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NCD Amoeba Three

 by djnippa
 
NCD Amoeba Three
  • Currently 6.78799
6.8Balanced%20Rating%3A%20%3Cb%20class%3D%22weighted_value%22%3E6.8%3C%2Fb%3E%3Cbr%2F%3EAverage%20Rating%3A%20%3Cb%20class%3D%22rating_value%22%3E6.9%3C%2Fb%3E%3Cbr%2F%3EClick%20for%20more%20information%20about%20this%20rating. 9 votes
11 downloads11%20downloads112 comments2%20comments2103 glyphs103%20glyphs103Clone of NCD Amoeba.
Probably the most usable of the five Amoeba Family Fonts. I've already used it on three projects so far.
I wanted a true (ish) slanted A. So I balanced the rest of the NCD Amoeba font to fit. It's more of an extended version of NCD Amoeba.Clone%20of%20NCD%20Amoeba.%0D%0AProbably%20the%20most%20usable%20of%20the%20five%20Amoeba%20Family%20Fonts.%20I%27ve%20already%20used%20it%20on%20three%20projects%20so%20far.%0D%0AI%20wanted%20a%20true%20%28ish%29%20slanted%20A.%20So%20I%20balanced%20the%20rest%20of%20the%20NCD%20Amoeba%20font%20to%20fit.%20It%27s%20more%20of%20an%20extended%20version%20of%20NCD%20Amoeba.

NCD Amoeba Two

 by djnippa
This FontStruction was selected by FontStruct staff.This%20FontStruction%20was%20selected%20by%20FontStruct%20staff.  
NCD Amoeba Two
  • Currently 6.59024
6.6Balanced%20Rating%3A%20%3Cb%20class%3D%22weighted_value%22%3E6.6%3C%2Fb%3E%3Cbr%2F%3EAverage%20Rating%3A%20%3Cb%20class%3D%22rating_value%22%3E6.6%3C%2Fb%3E%3Cbr%2F%3EClick%20for%20more%20information%20about%20this%20rating. 15 votes
68 downloads68%20downloads682 comments2%20comments2127 glyphs127%20glyphs127Based on NCD Amoeba, but using a quarter less grid space. This is also a slightly wider version. There are also more combinations of nearby dots.

NCD Ameoba is based on the molecular separation of two biological cells, around a dot matrix format.
For simple unicellular organisms such as the amoeba, one cell division is equivalent to reproduction - an entire new organism is created!Based%20on%20NCD%20Amoeba%2C%20but%20using%20a%20quarter%20less%20grid%20space.%20This%20is%20also%20a%20slightly%20wider%20version.%20There%20are%20also%20more%20combinations%20of%20nearby%20dots.%0D%0A%0D%0ANCD%20Ameoba%20is%20based%20on%20the%20molecular%20separation%20of%20two%20biological%20cells%2C%20around%20a%20dot%20matrix%20format.%0D%0AFor%20simple%20unicellular%20organisms%20such%20as%20the%20amoeba%2C%20one%20cell%20division%20is%20equivalent%20to%20reproduction%20-%20an%20entire%20new%20organism%20is%20created%21

NCD Amoeba

 by djnippa
This FontStruction was selected by FontStruct staff.This%20FontStruction%20was%20selected%20by%20FontStruct%20staff.  
NCD Amoeba
  • Currently 6.58515
6.6Balanced%20Rating%3A%20%3Cb%20class%3D%22weighted_value%22%3E6.6%3C%2Fb%3E%3Cbr%2F%3EAverage%20Rating%3A%20%3Cb%20class%3D%22rating_value%22%3E6.6%3C%2Fb%3E%3Cbr%2F%3EClick%20for%20more%20information%20about%20this%20rating. 22 votes
68 downloads68%20downloads688 comments8%20comments8113 glyphs113%20glyphs113A favorite of 1 userA%20favorite%20of%201%20user1Based on the molecular separation of two biological cells around a dot matrix pattern.
For simple unicellular organisms such as the amoeba, one cell division is equivalent to reproduction - an entire new organism is created!Based%20on%20the%20molecular%20separation%20of%20two%20biological%20cells%20around%20a%20dot%20matrix%20pattern.%0D%0AFor%20simple%20unicellular%20organisms%20such%20as%20the%20amoeba%2C%20one%20cell%20division%20is%20equivalent%20to%20reproduction%20-%20an%20entire%20new%20organism%20is%20created%21

Genetic Code

 by EcoRII
 
Genetic Code
  • Currently 0
0 votes
Last edit: 04.08.2011
Category: -
2 downloads2%20downloads299 glyphs99%20glyphs99Ever dream of writing in genetic code? Now it is possible (Sort of). 
How? Cells make up anything living. A lot of the functions in a cell, which are required for a cell to survive (and function normally in a multicellular organism) are carried out by complex molecules called proteins. There are 1000’s of proteins in a typical cell, and each protein has a specific, unique shape that defines what function they are going to perform in a cell. Proteins are made by cells, using 20 different building blocks called amino acids. These amino acids are joined in a long chain, and folded up to give each protein its unique structure. Cells make proteins using instructions written in stretches of DNA called genes. The instructions are written in DNA using four “letters” called nucleotides (A,T,G, and C). To make a protein, the gene first has to be rewritten into another molecule called RNA (again, using four “letters”, this time A, U (instead of T), G, and C). This happens in the cell nucleus, or if the cell is a prokaryote (lacks a nucleus), the nucleoid (where the nucleus could have been). The RNA molecule is translated into a protein in a cell structure called the ribosome. For that to happen, the letters on the RNA molecule are read off in bunches of three (called codons), and the order of the three letters will signal for a particular amino acid to be added to the growing chain of amino acids. The sequence of amino acids on the chain, as well as the unique properties of each amino acid determine how the protein will fold, and ultimately, what function the protein will carry out. 
How does this font work? Well, scientists use a one – letter abbreviation for each amino acid when recording the structure of a protein. Since using a one-letter abbreviation for each amino acid requires 20 letters… Well, that covers just about the entire alphabet. To create the code you could type with, and in such a way that each letter is not obvious, each letter you see on the keyboard is reverse translated into a DNA sequence of three DNA “letters” (for curious scientists out there, the antisense strand of DNA is used).  Some letters are not used for amino acids. Due to this problem, the letters closest to those not used are back-translated instead. The problem letters are listed with the substitute in parentheses - B (R), J (L), O (Q), U (V), X (K), and Z (S). Simply hit the normal keys on your keyboard, and watch your message being encrypted as you write. Although all punctuation marks are present, if you are going for a realistic this-is-how-you-see-it-in-a-large-database-that holds-DNA-sequences feel, you can leave them out. The period is one of three stop codons (a stop codon signals that the amino acid chain has been completed and can be released by the ribosome) – TAA. The space bar is a short dash. Why? When the order of the DNA letters on a gene is sequenced (read in order), sometimes there is uncertainty about a particular letter, and if you look on a database that stores DNA sequences, the problem letter will be signified by a short dash. 

If you print out what you wrote, it will be nicely encrypted. To decrypt it, one can simply use a genetic code table from online or their biology textbook (remember to substitute each T with a U)
Have fun!
 - EcoRIIEver%20dream%20of%20writing%20in%20genetic%20code%3F%20Now%20it%20is%20possible%20%28Sort%20of%29.%20%0D%0AHow%3F%20Cells%20make%20up%20anything%20living.%20A%20lot%20of%20the%20functions%20in%20a%20cell%2C%20which%20are%20required%20for%20a%20cell%20to%20survive%20%28and%20function%20normally%20in%20a%20multicellular%20organism%29%20are%20carried%20out%20by%20complex%20molecules%20called%20proteins.%20There%20are%201000%E2%80%99s%20of%20proteins%20in%20a%20typical%20cell%2C%20and%20each%20protein%20has%20a%20specific%2C%20unique%20shape%20that%20defines%20what%20function%20they%20are%20going%20to%20perform%20in%20a%20cell.%20Proteins%20are%20made%20by%20cells%2C%20using%2020%20different%20building%20blocks%20called%20amino%20acids.%20These%20amino%20acids%20are%20joined%20in%20a%20long%20chain%2C%20and%20folded%20up%20to%20give%20each%20protein%20its%20unique%20structure.%20Cells%20make%20proteins%20using%20instructions%20written%20in%20stretches%20of%20DNA%20called%20genes.%20The%20instructions%20are%20written%20in%20DNA%20using%20four%20%E2%80%9Cletters%E2%80%9D%20called%20nucleotides%20%28A%2CT%2CG%2C%20and%20C%29.%20To%20make%20a%20protein%2C%20the%20gene%20first%20has%20to%20be%20rewritten%20into%20another%20molecule%20called%20RNA%20%28again%2C%20using%20four%20%E2%80%9Cletters%E2%80%9D%2C%20this%20time%20A%2C%20U%20%28instead%20of%20T%29%2C%20G%2C%20and%20C%29.%20This%20happens%20in%20the%20cell%20nucleus%2C%20or%20if%20the%20cell%20is%20a%20prokaryote%20%28lacks%20a%20nucleus%29%2C%20the%20nucleoid%20%28where%20the%20nucleus%20could%20have%20been%29.%20The%20RNA%20molecule%20is%20translated%20into%20a%20protein%20in%20a%20cell%20structure%20called%20the%20ribosome.%20For%20that%20to%20happen%2C%20the%20letters%20on%20the%20RNA%20molecule%20are%20read%20off%20in%20bunches%20of%20three%20%28called%20codons%29%2C%20and%20the%20order%20of%20the%20three%20letters%20will%20signal%20for%20a%20particular%20amino%20acid%20to%20be%20added%20to%20the%20growing%20chain%20of%20amino%20acids.%20The%20sequence%20of%20amino%20acids%20on%20the%20chain%2C%20as%20well%20as%20the%20unique%20properties%20of%20each%20amino%20acid%20determine%20how%20the%20protein%20will%20fold%2C%20and%20ultimately%2C%20what%20function%20the%20protein%20will%20carry%20out.%20%0D%0AHow%20does%20this%20font%20work%3F%20Well%2C%20scientists%20use%20a%20one%20%E2%80%93%20letter%20abbreviation%20for%20each%20amino%20acid%20when%20recording%20the%20structure%20of%20a%20protein.%20Since%20using%20a%20one-letter%20abbreviation%20for%20each%20amino%20acid%20requires%2020%20letters%E2%80%A6%20Well%2C%20that%20covers%20just%20about%20the%20entire%20alphabet.%20To%20create%20the%20code%20you%20could%20type%20with%2C%20and%20in%20such%20a%20way%20that%20each%20letter%20is%20not%20obvious%2C%20each%20letter%20you%20see%20on%20the%20keyboard%20is%20reverse%20translated%20into%20a%20DNA%20sequence%20of%20three%20DNA%20%E2%80%9Cletters%E2%80%9D%20%28for%20curious%20scientists%20out%20there%2C%20the%20antisense%20strand%20of%20DNA%20is%20used%29.%20%20Some%20letters%20are%20not%20used%20for%20amino%20acids.%20Due%20to%20this%20problem%2C%20the%20letters%20closest%20to%20those%20not%20used%20are%20back-translated%20instead.%20The%20problem%20letters%20are%20listed%20with%20the%20substitute%20in%20parentheses%20-%20B%20%28R%29%2C%20J%20%28L%29%2C%20O%20%28Q%29%2C%20U%20%28V%29%2C%20X%20%28K%29%2C%20and%20Z%20%28S%29.%20Simply%20hit%20the%20normal%20keys%20on%20your%20keyboard%2C%20and%20watch%20your%20message%20being%20encrypted%20as%20you%20write.%20Although%20all%20punctuation%20marks%20are%20present%2C%20if%20you%20are%20going%20for%20a%20realistic%20this-is-how-you-see-it-in-a-large-database-that%20holds-DNA-sequences%20feel%2C%20you%20can%20leave%20them%20out.%20The%20period%20is%20one%20of%20three%20stop%20codons%20%28a%20stop%20codon%20signals%20that%20the%20amino%20acid%20chain%20has%20been%20completed%20and%20can%20be%20released%20by%20the%20ribosome%29%20%E2%80%93%20TAA.%20The%20space%20bar%20is%20a%20short%20dash.%20Why%3F%20When%20the%20order%20of%20the%20DNA%20letters%20on%20a%20gene%20is%20sequenced%20%28read%20in%20order%29%2C%20sometimes%20there%20is%20uncertainty%20about%20a%20particular%20letter%2C%20and%20if%20you%20look%20on%20a%20database%20that%20stores%20DNA%20sequences%2C%20the%20problem%20letter%20will%20be%20signified%20by%20a%20short%20dash.%20%0D%0A%0D%0AIf%20you%20print%20out%20what%20you%20wrote%2C%20it%20will%20be%20nicely%20encrypted.%20To%20decrypt%20it%2C%20one%20can%20simply%20use%20a%20genetic%20code%20table%20from%20online%20or%20their%20biology%20textbook%20%28remember%20to%20substitute%20each%20T%20with%20a%20U%29%0D%0AHave%20fun%21%0D%0A%20-%20EcoRII

Skilt Gothic Semi Bold OT

by Font BureauFontShop.com
Skilt Gothic Semi Bold OT
Some fonts you just can’t FontStruct. Try a non-modular typeface from FontShop.com