IndietroHuman Biology Exam 1 Study Guide: Chapters 1–4
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Domain of Life
Classification of Living Organisms
The domain of life is the highest taxonomic rank in the classification of organisms. There are three domains:
Bacteria: Single-celled prokaryotes without a nucleus.
Archaea: Single-celled prokaryotes, distinct from bacteria, often found in extreme environments.
Eukarya: Organisms with eukaryotic cells, including animals, plants, fungi, and protists.
Example: Humans belong to the domain Eukarya.
Cell Organelles
Names, Functions, and Shapes
Nucleus: Contains genetic material (DNA); usually spherical.
Mitochondria: Site of ATP production; oval-shaped with inner folds (cristae).
Endoplasmic Reticulum (ER): Network of membranes; rough ER has ribosomes (protein synthesis), smooth ER (lipid synthesis).
Golgi Apparatus: Modifies, sorts, and packages proteins; stack of flattened sacs.
Lysosomes: Contain digestive enzymes; spherical vesicles.
Ribosomes: Protein synthesis; small, round structures, free or attached to ER.
Plasma Membrane: Phospholipid bilayer; flexible boundary of the cell.
Cytoskeleton: Network of protein fibers; maintains cell shape and assists movement.
Example: The mitochondrion is often called the "powerhouse of the cell."
Hierarchy of Living Organisms
Levels of Biological Organization
Atom → Molecule → Organelle → Cell → Tissue → Organ → Organ System → Organism → Population → Community → Ecosystem → Biosphere
Example: Muscle tissue is made of muscle cells, which contain mitochondria (organelles).
Cell Size and Surface Area
Relationship and Importance
As a cell increases in size, its volume grows faster than its surface area.
This limits cell size because the surface area must be sufficient for exchange of materials.
Formula:
Microscopy
Types and Uses
Light Microscope: Views living cells; lower magnification.
Transmission Electron Microscope (TEM): Views internal structures; high magnification.
Scanning Electron Microscope (SEM): Views cell surfaces in 3D.
Elements of Humanity
Most Abundant Elements
Oxygen (O), Carbon (C), Hydrogen (H), Nitrogen (N)
These elements make up over 96% of the human body.
Reductionism
Importance in Biology
Reductionism is the approach of studying complex systems by breaking them into simpler components.
Helps understand biological processes at molecular and cellular levels.
DNA
Importance
DNA stores genetic information necessary for growth, development, and reproduction.
Directs synthesis of proteins.
Chemical Bonds
Types and Properties
Ionic Bonds: Transfer of electrons between atoms (e.g., NaCl).
Covalent Bonds: Sharing of electrons (e.g., H2O).
Hydrogen Bonds: Weak attraction between polar molecules (e.g., between water molecules).
Polarity
Polar vs. Nonpolar Molecules
Polar Molecules: Unequal sharing of electrons; have partial charges (e.g., water).
Nonpolar Molecules: Equal sharing of electrons; no partial charges (e.g., O2).
Ions and Charges
Interactions
Negatively charged elements (anions) attract positively charged elements (cations) to form ionic bonds.
pH Levels
Acids and Bases
pH < 7: Acidic
pH = 7: Neutral
pH > 7: Basic (alkaline)
Formula:
Scientific Method
Steps in Order
Observation
Question
Hypothesis
Experiment
Analysis
Conclusion
Homeostasis
Definition
Maintenance of a stable internal environment despite external changes.
Elements vs. Molecules
Differences
Element: Pure substance of one type of atom (e.g., O2).
Molecule: Two or more atoms bonded together (e.g., H2O).
Living vs. Nonliving
Shared Characteristics
Both made of matter and obey physical laws.
Living things exhibit metabolism, growth, response to stimuli, and reproduction.
Radioisotope Technology
Importance
Used in medical imaging, cancer treatment, and dating fossils.
Atomic Charge Changes
How Atoms Change Charge
Atoms gain electrons (become negative, anions) or lose electrons (become positive, cations).
Diffusion
Process
Movement of molecules from high to low concentration until equilibrium is reached.
ATP Production
Electron Transport Chain
Most ATP is produced by the ATP synthase protein complex during oxidative phosphorylation.
Plasma Membrane Permeability
What Can and Cannot Pass
Small, nonpolar molecules (e.g., O2, CO2) can pass freely.
Ions and large polar molecules require transport proteins.
Active Transport
Definition
Movement of substances against their concentration gradient using energy (ATP).
Isotonic Solutions
Effect on Cells
Isotonic solution: Solute concentration is equal inside and outside the cell; no net water movement; cell shape remains unchanged.
Glycolysis
PURPOSE
Breaks down glucose into pyruvate, producing ATP and NADH.
Electron Carriers in Citric Acid Cycle
Types and Electron Sources
NAD+ and FAD are electron carriers.
They gain electrons from the oxidation of substrates in the citric acid cycle.
Plasma Membrane Structure
Components
Phospholipid bilayer, proteins, cholesterol, and carbohydrates.
Connective Tissues
Types
Loose connective tissue: Supports and binds tissues.
Dense connective tissue: Forms tendons and ligaments.
Adipose tissue: Stores fat.
Cartilage: Flexible support.
Bone: Rigid support.
Blood: Transports substances.
Locations of Tissue Types
Examples
Loose connective: Under skin
Dense connective: Tendons
Adipose: Under skin, around organs
Cartilage: Joints, ear
Bone: Skeleton
Blood: Circulatory system
Muscle Type in the Stomach
Type
Smooth muscle is found in the stomach wall.
Tissue Types and Functions
Overview
Epithelial tissue: Covers surfaces, lines cavities.
Connective tissue: Supports, binds, stores energy.
Muscle tissue: Movement.
Nervous tissue: Transmits signals.
Cell Junctions
Types
Tight junctions: Seal cells together.
Desmosomes: Anchor cells together.
Gap junctions: Allow communication between cells.
Additional info: Some explanations and examples were expanded for clarity and completeness based on standard Human Biology curriculum.