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Graphing Data. Graphing Data. Graphing Data. Graphing Data. Graphing Data. Graphing Data. Graphing Data. Graphing Data. Label each axis Provide values Use X for indep., Y for dep. Connect the dots If there is more than one polt, identify them Provide a title. Designing an Experiment.
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Graphing Data • Label each axis • Provide values • Use X for indep., Y for dep. • Connect the dots • If there is more than one polt, identify them • Provide a title.
Designing an Experiment • IV & DV • Experimental treatment • Control treatment • Only one IV • Random sample of subjects • Describe procedure • Describe expected results • Explain, based on principles.
LAB ONE Diffusion and Osmosis • Water moves from hypotonic solution to hypertonic solution • Isotonic = same concentration Ψ = Ψp + Ψs
LAB ONE Diffusion and Osmosis hypo hyper
LAB ONE Diffusion and Osmosis hypo hyper
LAB THREE Mitosis and Meiosis 3A.1 Observing Mitosis 3A.2 Time for Cell Replication 3B.1 Simulation of Meiosis 3B.2 Crossing Over During Meiosis
LAB THREE Mitosis and Meiosis EXERCISE 3B.2: Crossing over during Meiosis in Sordaria
LAB THREE Mitosis and Meiosis EXERCISE 3B.2: Crossing over during Meiosis in Sordaria
LAB THREE Mitosis and Meiosis EXERCISE 3B.2: Crossing over during Meiosis in Sordaria
LAB THREE Mitosis and Meiosis EXERCISE 3B.2: Crossing over during Meiosis in Sordaria
LAB THREE Mitosis and Meiosis EXERCISE 3B.2: Crossing over during Meiosis in Sordaria
LAB THREE Mitosis and Meiosis EXERCISE 3B.2: Crossing over during Meiosis in Sordaria Map units show us relative distances between genes. They do not translate directly into numbers of nucleotide pairs. Genes that are more than 50 map units apart assort independently… and might as well be on separate chromosomes.
LAB SIX Molecular Biology Transformation: • Bacteria take up naked DNA
LAB SIX Molecular Biology Transduction: • Phages carry bacterial DNA
LAB SIX Molecular Biology Conjugation: • Bacteria “mate” to share DNA
LAB EIGHT Population Genetics P2 + 2PQ + Q2 = 1 P + Q = 1
LAB TWELVE Dissolved Oxygen DO ↓with ↑ temperature DO ↓with ↑ salinity DO ↑ with photosynthesis DO ↓ with respiration
LAB TWELVE Dissolved Oxygen Gross Primary Production = chemical energy made Respiration rate = chemical energy used Net Primary Production = GPP - RR
LAB TWELVE Dissolved Oxygen Gross Primary Production = chemical energy made Respiration rate = chemical energy used Net Primary Production = GPP - R
time LAB TWELVE Dissolved Oxygen NPP GPP dissolved oxygen R .