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Human 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

  1. Observation

  2. Question

  3. Hypothesis

  4. Experiment

  5. Analysis

  6. 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.

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