Saturday, January 17, 2009

Periodic Table


Hi, all,

This week, we have gone through very briefly the development of the Periodic table. You might want to check this website out for more details.

There are many elements out there and they possess many interesting properties. One which you are very familar with is Hydrogen. Watch the following movie about Hydrogen:



Many more videos about the elements have been made by the University of Nottingham. Check them out!

Enjoy!

Tuesday, December 23, 2008



Cya guyz soon. Enjoy watever is left of the hols!

Friday, October 31, 2008

Accolades IV

Yoz everyone,

After a year of hardwork, we have survived this year.

Let's celebrate the success together!




Friday, October 3, 2008

Accolades III

Hi, all,

This is the ranking for the CA.

Congratulations to all. Do work harder for the coming EOY. Remb our aims!




Saturday, September 20, 2008

Application of Redox - Photochromatic lens

Hi,

You must have noticed that some of your friends wear glasses whose lenses change opacity under different lighting.

Nope, they are not from Hogwartz (unlike me, haha). This is the work of Redox Chemistry.

Basically, in their lenses, called photochromic lenses, silver chloride (AgCl) and copper(I) chloride (CuCl) crystals are added during the manufacturing of the glass while it is in the molten state and these crystals become uniformly embedded in the glass as it solidifies.

One characteristic of silver chloride is its suscepitibility to oxidation and reduction by light as described below.



The chloride ions are oxidized to produce chlorine atoms and an electron. The electron is then transferred to silver ions to produce silver atoms. These atoms cluster together and block the transmittance of light, causing the lenses to darken. This process occurs almost instantaneously. As the degree of "darkening" is dependent on the intensity of the light, these photochromic lenses are quite convenient and all but eliminate the need for an extra pair of sunglasses.

The photochromic process would not be useful unless it were reversible. The presence of copper (I) chloride reverses the darkening process in the following way. When the lenses are removed from light, the following reactions occur:


The chlorine atoms formed by the exposure to light are reduced by the copper ions, preventing their escape as gaseous atoms from the matrix. The copper(I) ion is oxidized to produce copper(II) ions, which then reacts with the silver atoms as shown.


The net effect of these reactions is that the lenses become transparent again as the silver and chloride atoms are converted to their original oxidized and reduced states.

Q. Identify the oxidising agents and reducing agents in both Eq 1 and 2.

Adapted from Oxidation/Reduction by Kapi'olani Community College.

Friday, August 29, 2008

Thanks!

Yoz guyz,

Thanks for all your cards, gifts, words of encouragement:



Enjoy the Sept hols, but dun forget to mug for you-know-wat-is-the-most-impt-subject.

Be prepared for presents from me via emails.

Cheers,
Mr Koh

Monday, August 4, 2008

Nitric Acid - A special one

Yoz,

We have been working on Acids for some time now.

What we know is that acid reacts with reactive metal (e.g. Zn, Mg, Ca) to form salt and hydrogen. The unreactive metals (e.g. Au, Cu) do not react with acids.

However Cu does react with nitric acid. Why? Because nitric acid is an oxidising agent as well. Read more about the nitric acid here.

Some terms you would be familiar would be: strong acid, acid concentration, etc.

You could also read about the 'strongest' acid which scientists have made. (see here) How is this acid contradicting what we discussed in class?

Carborane, part of the world’s strongest acid. [Atom color code: orange = boron, gray = carbon, green = chlorine, white = hydrogen.] Picture from ScienceDaily.com