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  1. Introduction. This lab will determine the presence or absence of amplified DNA in your samples by visualization on an agarose gel. Arthropod and Wolbachia DNA, if present, will be distinguishable based on the size, or base pair (bp) length, of the DNA molecule.

  2. We believe interactive simulation and visualization tools can help. We created Gelbox, a dynamic “scientific sandbox” that can aid in visualizing various ways that gel bands, sample molecules, and the gel itself, interact.

  3. 4 Απρ 2012 · Gel-electrophoresis experiments reveal that 1 and 2 cleave supercoiled DNA (type-I) to the nicked-circular (type-II) form hydrolytically at physiological pH.

  4. The lab is based on using gel electrophoresis for DNA fingerprinting. In our lesson, we discussed using gel electrophoresis for nanotechnology, specifically determining if the PEG molecule has been attached to the quantum dot.

  5. GelApp is a free mobile application that automatically detects and quantifies gel electrophoresis bands for “on-the-go” gel documentation. It facilitates quantitative biological research by providing more accurate band sizes.

  6. Gel Electrophoresis. In this virtual lab simulation, gel electrophoresis is used to separate dyes and see them in an agarose gel.

  7. Purpose: To use gel electrophoresis to create a DNA Fingerprint. Materials: Get from the Checklist on the Explore part of the virtual lab. - Select each item in the lab. Read the description that appears for each item. Once you have selected all the items (13 total), click procedure to start the lab. Procedure:

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