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Chromosome Pairing: The alignment of Chromosomes at homologous sequences.
 JoVE Behavior

Contextual and Cued Fear Conditioning Test Using a Video Analyzing System in Mice

1Division of Systems Medical Science, Institute for Comprehensive Medical Science, Fujita Health University, 2Japan Science and Technology Agency, Core Research for Evolutionary Science and Technology (CREST), 3Center for Genetic Analysis of Behavior, National Institute for Physiological Sciences, National Institutes of Natural Sciences


JoVE 50871

 JoVE Bioengineering

Describing a Transcription Factor Dependent Regulation of the MicroRNA Transcriptome

1Division of Hematology, Davidoff Cancer Center, Rabin Medical Center, 2The Center of Nanoscience and Nanotechnology, Tel Aviv University, 3Experimental Therapeutics, The University of Texas MD Anderson Cancer Center, 4Department of Leukemia, The University of Texas MD Anderson Cancer Center


JoVE 53300

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 JoVE Biology

Quantitation and Analysis of the Formation of HO-Endonuclease Stimulated Chromosomal Translocations by Single-Strand Annealing in Saccharomyces cerevisiae

1Irell & Manella Graduate School of Biological Sciences, 2Department of Molecular and Cellular Biology, City of Hope Comprehensive Cancer Center and Beckman Research Institute, 3Department of Biochemistry and Molecular Biology, University of Southern California, Norris Comprehensive Cancer Center


JoVE 3150

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 JoVE Immunology and Infection

Multiplex PCR Assay for Typing of Staphylococcal Cassette Chromosome Mec Types I to V in Methicillin-resistant Staphylococcus aureus

1Centre for Antimicrobial Resistance, Alberta Health Services / Calgary Laboratory Services / University of Calgary, 2Department of Pathology & Laboratory Medicine, University of Calgary, 3Department of Microbiology, Immunology and Infectious Diseases, University of Calgary, 4Department of Medicine, University of Calgary, 5The Calvin, Phoebe and Joan Snyder Institute for Chronic Diseases, University of Calgary


JoVE 50779

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 JoVE Biology

Hi-C: A Method to Study the Three-dimensional Architecture of Genomes.

1Program in Gene Function and Expression, Department of Biochemistry and Molecular Pharmacology, University of Massachusetts Medical School, 2Broad Institute of Harvard and Massachusetts Institute of Technology, 3Division of Health Sciences and Technology, Massachusetts Institute of Technology, 4Program for Evolutionary Dynamics, Department of Organismic and Evolutionary Biology, Department of Mathematics, Harvard University, 5Department of Applied Mathematics, Harvard University, 6Department of Physics, Massachusetts Institute of Technology, 7Department of Systems Biology, Harvard Medical School, 8Department of Biology, Massachusetts Institute of Technology


JoVE 1869

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 JoVE Biology

Methods to Discover Alternative Promoter Usage and Transcriptional Regulation of Murine Bcrp1

1Greenebaum Cancer Center, University of Maryland School of Medicine, 2Pharmaceutical Sciences, University of Maryland School of Pharmacy, 3Baltimore VA Medical Center, 4Membrane Transport and Biopharmaceutics, School of Pharmaceutical Sciences, Kanazawa University, 5Obstetrics, Gynecology and Reproductive Science, University of Pittsburgh, 6Magee Women's Research Institute, 7Obstetrics, Gynecology, Perinatal Research Branch (NICHD), Wayne State University School of Medicine, 8Medicine, University of Maryland School of Medicine, 9Pathology, University of Maryland School of Medicine, 10Pharmacology, University of Maryland School of Medicine, 11Experimental Therapeutics, University of Maryland School of Medicine


JoVE 53827

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 Science Education: Essentials of General Chemistry

Coordination Chemistry Complexes

JoVE Science Education

Source: Laboratory of Dr. Neal Abrams — SUNY College of Environmental Science and Forestry

Transition metals are found everywhere from vitamin supplements to electroplating baths. Transition metals also make up the pigments in many paints and compose all minerals. Typically, transition metals are found in the cationic form since they readily oxidize, or lose electrons, and are surrounded by electron donors called ligands. These ligands do not form ionic or covalent bonds with the metal center, rather they take on a third type of bond known as coordinate-covalent. The coordinate-covalent bond between a ligand and a metal is dynamic, meaning that ligands are continuously exchanging and re-coordinating around the metal center. The identities of both the metal and the ligand dictates which ligands will bond preferentially over another. In addition, color and magnetic properties are also due to the types of complexes that are formed. The coordination compounds that form are analyzed using a variety of instruments and tools. This experiment explores why so many complexes are possible and uses a spectrochemical (color and chemical) method to help identify the type of coordination complex that forms.

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