Il existe plusieurs outils traditionnels utilisés dans la fabrication de drogue taditional tels que des houes, des couteaux, des mortiers, des outils râpé, les filtres, et un chiffon. Par exemple, les bananes qui ont des avantages de santé ont traditionnellement tourné bananes pièces peuvent également être utilisés comme médicaments traditionnels tels que:
1. Lance une feuille de bananier comme un médicament pour arrêter le sang
Comment: des feuilles de bananier pilée jusqu'à tendreté, puis fixée à la section avec les pansements bandés.
La sève de la tige des feuilles de bananes peuvent également être utilisés comme médicaments de sang-arrêt.
Comment: Appliquer la sève de la tige de la feuille de bananier dans la plaie.
2. Bananes
Garder les avantages de bananes Ambon, les bananes roi cérémonie, et la banane Ampeang que la médecine.
2.1. Banane et cérémonies roi de la banane comme médicament pour les maladies des yeux
L'astuce: il suffit de manger une banane 2x3 tous les jours.
2.2. Banana King cérémonie comme un remède contre la dysenterie
Le truc: manger trois fruits par jour.
2.3. de la banane ou Ampeang cérémonie roi de la banane
Le truc: manger cinq fruits chaque jour les bananes.
3. tubercules Bonngol
Contenant du potassium et du phosphore. Pour obtenir le charançon de la racine de la banane ont été prises avec le parti pris est seulement une houe. Continuer à obtenir de l'eau provenant de ces tubercules sont râpées et pressés par le biais et l'eau est recueillie dans un verre.
3.1. Drug dysenterie
L'astuce: boire du jus de tubercule charançon 2x1 cuillères à soupe par jour.
3.2. Drug amygdales
Comment: Il suffit d'utiliser le rince-bouche-gargariser avec du jus.
4. Charançon de la tige
Avantages de charançon de la tige pour traiter la diarrhée et nourrir les cheveux.
4.1. Cheveux fertilisants
Comment: Corm troncs de bananiers déchiquetées par le biais de râpé et pressé l'aide d'un chiffon propre pour boire un verre et ensuite utiliser 1x1 ½ c. à soupe par jour.
4.2. La diarrhée des médicaments
Comment: Buvez du jus 2x1 cuillères à soupe par jour.
5. Fils d'un bananier
Fils d'un bananier qui n'a pas semblé être râpé sur le terrain jusqu'à l'obtention d'un verre d'eau. Fils d'un bananier et de maintien de la nature qui peut être utilisé qui est l'enfant de bananiers (banane roi cérémonie, la banane Mas, Psidium bananes s épiderme). Pour l'obtenir à l'utilisation d'une houe. verre d'eau d'un enfant doit être mélangé avec du thé de bananier parasite et le filtre avec un outil de filtrage de manière à obtenir ½ tasse d'eau. Bienfaits de l'eau comme suit:
5.1. maladies dysenterie 2x1 cuillères à soupe par jour.
5.2. Pour colon saignements 2x1 / 4 tasses par jour.
Tags: matériel, la médecine, traditionnelle
Showing posts with label Technology. Show all posts
Showing posts with label Technology. Show all posts
Application Google Chrome Os on Notebook
The source code chrome OS is free to download and Google chrome has difference on operating system and the application has been demonstrated.The application is like Linux and the Google Chrome OS not easier installed either Window7, in generally, more suitable with most hardware and software.
Google has been launched Chrome application where the software could installed in specific hardware and Google has completely with some application display such Google Map, Gmail, Google Docs, Google Calendar, and Google search by Voice.
IB Times News has written an article which notebook Chrome OS which 10,1”, 1280x720 pixel resolution, 2GB RAM, Nvidia Tegra GPU, USB ports, Wi-Fi, 3G, Web-cam and 64 GB storage.
Labels:
Technology
GLOBE SIZED SAND
Globe Sized Sand
Generally, a Globe show country in the world in 3 dimensions is ball size but now a globe is only a sand size. There is impossible again because Dr Amin Knoll from IBM Research in Zurich as one of physical in Hardware website has been created a globe in 0, 3 millimeter. The globe is using etching on microscope on nanometer scale.
Etch tool has 500 size nanometer scale such tool is using on electron microscope. The globe is made from glasses molecules and components of draw is using from kinds of polymer which that is called polyphtalalehyde.
Polyphtalalehyde is inventory IBM Hiroshi Ito in 1980-an and time globe a sand of size is spend on 2 minute 23 second. Read more on Tuesday, April 27, 2010 or http://tekno.kompas.com
Related article :
Ideas of modern technology discovery
Generally, a Globe show country in the world in 3 dimensions is ball size but now a globe is only a sand size. There is impossible again because Dr Amin Knoll from IBM Research in Zurich as one of physical in Hardware website has been created a globe in 0, 3 millimeter. The globe is using etching on microscope on nanometer scale.
Etch tool has 500 size nanometer scale such tool is using on electron microscope. The globe is made from glasses molecules and components of draw is using from kinds of polymer which that is called polyphtalalehyde.
Polyphtalalehyde is inventory IBM Hiroshi Ito in 1980-an and time globe a sand of size is spend on 2 minute 23 second. Read more on Tuesday, April 27, 2010 or http://tekno.kompas.com
Related article :
Ideas of modern technology discovery
Labels:
Technology
Javascript and CSS
Tips and Trick JavaScript and CSS in Multiply
Fdev cites “You can visit on some web and they are expert and also they had been discussed completely about JavaScript and CSS in tutorial.
HTML
Learn it from: [ENG] W3Schools.com - HTML Tutorial
[IND] KafeDesign.com - HTML Tutorial
DHTML
Learn it from: [ENG] W3Schools.com - DHTML Tutorial
[ENG]Dynamic Java script
CSS
Learn it from: [ENG] W3Schools.com - CSS Tutorial
[ENG] Mandarin Design
[IND] IlmuKomputer.com - CSS Tutorial
JavaScript
Learn it from: [ENG] W3Schools.com - JavaScript Tutorial
[ENG]Dynamic Javascript
[ENG]Javascript Internet
[IND] IlmuKomputer.com - Pengantar JavaScript
First, have Secondary Hosting/ server to put page index in your website.
Second, find free hosting and register to put your page index.
Fourth, after finish all of the process, you put script forward/redirect it’s to your page index. And then visit http://multiply.com/setup/pages/content on the column Welcome Message, put script such:
<*img src='javascript:document.location="http://twelev.com/lelaki"'>Â
(Remember do not wrong into put <* at begin) If you want people not visit Multiply your page index for few day, put script on menu http://multiply.com/setup/pages/home put script  <*img src='javascript:document.location="http://www.google.com/"'>
Everyone from any link who is open your page will redirect to Google access nor Journal page, reviews, photo and another link.
Fdev cites “You can visit on some web and they are expert and also they had been discussed completely about JavaScript and CSS in tutorial.
HTML
Learn it from: [ENG] W3Schools.com - HTML Tutorial
[IND] KafeDesign.com - HTML Tutorial
DHTML
Learn it from: [ENG] W3Schools.com - DHTML Tutorial
[ENG]Dynamic Java script
CSS
Learn it from: [ENG] W3Schools.com - CSS Tutorial
[ENG] Mandarin Design
[IND] IlmuKomputer.com - CSS Tutorial
JavaScript
Learn it from: [ENG] W3Schools.com - JavaScript Tutorial
[ENG]Dynamic Javascript
[ENG]Javascript Internet
[IND] IlmuKomputer.com - Pengantar JavaScript
First, have Secondary Hosting/ server to put page index in your website.
Second, find free hosting and register to put your page index.
Third, after get free hosting and register, design page index with put CSS style as you like to know more about CSS styles (visit CSS in internet) or using Ferdina aka Fdev CSS but you should put her name credit first as mention on her journal.
Fourth, after finish all of the process, you put script forward/redirect it’s to your page index. And then visit http://multiply.com/setup/pages/content on the column Welcome Message, put script such:
<*img src='javascript:document.location="http://twelev.com/lelaki"'>Â
(Remember do not wrong into put <* at begin) If you want people not visit Multiply your page index for few day, put script on menu http://multiply.com/setup/pages/home put script  <*img src='javascript:document.location="http://www.google.com/"'>
Everyone from any link who is open your page will redirect to Google access nor Journal page, reviews, photo and another link.
Labels:
Technology
Simple Microscopes
A magnifying glass, an ordinary double convex lens having a short focal length, is a simple microscope. The reading lens and hand lens are instruments of this type. When an object is placed nearer such a lens than its principal focus, i.e., within its focal length, an image is produced that is erect and larger than the original object. The image is also virtual; i.e., it cannot be projected on a screen as can a real image.
Compound Microscopes
The compound microscope consists essentially of two or more double convex lenses fixed in the two extremities of a hollow cylinder. The lower lens (nearest to the object) is called the objective; the upper lens (nearest to the eye of the observer), the eyepiece. The cylinder is mounted upright on a screw device, which permits it to be raised or lowered until the object is in focus, i.e., until a clear image is formed. When an object is in focus, a real, inverted image is formed by the lower lens at a point inside the principal focus of the upper lens. This image serves as an "object" for the upper lens which produces another image larger still (but virtual) and visible to the eye of the observer.
Computation of Magnifying Power
The magnifying power of a lens is commonly expressed in diameters. For example, if a lens magnifies an object 5 times, the magnification is said to be 5 diameters, commonly written simply "5x." The total magnification of a compound microscope is computed by multiplying the magnifying power of the objective by the magnifying power of the eyepiece.
Development and Uses
Development and Uses
The invention of the microscope is variously accredited to Zacharias Janssen, a Dutch spectaclemaker, c.1590, and to Galileo, who announced his invention in 1610. Others are known for their discoveries made by the use of the instrument and for their new designs and improvements, among them G. B. Amici, Nehemiah Grew, Robert Hooke, Antony van Leeuwenhoek, Marcello Malpighi, and Jan Swammerdam. The compound microscope is widely used in bacteriology, biology, and medicine in the examination of such extremely minute objects as bacteria, other unicellular organisms, and plant and animal cells and tissue-fine optical microscopes are capable of resolving objects as small as 5000 Angstroms. It has been extremely important in the development of the biological sciences and of medicine.
Modified Compound Microscopes
The ultramicroscope is an apparatus consisting essentially of a compound microscope with an arrangement by which the material to be viewed is illuminated by a point of light placed at right angles to the plane of the objective and brought to a focus directly beneath it. This instrument is used especially in the study of Brownian movement in colloidal solutions (see colloid). The phase-contrast microscope, a modification of the compound microscope, makes transparent objects visible; it is used to study living cells. The television microscope uses ultraviolet light. Since this light is not visible, the apparatus is used with a special camera and may be connected with a television receiver on which the objects (e.g., living microorganisms) may be observed in color.
Electron Microscopes
The electron microscope, which is not limited by the powers of optical lenses and light, permits greater magnification and greater depth of focus than the optical microscope and reveals more details of structure. Instead of light rays it employs a stream of electrons controlled by electric or magnetic fields. The image may be thrown on a fluorescent screen or may be photographed. It was first developed in Germany c.1932; James Hillier and Albert Prebus, of Canada, and V. K. Zworykin, of the United States also made notable contributions to its development. The scanning electron microscope, introduced in 1966, gains even greater resolution by reading the response of the subject material rather than the direct reflection of its beam. Using a similar approach, optical scanning microscopes achieve a resolution of 400 Angstroms, less than the wavelength of the light being used. Finally, the scanning tunnelling microscope, invented in 1982, uses not a beam but an electron wave field, which by interacting with a nearby specimen is capable of imaging individual atoms; its resolution is an astounding one Angstrom.
BibliographySee C. Marmasse, Microscopes and Their Uses (1980).
Tags: microscope, invented, virtual
Labels:
Technology
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