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Experiments

  • Basic Experiments
    • Structure, Isolation, and Function of DNA (B1)Experiments (click to expand)
      • Properties of DNA (B1-1)
      • Cell Fractionation and DNA Isolation (B1-2)
      • Gene Function and Cloning in Bacteria. (B1-3)
    • Animal Biology and Evolution (B2)Experiments (click to expand)
      • Quantifying Amylase Activity (B2-1 and B2-2)
      • Proteases and Factors that Influence Enzyme Activity (B2-3)
      • Evolution of Serum Proteins (B2-4)
      • Serum Enzymes and Disease (B2-5)
      • Identifying a Specific Enzyme in Chicken Erythrocytes by Enzyme Cytochemistry. (B2-6)
    • Chromatographic Separation of Proteins (B3)Experiments (click to expand)
      • Mini Program in Chromatography (B3 1-3)
      • Properties of Amylase (B3-4)
      • Analysis of a Protein From Egg White. (B3-5)
    • Plant Cell and Molecular Biology (B4)Experiments (click to expand)
      • Effects of Temperature on Cell Respiration. (B4-1)
      • Extraction and Analysis of an Enzyme from Wheat . (B4-2)
      • Osmolarity and a Cytological Bioassay. (B4-4)
      • Mitotic Activity and Cell Respiration. (B4-5)
      • Isolating DNA from Plants. (B4-6)
  • Standard programs and single experiments
    • Introduction to Molecular Biology (S1)Experiments (click to expand)
      • 101. Electrophoretic Separation of Proteins (EXP-101)
      • 102. Genetics and Sickle Cell Anemia (EXP-102)
      • 103. Analysis of Serum Proteins (EXP-103)
      • 104. Evolution of Serum Proteins (EXP-104)
      • 105. A Comparison of Human and Bacterial Amylase (Exp-105)
      • 106. Protein Fingerprinting (Exp-106)
    • Molecular Biology of Proteins (S2)Experiments (click to expand)
      • 201. Molecular Weight Determination (EXP-201)
      • 202. Identifying Sex-Specific Proteins (EXP-202)
      • 203. Comparing Human and Bacterial Amylase (EXP-203)
      • 204. Peptide Mapping Analysis (EXP-204)
      • 205. Protein Evolution and the Western Blot (EXP-205)
      • 206. Affinity Chromatography (EXP-206)
    • Molecular Biology of Nucleic Acids (S3)Experiments (click to expand)
      • 301. The Length of DNA Molecules (EXP-301)
      • 302. Restriction Nuclease Mapping of DNA (EXP-302)
      • 303. Plasmid DNA Structure (EXP-303)
      • 304. Molecular Cloning (EXP-304)
      • 305. Identifying Satellite Sequences (EXP-305)
      • 306. The Nucleosome Structure of Chromatin (EXP-306)
    • DNA Hybridization Analysis (S4)Experiments (click to expand)
      • 401. Evolution of the Vertebrate Genome (EXP-401)
      • 402. Application of the Southern Blot Procedure (EXP-402)
      • 403. Detecting a Specific Sequence in the Mammalian Genome (EXP-403)
    • Genetic Engineering (S5)
    • Tissue to Gene (S6)
    • Contemporary Cell Biology (S7)Experiments (click to expand)
      • 701. Enzyme Cytochemistry (EXP-701)
      • 702. Analysis of a Cell-Surface Receptor (EXP-702)
      • 703. The Cell Nucleus (EXP-703)
    • Tissue-Specific Proteins (S-8)Experiments (click to expand)
      • 801. Serum Proteins and the Western Press-Blot (EXP-801)
      • 802. Identifying Ovalbumin by the Western Press-Blot (EXP-802)
      • 803. Tissue-Specific Isoenzymes in the Cow (EXP-803)
      • 804. Peroxidase Isoenzymes in Corn (EXP-804)
    • Plant Molecular Biology (S9)
    • The New Genetics (S10)Experiments (click to expand)
      • 1001. Anatomy and Evolution of the Genome (EXP-1001)
      • 1002. Analysis of a Genome Segment (EXP-1002)
      • 1003. DNA Fingerprinting (An authentic analysis) (EXP-1003)
      • 1004. Genotype to Phenotype (EXP-1004)
    • Cloning a DNA Segment (S11)
  • Individual ExperimentsExperiments (click to expand)
    • PCR Amplification of a Gene for Ribosomal RNA (IND-10)
    • Characterization of the Satellite DNA from the Meal Worm (IND-12)
    • Transformation and Analysis of Yeast (IND-13)
    • Enzyme Kinetics (IND-14)
    • Bacterial Phenotypes (IND-15)
    • Identifying Viral DNA by Rapid Southern Blotting (IND-16)
    • A Rapid Immunological Method to Study Evolution. (IND-17)
    • Zoology, Histology, Developmental Anatomy. (IND-18 IND-19 IND-20)
    • Tissue Printing (IND-2)
    • Identifying Genomic and Plasmid DNA Sequences in E.coli by Colony PCR. (IND-21)
    • Characterization of Peroxidases in Plants (IND-22)
    • An Introduction to Electrophoresis (IND-24)
    • Localizing Tublin by Immunohistochemistry (IND-26)
    • Composition of the Nucleosome (IND-27)
    • The ELISA Immunoassay (IND-3)
    • Development of the Immune System and the Western Press-Blot. (IND-4)
    • Specificity of Albumin Binding. (IND-5)
    • Analysis of a Mutant Hemoglobin Gene (IND-6)
    • Amplification of a Hemoglobin Gene by PCR (IND-7)
    • Producing a Strain of E. coli that Glows in the Dark. (IND-9)
  • Polyacrylamide Gel Electrophoresis of ProtiensExperiments (click to expand)
    • Molecular Weight Determination (EXP-201P)
    • Peptide Mapping Analysis (EXP-204P)
    • Protein Evolution and the Western Blot (EXP-205P)
    • Affinity Chromatography (EXP-206P)
    • Contractile Proteins from Cow Heart (IND-11P)
    • Isolation of Chromosomal Proteins (IND-25P)
  • Complete Lab Courses.
    • General Biology (LC1)Experiments (click to expand)
      • Properties of DNA (B1-1)
      • Cell Fractionation and DNA Isolation (B1-2)
      • Gene Function and Cloning in Bacteria. (B1-3)
      • Quantifying Amylase Activity (B2-1 and B2-2)
      • Proteases and Factors that Influence Enzyme Activity (B2-3)
      • Serum Enzymes and Disease (B2-5)
      • Identifying a Specific Enzyme in Chicken Erythrocytes by Enzyme Cytochemistry. (B2-6)
      • Mini Program in Chromatography (B3 1-3)
      • Effects of Temperature on Cell Respiration. (B4-1)
      • Extraction and Analysis of an Enzyme from Wheat . (B4-2)
      • Location of an Enzyme in Plant Cells and Tissues (B4-3)
      • Osmolarity and a Cytological Bioassay. (B4-4)
      • Mitotic Activity and Cell Respiration. (B4-5)
    • An Introduction to Cell and Molecular Biology (LC5)Experiments (click to expand)
      • Properties of DNA (B1-1)
      • Cell Fractionation and DNA Isolation (B1-2)
      • Extraction and Analysis of an Enzyme from Wheat . (B4-2)
      • 1001. Anatomy and Evolution of the Genome (EXP-1001)
      • 1002. Analysis of a Genome Segment (EXP-1002)
      • 1004. Genotype to Phenotype (EXP-1004)
      • 101. Electrophoretic Separation of Proteins (EXP-101)
      • 102. Genetics and Sickle Cell Anemia (EXP-102)
      • 306. The Nucleosome Structure of Chromatin (EXP-306)
      • 701. Enzyme Cytochemistry (EXP-701)
      • 702. Analysis of a Cell-Surface Receptor (EXP-702)
      • 801. Serum Proteins and the Western Press-Blot (EXP-801)
      • 803. Tissue-Specific Isoenzymes in the Cow (EXP-803)
      • 804. Peroxidase Isoenzymes in Corn (EXP-804)
      • Tissue Printing (IND-2)
      • Specificity of Albumin Binding. (IND-5)
    • Cell Biology (LC2)Experiments (click to expand)
      • 101. Electrophoretic Separation of Proteins (EXP-101)
      • 102. Genetics and Sickle Cell Anemia (EXP-102)
      • 201. Molecular Weight Determination (EXP-201)
      • 204. Peptide Mapping Analysis (EXP-204)
      • 205. Protein Evolution and the Western Blot (EXP-205)
      • 206. Affinity Chromatography (EXP-206)
      • 301. The Length of DNA Molecules (EXP-301)
      • 302. Restriction Nuclease Mapping of DNA (EXP-302)
      • 303. Plasmid DNA Structure (EXP-303)
      • 306. The Nucleosome Structure of Chromatin (EXP-306)
      • 701. Enzyme Cytochemistry (EXP-701)
      • 702. Analysis of a Cell-Surface Receptor (EXP-702)
      • 703. The Cell Nucleus (EXP-703)
      • 106. Protein Fingerprinting (Exp-106)
    • Molecular Biology (LC3)Experiments (click to expand)
      • 301. The Length of DNA Molecules (EXP-301)
      • 302. Restriction Nuclease Mapping of DNA (EXP-302)
      • 303. Plasmid DNA Structure (EXP-303)
      • 306. The Nucleosome Structure of Chromatin (EXP-306)
      • 401. Evolution of the Vertebrate Genome (EXP-401)
      • 403. Detecting a Specific Sequence in the Mammalian Genome (EXP-403)
      • Genetic Engineering (S5)
    • Comprehensive Molecular Biology (LC4)Experiments (click to expand)
      • 101. Electrophoretic Separation of Proteins (EXP-101)
      • 102. Genetics and Sickle Cell Anemia (EXP-102)
      • 201. Molecular Weight Determination (EXP-201)
      • 204. Peptide Mapping Analysis (EXP-204)
      • 205. Protein Evolution and the Western Blot (EXP-205)
      • 206. Affinity Chromatography (EXP-206)
      • 301. The Length of DNA Molecules (EXP-301)
      • 302. Restriction Nuclease Mapping of DNA (EXP-302)
      • 303. Plasmid DNA Structure (EXP-303)
      • 306. The Nucleosome Structure of Chromatin (EXP-306)
      • 401. Evolution of the Vertebrate Genome (EXP-401)
      • 403. Detecting a Specific Sequence in the Mammalian Genome (EXP-403)
      • 701. Enzyme Cytochemistry (EXP-701)
      • 702. Analysis of a Cell-Surface Receptor (EXP-702)
      • 703. The Cell Nucleus (EXP-703)
      • 106. Protein Fingerprinting (Exp-106)
      • Genetic Engineering (S5)
  • Electrophoresis Packages
    • Electrophoresis Package (EP-1/8)
    • Electrophoresis Package 3/4 (EP - 3/4)
    • Electrophoresis Package 2P (EP - 2P)
    • Electrophoresis Packages EP 2 and 2M (EP-2 and EP-2M)
  • Overview Programs
    • A Molecular Approach to the study of Genetics and Evolution (O1)Experiments (click to expand)
      • 101. Electrophoretic Separation of Proteins (EXP-101)
      • 102. Genetics and Sickle Cell Anemia (EXP-102)
      • 106. Protein Fingerprinting (Exp-106)
    • An Introduction to Molecular Genetics (O2)Experiments (click to expand)
      • 301. The Length of DNA Molecules (EXP-301)
      • 302. Restriction Nuclease Mapping of DNA (EXP-302)
      • 304. Molecular Cloning (EXP-304)
    • An Introduction to Electrophoresis (O3)Experiments (click to expand)
      • 101. Electrophoretic Separation of Proteins (EXP-101)
      • An Introduction to Electrophoresis (IND-24)
  • Featured ExperimentsExperiments (click to expand)
    • Mini Program in Chromatography (B3 1-3)
    • 1004. Genotype to Phenotype (EXP-1004)
    • Tissue Printing (IND-2)
    • Localizing Tublin by Immunohistochemistry (IND-26)
    • Composition of the Nucleosome (IND-27)
    • An Introduction to Electrophoresis (O3)Experiments (click to expand)
      • 101. Electrophoretic Separation of Proteins (EXP-101)
      • An Introduction to Electrophoresis (IND-24)
    • Genetic Engineering (S5)
  • A Computer Course in DNA and RNA Sequence Analysis. (CDP-1)
  • Individual Products for Protein Analysis
  • Individual Products for DNA Analysis

Site Navagation

  • Equipment
  • Experiments
    • A Computer Course in DNA and RNA Sequence Analysis.
    • Individual Products for DNA Analysis
    • Individual Products for Protein Analysis
    • Basic Experiments
      • Animal Biology and Evolution
      • Chromatographic Separation of Proteins
      • Plant Cell and Molecular Biology
      • Structure, Isolation, and Function of DNA
    • Standard programs and single experiments
    • Individual Experiments
    • Polyacrylamide Gel Electrophoresis of Protiens
    • Complete Lab Courses.
    • Electrophoresis Packages
    • Overview Programs
    • Featured Experiments
  • Search by Class
  • Request a Catalog

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Fax 765-523-3397

Postal address
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