 square meters. If copper sheeting costs $5 per square foot, the copper alone would cost $86,110.00 USD. Making it one tenth the thickness can bring this down to $8,611.00. Since you are buying in bulk, you might get it for half that, or about $4,300.00.

If you used silicon solar panels costing $4 per watt, you could run the same stove for $4,000.00. But the panels would only be about 10 square meters.

Or, for about a dollar, you can build a solar stove out of aluminum foil and cardboard. For about $20, you can build a very nice polished aluminum parabolic solar cooker.

Wednesday, April 29, 2009

Google Talk Tips & Tricks

Some people say Google Talk is nice because of its minimalistic design, but they coudn't use an Instant Messenger that doesn't have smileys and font customization. Here are some tips that will make your work with Google Talk better.

Keyboard shortcuts

* CTRL + Mousewheel up/down: Change the font size in a conversation window.
* CTRL + E: Center text
* CTRL + R: Right justify text
* CTRL + L or CTRL+J: Left justify text
* F9: Open Gmail to send an email to the person you talk to
* F11: Start a call
* F12: Stop the current call
* ESC: Close the current window

Conversation

* Some smileys are converted by Google Talk: :-| :-O :-x :-P :-D ;-) :-( :-) B-) :'( :| :O :x :P :D :) :( :)
* To write bold text, type *your gtalk message*
* To write italic text, type _your gtalk message_

Startup parameters (go to Start/Run and type "c:\Program Files\Google\Google Talk\googletalk.exe" /one_parameter_from_the_list_below)

* /nomutex: allows you to open more than one instance of Google Talk.
* /register: write Google Talk settings in the registry.
* /checkupdate: check for new version.
* /factoryreset: revert to default settings.
* /mailto email@gmail.com: send an email with Gmail.
* /diag: start Google Talk in diagnostic mode.

Monday, April 6, 2009

HSDPA 3.5G GPRS USB Modem for sale only Rs. 9,990/=



The Mobile Connect USB Modem is a fast and simple way to work on the move. Just plug it into your laptop to connect to the internet and your email – quickly and easily. Take advantage of our 3.5G network and surf at mobile broadband speeds to download web pages, emails and attachments quicker and faster than ever. It is also a flexible and cost-effective way to help you work on the move. And with our great value roaming service in over 100 countries, that includes international travel too.


HSPA/UMTS 2100MHz and GSM/GPRS/EDGE 900/1800/1900 MHz

Connect at Broadband speeds

Operating system: supporting Windows 2000 and Windows XP

Standard Mini USB interface

Easy to use – No CD required

Plug and play

E220 Updater Help Guide

Technical Specifications



Features

  • HSPA/UMTS 2100MHz and GSM/GPRS/EDGE 900/1800/1900 MHz
  • HSPA packet data service with a maximum transmission rate of 7.2Mbps
  • UMTS PS domain data service with a maximum transmission rate of 384kbp
  • EDGE packet data service with a maximum transmission rate of 236.8kbps
  • GPRS packet data service with a maximum transmission rate of 53.6kbps
  • Standard Mini USB interface, auto installation, convenient for use
  • Operating system: supporting Windows 2000 and Windows XP

Hardware Specifications

ITEM DESCRIPTION
Technical Standard HSPA/UMTS: 3GPP R5 2004/06
GSM/GPRS/EDGE: 3GPP R99 2003/12
Operating Frequency HSPA/UMTS 2100MHz: 1920~1980 MHz/2110~2170 MHz (Uplink/Downlink)
GSM/GPRS/EDGE 900MHz: 880~915MHz/925~960 MHz (Uplink /Downlink)
GSM/GPRS/EDGE 1800MHz: 1710~1785MHz/1805~1880 MHz (Uplink/Downlink)
GSM/GPRS/EDGE 1900MHz: 1850~1910MHz/1930~ 1990MHz (Uplink/Downlink)
External
Interface
Mini USB interface: supporting USB 2.0 Full Speed
LED: indicating the status of the USB Modem
Antenna: Internal antenna
SIM/USIM card: standard 6 PIN SIM card interface
Maximum Power
Consumption
2.75W
Power Supply 5V / 550mA (Max)
Dimensions 89.37 mm (D) x 42.61 mm (W) x 14.5 mm (H)
Weight <>
Temperature Operating temperature: -10C ~ +55C
Warehouse temperature: - 40C ~ +70C

Software Specifications

ITEM DESCRIPTION
Software Installation Auto installation
Standard USB interface
System requirement CPU: Pentium 500MHz or above
Memory: 128MB RAM or above
Hard Disk: 50MB free disk space
Operating system: Windows 2000 and Windows XP
Display resolution: 800*600 pixels or above (1024*768 is recommended)

Dashboard Specifications

ITEM DESCRIPTION
Other modes Network connection settings: Auto/Manual network selection and registration
Network status display (including signal strength, operator's name, system mode, etc.)
Selection of network connection types (3G preferred, GPRS referred, 3.5G only, GPRS only)
PIN management: PIN1 authentication and modification
PUK1 unlock

Price - Rs. 9,990/- (Inclusive of Taxes)
1 year comprehensive warranty. All inclusive price.

Inquiries on :077 7 678 678

Thursday, April 2, 2009

THE BEST SOLAR POWER SYSTEM




Build your own solar power system

You can build a great looking solar panel for as little as $200 - Most of these parts can be found around your home or at the hardware store!
You can use this system to power up basically any appliance you have in your home: fridge, washing machine, computer, TVs, lights.Moreover, you can even take this with yourself when you go camping, because it's highly portable.



The Earth4Energy DIY kit has full instructions and now comes with video lessons to help you build your first solar panel in a weekend. Knowing how to create your own solar energy will give you the freedom to go fully off grid. Or you can stay connected and get paid by the electric company when your meter runs backwards.


Build your own wind power system


Wind power is a great backup for when you have long periods of cloudy days. So it makes sense to build a wind generator too!A few cheap items from your hardware store and a couple of hours can give you free green energy from your very own windmill.I have written my instructions in very simple english so that anybody can build this power producing windmill.



This windmill can power your household appliances and you can make it for less than $200! In fact, you can build my windmill for as little as $100 by using my secret methods that very few people know about!Not only will you easily make this on your own, it will actually look like a professional built it! This really is THE guide to making a quality windmill. In fact, a few Earth4Energy members are actually selling their homemade windmills for a nice profit!


Store your energy... For free!


On top of all the quality material already in the Earth4Energy kit I am also going to reveal to you where to get your batteries for free. These are high quality deep cycle batteries which are perfect for storing energy produced by your alternative energy system.


In the photo to the left you can see a couple of the batteries I am talking about.


Buying these new can cost you up to $600! But with my secret's you can get these for free just like I do!. You will also learn my secret places to get all the parts you need to build your solar and wind power generator which will really save you a ton of money!

DRACEANA SANDRIANA -LUCKY BAMBOO


Name : Ribbon Plant

Scientific name : Dracaena Sanderiana (Green, Silver, Gold)

Family : LILIACEAE

Place of Origin : Cameroon and Congo

Lucky bamboo is just sections of older stems, cut into various lengths, that develop roots at the lower joints and leaves from the upper joints. The stems themselves will not grow longer, but new offshoots could eventually become elongated stems.

Growing : Since lucky Bamboo does not have much pest problems, grown under full cover of the net (Slan) , for health concern of growers and customers therefore NO pesticides are used. Only basic organic fertilizers to help make the lucky bamboo grow better are used in our farms.

Phytosanitary Certificate : Since we are quite comfortable with our products. Customer can always ask for Phytosanitary Certificate to accompanied with the shipment.

Winter Time : We can prepare winter pack for shipping to customer in the cold area during winter time. Therefore we can ship the lucky bamboo to you all year round.

How long will it take to grow Lucky Bamboo ? and how long will it take for each step of the stem to grow. : Generally Lucky Bamboo will grow around 50 cm in 6 months. With approximately 10-12 steps. Therefore each step should take approximately 2-3 weeks to grow. This is under normal condition. Anyway it can grow faster with appropriate climate, soil, water and fertilizer. And can also grow much slower in a cold environment.

How to make Curly Bamboo : Curly Bamboo are not grown like what you see. Actually, lucky bamboo only grows straight. Therefore it need some special growing techniques to make it curl. There are several method to make it curl. one is that the growers keep the plants in a greenhouse, cover 3 sides so that only one side has bright light and let the plants grow naturally toward the light. Then manually rotate the plants periodically to produce the curl. Normally it take more than 6 month to make one loop or wavely curly bamboo for larger or more curly ones will take longer. The other one is using wire. But all methods are labour intensive processes.

Lucky Bamboo Flowers !! : Many people thought Lucky Bamboo never give flowers. Well, see the following pictures !!


Dracena Messengeana- Ti Tree plants

Dracena Messengeana- Ti Tree plants

Dracena Messengeana- Ti Tree plants

Sandriana- Plain, silver and two tone in towers

Sandriana- Plain, silver and two tone in top cuts

Sandriana- Plain, silver and two tone in towers

Sandriana- Plain, silver and two tone in Braided form

Sandriana- Plain, silver and two tone in top cut long stems

for floral decoration and display.

Lucky bamboo (dracaena sandriana)

Lucky bamboo (dracaena sandriana)

Lucky Bamboo

(Dracaena Sanderiana)


Description: Plante à feuillage décoratif. Tige droite ou spiralée poussant les pieds dans l'eau.Vous pouvez le trouver avec de la cire à son extrémité supérieure, ce qui l'empêche de grandir car il peut atteindre 2 m de hauteur. Symbole porte bonheur en Asie.

Température: minimum 15°C

Arrosage: Culture dans l'eau (vase)

Exposition: Pleine lumière sans soleil direct

Conseils: Ne le changer pas de place trop souvent car il n'aime pas ça!

Dracaena sanderiana

File:Green plants.jpg


Dracaena sanderiana, known as Ribbon Dracaena, Lucky Bamboo, Belgian Evergreen or sometimes Ribbon Plant, is a species of Dracaena, native to Cameroon in tropical west Africa. It is one of a group of small, shrubby species with slender stems and flexible strap-shaped leaves that grow as understory plants in rainforests. It is an upright shrub growing to 1.5 m tall, with leaves 15-25 cm long and 1.5-4 cm broad at the base. It is marketed in the developed world as a Chinese decorative plant "Lucky Bamboo" (although unrelated to Bamboo and not native to Asia), propagated from short cuttings, usually in water.




Cultivation and uses

Dracaena sanderiana and related species are popular houseplants, with numerous cultivars sold. It can survive in many indoor conditions, but indirect lighting is best as direct sunlight can cause the leaves to turn yellow and burn.

Although it grows better in soil, it often is sold with the roots in water. The water should be completely changed every two weeks. The water should be bottled water, soft tap water with very little fluoride, or even water from a filtered, established aquarium. It does best in bright, indirect lighting and temperatures above 15 °C up to 25 °C.

Often in large chain pet shops it will be sold in black slitted pots rooted in rockwool submerged, stating it is an aquatic plant. While it will live for months like this, it will eventually rot unless the sprouts are allowed to grow above the surface.

Yellow or brown leaf edges may be caused by too much direct light, crowded roots, or fluoridated or chlorinated water, the latter of which can be prevented by leaving tap water exposed to the air for a day before plant use. Salty or softened water can also cause this.

Twisted shapes can be produced by rotating the plant with respect to gravity and directed light sources. This is difficult to achieve for most home users, but not impossible with a lot of spare time and a lot of patience.


Other useful information

Dracaena sanderiana in a more natural form, in this case at Ragunan Zoo, Jakarta, Indonesia.