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BIOS 110 Exam 1 Study Guide: 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 genetics.

  • Bacteria: Prokaryotic, unicellular organisms lacking a nucleus.

  • Archaea: Prokaryotic, 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: Exhibit organization, metabolism, responsiveness, growth, development, reproduction, and homeostasis.

  • Nonliving things: May have structure but lack metabolism, growth, and reproduction.

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.

  • Example: Regulation of body temperature.

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 Chemical 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 of Molecules

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

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

Acids, Bases, and pH

  • Acidic: pH < 7

  • Basic (Alkaline): pH > 7

  • Neutral: pH = 7

Elements vs. Molecules

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

  • Molecule: Two or more atoms bonded together.

Radioisotope Technology

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

Atomic Charge Changes

  • Atoms gain or lose electrons to become ions (charged particles).

Structure & Function of Cells

Cell Organelles: Names, Functions, and Shapes

Cell organelles perform specialized functions essential for cell survival.

Organelle

Function

Shape

Nucleus

Stores DNA, controls cell activities

Round, central

Mitochondria

Produces ATP via cellular respiration

Oval, double membrane

Ribosomes

Protein synthesis

Small, spherical

Endoplasmic Reticulum (ER)

Protein and lipid synthesis

Network of membranes

Golgi Apparatus

Modifies, sorts, and packages proteins

Stacked, flattened sacs

Lysosomes

Digests waste and cellular debris

Small, spherical

Chloroplasts

Photosynthesis (plants only)

Oval, green

Vacuole

Storage of substances

Large, central (plants)

Cell Size and Surface Area Relationship

  • Smaller cells have a higher surface area-to-volume ratio, facilitating efficient exchange of materials.

  • As cell size increases, surface area grows slower than volume.

Microscopy Types and Uses

Type

Use

Light Microscope

Viewing live cells and tissues

Electron Microscope

High-resolution imaging of cell structures

Fluorescence Microscope

Visualizing specific molecules with fluorescent tags

Chemistry of Life (continued)

Diffusion

  • Diffusion: Movement of molecules from high to low concentration.

  • Occurs passively, without energy input.

Plasma Membrane Structure and Function

  • Composed of a phospholipid bilayer with embedded proteins.

  • Controls entry and exit of substances.

What Can and Can't Pass Through the Plasma Membrane

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

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

Active Transport

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

  • Example: Sodium-potassium pump.

Isotonic Solutions

  • Isotonic solution: Equal solute concentration inside and outside the cell.

  • Cells retain their shape; no net water movement.

Tissues & Organ Systems

Types of Connective Tissues

Type

Function

Location

Loose Connective

Support, binding

Under skin

Dense Connective

Strength, flexibility

Tendons, ligaments

Adipose

Fat storage

Under skin, around organs

Cartilage

Support, cushioning

Joints, ear, nose

Bone

Support, protection

Skeletal system

Blood

Transport

Circulatory system

Types of Tissues and Their Functions

  • Epithelial: Covers surfaces, lines cavities.

  • Connective: Supports and binds other tissues.

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

  • Nervous: Transmits signals.

Location of Each Tissue Type

  • Epithelial: Skin, lining of digestive tract.

  • Connective: Tendons, ligaments, fat, bone, blood.

  • Muscle: Skeletal muscles, heart (cardiac), stomach (smooth).

  • Nervous: Brain, spinal cord, nerves.

Type of Muscle in the Stomach

  • Smooth muscle: Involuntary, non-striated muscle found in the stomach and other internal organs.

Types of Junctions

  • Tight junctions: Seal cells together, prevent leakage.

  • Desmosomes: Anchor cells, provide mechanical strength.

  • Gap junctions: Allow communication between cells.

Cellular Respiration & Metabolism

Glycolysis

  • First step in cellular respiration; breaks down glucose into pyruvate.

  • Produces ATP and NADH.

Electron Transport Chain & ATP Production

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

Electron Carriers in the Citric Acid Cycle

  • NAD+ and FAD are electron carriers.

  • They gain electrons from metabolic intermediates and transfer them to the electron transport chain.

Key Equations

  • Cellular respiration overall equation:

  • ATP synthesis:

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