Skip to main content
뒤로

Human Biology Exam 1 Study Guide: Chapters 1–4

스터디 가이드 - 스마트 노트

자료에 맞춘 맞춤형 노트, 핵심 정의, 예시, 맥락을 확장해 제공합니다.

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 protists, fungi, plants, and animals.

Example: Humans belong to the domain Eukarya.

Cell Organelles: Names, Functions, and Shapes

Major Cell Organelles

  • Nucleus: Contains genetic material (DNA); controls cell activities; usually spherical.

  • Mitochondria: Site of ATP production; oval-shaped with inner folds (cristae).

  • Endoplasmic Reticulum (ER):

    • Rough ER: Studded with ribosomes; synthesizes proteins.

    • Smooth ER: Lacks ribosomes; synthesizes lipids and detoxifies chemicals.

  • Golgi Apparatus: Modifies, sorts, and packages proteins and lipids; stack of flattened sacs.

  • Lysosomes: Contain digestive enzymes; break down waste; spherical vesicles.

  • Ribosomes: Synthesize proteins; small, round structures, free or attached to ER.

  • Plasma Membrane: Phospholipid bilayer; controls entry/exit of substances.

  • 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 Between Cell Size and Surface Area

  • As a cell increases in size, its volume grows faster than its surface area.

  • This limits cell size because the surface area must allow for adequate exchange of materials.

Formula:

Microscopy Types and Uses

Types of Microscopes

  • Light Microscope: Uses light to view cells; suitable for living specimens.

  • Transmission Electron Microscope (TEM): Views internal cell structures; high resolution.

  • Scanning Electron Microscope (SEM): Views cell surfaces in 3D; high resolution.

Example: TEM is used to study mitochondria's internal structure.

Most Abundant Elements in Humans

Key Elements

  • Oxygen (O)

  • Carbon (C)

  • Hydrogen (H)

  • Nitrogen (N)

  • Calcium (Ca)

  • Phosphorus (P)

These elements make up over 99% of the human body mass.

Reductionism

Definition and Importance

  • Reductionism: Understanding complex systems by studying their simpler components.

  • Helps in identifying the function of individual molecules or organelles.

Importance of DNA

Role of DNA

  • Stores genetic information.

  • Directs synthesis of proteins.

  • Enables inheritance of traits.

Chemical Bonds

Types of Bonds

  • 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 of Molecules

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).

Interactions of Charged Elements

Electrostatic Attraction

  • Negatively charged elements (anions) attract positively charged elements (cations) to form ionic bonds.

pH Levels: Acids and Bases

pH Scale

  • pH < 7: Acidic

  • pH = 7: Neutral

  • pH > 7: Basic (alkaline)

Formula:

The Scientific Method

Steps in Order

  1. Observation

  2. Question

  3. Hypothesis

  4. Experiment

  5. Data Collection

  6. Conclusion

  7. Repeat/Revise

Homeostasis

Definition

  • Maintenance of a stable internal environment despite external changes.

  • Examples: Body temperature, blood glucose levels.

Elements vs. Molecules

Definitions

  • Element: Pure substance consisting of one type of atom (e.g., O2).

  • Molecule: Two or more atoms bonded together (e.g., H2O).

Characteristics of Living vs. Nonliving Things

Shared and Distinct Features

  • Living things: Organization, metabolism, homeostasis, growth, reproduction, response to stimuli, adaptation.

  • Nonliving things: May have organization but lack metabolism and reproduction.

Radioisotope Technology

Importance

  • Used in medical imaging (e.g., PET scans).

  • Helps in dating fossils and tracing biochemical pathways.

Changing Atomic Charges

Ion Formation

  • Atoms gain electrons to become negatively charged (anions).

  • Atoms lose electrons to become positively charged (cations).

Diffusion

Process

  • Movement of molecules from high to low concentration.

  • Passive process; does not require energy.

ATP Production in Electron Transport Chain

Protein Complex Involved

  • ATP Synthase is the protein complex where most ATP is produced during the electron transport chain.

Plasma Membrane Permeability

What Can and Cannot Pass

  • Can pass: Small, nonpolar molecules (e.g., O2, CO2), some small polar molecules (e.g., water).

  • Cannot pass: Large molecules, ions, and most polar molecules without transport proteins.

Active Transport

Definition

  • Movement of substances against their concentration gradient using energy (ATP).

  • Example: Sodium-potassium pump.

Isotonic Solutions

Effect on Cells

  • Isotonic solution: Solute concentration is equal inside and outside the cell.

  • No net movement of water; cell maintains its shape.

Glycolysis

Purpose

  • Breaks down glucose into pyruvate.

  • Produces ATP and NADH.

Electron Carriers in Citric Acid Cycle

Types and 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 (integral and peripheral)

  • Cholesterol

  • Carbohydrates (glycoproteins and glycolipids)

Connective Tissues

Types

  • Loose connective tissue

  • Dense connective tissue

  • Adipose tissue

  • Cartilage

  • Bone

  • Blood

Locations of Tissue Types

Examples

  • Loose connective: Under skin

  • Dense connective: Tendons, ligaments

  • Adipose: Fat storage areas

  • Cartilage: Joints, ear, nose

  • Bone: Skeleton

  • Blood: Circulatory system

Muscle Type in the Stomach

Type of Muscle

  • Smooth muscle is found in the stomach wall.

Tissue Types and Functions

Major Tissue Types

  • Epithelial: Covers surfaces, lines cavities, forms glands.

  • Connective: Supports, binds, and protects organs.

  • Muscle: Movement (skeletal, cardiac, smooth).

  • Nervous: Transmits electrical impulses.

Cell Junctions

Types of Junctions

  • Tight junctions: Seal cells together, prevent leakage.

  • Desmosomes: Anchor cells together, provide strength.

  • Gap junctions: Allow communication between cells.

Pearson Logo

스터디 프렙