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Human Biology Study Guide: Introduction, Chemistry of Life, Cells, and Tissues

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Introduction to Biology

Domains of Life

The domain system classifies all living organisms into three major groups based on genetic and cellular differences.

  • Bacteria: Single-celled prokaryotes with no nucleus.

  • Archaea: Single-celled prokaryotes, often found in extreme environments, genetically distinct from bacteria.

  • Eukarya: Organisms with cells containing a nucleus, including animals, plants, fungi, and protists.

Hierarchy of Living Organisms

Biological organization follows a hierarchical structure from smallest to largest.

  • Atom → Molecule → Organelle → Cell → Tissue → Organ → Organ System → Organism

Shared Characteristics of Living and Nonliving Things

  • Living things: Exhibit metabolism, growth, reproduction, response to stimuli, and homeostasis.

  • Nonliving things: May have structure and mass but lack biological processes.

Scientific Method

The scientific method is a systematic approach to investigation.

  • Observation

  • Hypothesis

  • Experiment

  • Data Collection

  • Analysis

  • Conclusion

Homeostasis

Homeostasis is the maintenance of a stable internal environment despite external changes.

  • Example: Regulation of body temperature.

Chemistry of Life

Most Abundant Elements in Humans

  • Oxygen (O)

  • Carbon (C)

  • Hydrogen (H)

  • Nitrogen (N)

  • Calcium (Ca)

  • Phosphorus (P)

Reductionism

Reductionism is the approach of understanding complex systems by studying their simpler components.

  • Example: Studying cell organelles to understand cell function.

Importance of DNA

  • DNA stores genetic information and directs cellular activities.

  • Essential for inheritance, protein synthesis, and cell division.

Types of Chemical Bonds

  • Ionic Bonds: Formed by transfer of electrons between atoms.

  • Covalent Bonds: Formed by sharing electrons between atoms.

  • Hydrogen Bonds: Weak attractions between hydrogen and electronegative atoms (e.g., oxygen).

Polarity of Molecules

  • Polar molecules: Unequal sharing of electrons, resulting in partial charges (e.g., water).

  • Nonpolar molecules: Equal sharing of electrons, no charge separation (e.g., methane).

Acids, Bases, and pH

  • Acidic: pH < 7

  • Basic (Alkaline): pH > 7

  • Neutral: pH = 7

Radioisotope Technology

  • Used in medical imaging, cancer treatment, and biological research.

Atoms and Charge

  • Atoms change charge by gaining or losing electrons, forming ions.

  • Negatively charged elements (anions) attract positively charged elements (cations).

Elements vs. Molecules

  • Element: Pure substance consisting of one type of atom.

  • Molecule: Two or more atoms bonded together.

Structure & Function of Cells

Cell Organelles: Names, Functions, and Shapes

  • Nucleus: Stores DNA; spherical shape.

  • Mitochondria: Site of ATP production; oval shape.

  • Ribosomes: Protein synthesis; small, round.

  • Endoplasmic Reticulum (ER): Synthesis of proteins (rough ER) and lipids (smooth ER); tubular network.

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

  • Lysosomes: Digestion of cellular waste; spherical.

  • Plasma Membrane: Controls entry/exit; flexible, thin boundary.

Cell Size and Surface Area

Cell size is limited by the surface area-to-volume ratio, affecting nutrient and waste exchange.

  • Smaller cells have higher surface area relative to volume, allowing efficient transport.

Microscopy Types

  • Light Microscopy: Used for viewing live cells and tissues.

  • Electron Microscopy: Used for high-resolution imaging of cell structures.

Diffusion

Diffusion is the passive movement of molecules from high to low concentration.

  • Important for gas exchange and nutrient transport.

Plasma Membrane Structure

  • Composed of a phospholipid bilayer with embedded proteins.

  • Selective permeability allows certain substances to pass.

Transport Across the Plasma Membrane

  • Can pass: Small, nonpolar molecules (e.g., O2, CO2).

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

Active Transport

Active transport moves substances against their concentration gradient using energy (ATP).

  • Example: Sodium-potassium pump.

Isotonic Solutions

An isotonic solution has equal solute concentration as the cell, causing no net movement of water.

  • Cells retain their shape in isotonic solutions.

Glycolysis

Glycolysis is the first step in cellular respiration, breaking down glucose to produce ATP.

  • Occurs in the cytoplasm.

  • Produces pyruvate, ATP, and NADH.

Electron Transport Chain and ATP Production

  • Most ATP is produced in the ATP synthase protein complex during the electron transport chain.

Electron Carriers in Citric Acid Cycle

  • NADH and FADH2 are electron carriers.

  • They receive electrons from metabolic reactions and deliver them to the electron transport chain.

Tissues & Organ Systems

Types of Tissues and Their Functions

  • Epithelial Tissue: Covers surfaces, lines cavities, protects and absorbs.

  • Connective Tissue: Supports, binds, and protects organs.

  • Muscle Tissue: Enables movement.

  • Nervous Tissue: Transmits electrical signals.

Types of Connective Tissues

  • Loose connective tissue: Cushions organs.

  • Dense connective tissue: Forms tendons and ligaments.

  • Adipose tissue: Stores fat.

  • Cartilage: Provides flexible support.

  • Bone: Provides rigid support.

  • Blood: Transports substances.

Locations of Tissue Types

  • Epithelial: Skin, lining of digestive tract.

  • Connective: Tendons, fat, bone, blood.

  • Muscle: Skeletal muscles, heart, stomach.

  • Nervous: Brain, spinal cord, nerves.

Muscle Type in the Stomach

  • Smooth muscle is found in the stomach, enabling involuntary contractions.

Types of Junctions

  • Tight junctions: Prevent leakage between cells.

  • Desmosomes: Provide mechanical strength.

  • Gap junctions: Allow communication between cells.

Summary Table: Types of Tissues and Their Functions

Type of Tissue

Main Function

Location Example

Epithelial

Protection, absorption

Skin, intestines

Connective

Support, binding

Bone, blood, tendons

Muscle

Movement

Skeletal muscle, stomach (smooth muscle)

Nervous

Signal transmission

Brain, nerves

Summary Table: Types of Cell Junctions

Junction Type

Function

Tight Junction

Seal spaces between cells

Desmosome

Provide structural support

Gap Junction

Allow communication

Key Equations

  • Surface Area to Volume Ratio:

  • ATP Production (Cellular Respiration):

  • pH Calculation:

Additional info: Academic context was added to expand brief points and ensure completeness for exam preparation.

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