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BIOS 110 Exam 1 Review: Foundations of Human Biology (Chapters 1-4)

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Introduction to Biology

Domains of Life

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

  • Bacteria: Prokaryotic, unicellular organisms lacking a nucleus.

  • Archaea: Prokaryotic, unicellular, often found in extreme environments; genetically distinct from bacteria.

  • Eukarya: Eukaryotic organisms with cells containing a nucleus; includes animals, plants, fungi, and protists.

Hierarchy of Living Organisms

Biological organization follows a hierarchical structure from smallest to largest.

  • Atoms → Molecules → Organelles → Cells → Tissues → Organs → Organ Systems → Organism

Shared Characteristics of Living and Nonliving Things

  • Living things: Composed of cells, capable of growth, reproduction, response to stimuli, metabolism, and homeostasis.

  • Nonliving things: May have structure and organization but lack cellular processes and metabolism.

Scientific Method

The scientific method is a systematic approach to investigation.

  1. Observation

  2. Hypothesis

  3. Experiment

  4. Data Collection

  5. Analysis

  6. Conclusion

Homeostasis

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

  • Examples: Regulation of body temperature, blood glucose levels.

Chemistry of Life

Most Abundant Elements in Humanity

  • Carbon (C)

  • Hydrogen (H)

  • Oxygen (O)

  • Nitrogen (N)

  • Phosphorus (P)

  • Sulfur (S)

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, directs protein synthesis, and enables inheritance.

Types of Bonds

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

  • Covalent Bonds: Formed by sharing electrons between atoms.

  • Hydrogen Bonds: Weak attractions between partially charged atoms, important in water and DNA structure.

Polarity

  • 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).

Element vs. Molecule

  • 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

Cell organelles perform specialized functions essential for cell survival.

  • Nucleus: Stores DNA; round, central structure.

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

  • Ribosomes: Protein synthesis; small, spherical.

  • Endoplasmic Reticulum (ER): Protein and lipid synthesis; network of membranes.

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

  • Lysosomes: Digestion of cellular waste; spherical vesicles.

  • Plasma Membrane: Controls entry/exit; flexible, phospholipid bilayer.

  • Chloroplasts: Photosynthesis (plants); oval with internal stacks.

Cell Size and Surface Area

Cell size affects surface area-to-volume ratio, influencing transport efficiency.

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

Microscopy Types

  • Light Microscopy: Observes living cells, basic structure.

  • Electron Microscopy: High resolution, detailed internal structures.

  • Fluorescence Microscopy: Visualizes specific molecules using fluorescent tags.

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 phospholipid bilayer, proteins, cholesterol, and carbohydrates.

Transport Across 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 concentration gradients using energy (ATP).

  • Example: Sodium-potassium pump.

Isotonic Solutions

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

  • Cells retain normal shape in isotonic solutions.

Glycolysis

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

  • Occurs in cytoplasm; produces pyruvate, ATP, and NADH.

Electron Transport Chain & ATP Production

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

Electron Carriers in Citric Acid Cycle

  • NAD+ and FAD are electron carriers; they gain electrons from metabolic reactions.

Tissues & Organ Systems

Types of Tissues and Their Functions

  • Epithelial Tissue: Covers surfaces, lines cavities; protection, absorption.

  • Connective Tissue: Supports, binds, and protects; includes bone, blood, cartilage.

  • Muscle Tissue: Movement; includes skeletal, cardiac, and smooth muscle.

  • Nervous Tissue: Communication; neurons and supporting cells.

Types of Connective Tissues

  • Loose Connective Tissue: Cushions organs.

  • Dense Connective Tissue: Tendons and ligaments.

  • Cartilage: Flexible support.

  • Bone: Rigid support.

  • Blood: Transport of substances.

Location of Each Tissue Type

  • Epithelial: Skin, lining of digestive tract.

  • Connective: Bone, blood, tendons.

  • Muscle: Skeletal muscles, heart, stomach.

  • Nervous: Brain, spinal cord, nerves.

Type of Muscle in the Stomach

  • Smooth Muscle: Involuntary, non-striated; found in stomach walls.

Types of Junctions

  • Tight Junctions: Prevent leakage between cells.

  • Desmosomes: Provide mechanical strength.

  • Gap Junctions: Allow communication between cells.

Summary Table: Types of Cell Junctions

Junction Type

Main Function

Location Example

Tight Junction

Seal spaces between cells

Intestinal lining

Desmosome

Anchor cells together

Skin epithelium

Gap Junction

Allow passage of ions/molecules

Cardiac muscle

Summary Table: Types of Tissues

Tissue Type

Main Function

Location Example

Epithelial

Protection, absorption

Skin, gut lining

Connective

Support, transport

Bone, blood

Muscle

Movement

Heart, stomach

Nervous

Communication

Brain, nerves

Key Equations

  • Surface Area to Volume Ratio:

  • Diffusion Rate (Fick's Law): Where: D = diffusion coefficient, \(\Delta C\) = concentration difference, \(\Delta x\) = distance

  • ATP Production (Cellular Respiration):

Additional info: Academic context and definitions were expanded for clarity and completeness. Tables were inferred and constructed for tissue and junction types based on standard biology knowledge.

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