Course: From Basic Science to Web Hosting
Module 03 — Computer Fundamentals
What Is a Computer?
Difficulty: Beginner → Intermediate
Prerequisites: Lesson 013 — What Is Binary?
Estimated time: 30 minutes
1. The Big Question
We now know:
Transistor
↓
Switch
↓
0 / 1
↓
Bit
↓
Data
But how do billions of these tiny electrical switches become something that can:
- run Linux,
- run WordPress,
- process network traffic,
- execute PHP,
- store databases,
- and serve websites?
The answer is:
A Computer Is a System for Processing Information
A simplified model is:
INPUT
↓
PROCESSING
↓
MEMORY
↓
OUTPUT
But a real computer is more accurately understood as several cooperating subsystems.
2. The Basic Computer Model
A simplified computer contains:
COMPUTER
│
┌────────────┼────────────┐
↓ ↓ ↓
CPU Memory I/O
│ │ │
└────────────┼────────────┘
↓
Storage
The major components are:
CPU
RAM
Storage
Input/Output
Interconnects
Power
3. CPU
CPU means:
Central Processing Unit
The CPU executes instructions.
Conceptually:
Instruction
↓
CPU
↓
Operation
↓
Result
The CPU contains structures such as:
Control logic
Arithmetic logic
Registers
Caches
Execution units
4. The CPU Is Made From Transistors
Remember:
Transistor
↓
Logic gate
↓
Digital circuit
↓
CPU
So the CPU is ultimately a highly complex semiconductor circuit.
Conceptually:
Silicon
↓
Transistors
↓
Logic gates
↓
Functional units
↓
CPU
5. What Does the CPU Actually Do?
A CPU repeatedly performs operations according to instructions.
A simplified instruction cycle is:
FETCH
↓
DECODE
↓
EXECUTE
↓
WRITE BACK
↓
NEXT INSTRUCTION
This happens extremely rapidly.
6. Fetch
The CPU needs to obtain an instruction.
Conceptually:
Memory
↓
Instruction
↓
CPU
The CPU uses a special register called the:
Program Counter
It indicates where the next instruction is located in the program’s address space.
7. Decode
The CPU determines what the instruction means.
For example, conceptually:
Instruction
↓
Decode
↓
ADD
or:
Instruction
↓
Decode
↓
LOAD
or:
Instruction
↓
Decode
↓
JUMP
The exact instructions depend on the CPU architecture.
8. Execute
The CPU performs the operation.
For an addition:
5 + 3
Conceptually:
Registers
↓
ALU
↓
Addition
↓
Result = 8
9. ALU
ALU means:
Arithmetic Logic Unit
It performs operations such as:
Addition
Subtraction
AND
OR
XOR
Comparison
Bit operations
Conceptually:
┌─────────────┐
Input → │ ALU │ → Result
└─────────────┘
10. Registers
Registers are very fast storage locations inside the CPU.
They hold values needed during computation.
Conceptually:
Register A → 5
Register B → 3
↓
ALU
↓
Register C → 8
Registers are much smaller than main memory but extremely important for CPU execution.
11. Memory
The CPU needs somewhere to store instructions and data.
This is where memory comes in.
A simplified hierarchy:
CPU registers
↓
CPU cache
↓
RAM
↓
SSD / storage
As we move downward:
Capacity generally increases
Access speed generally decreases
There are important architectural nuances, but this is a useful beginner model.
12. RAM
RAM means:
Random Access Memory
RAM is working memory used by the computer while programs are running.
For example:
Linux
↓
RAM
Nginx
↓
RAM
PHP
↓
RAM
WordPress
↓
RAM
RAM is generally volatile.
That means its contents normally disappear when power is removed.
13. Storage
Storage keeps data persistently.
Examples:
SSD
Hard disk
Flash storage
Conceptually:
Storage
↓
Files
↓
Operating system
↓
Applications
↓
Website
↓
Database
Unlike ordinary RAM, persistent storage retains information when power is removed.
14. RAM vs Storage
This distinction is extremely important for server administration.
| RAM | Storage |
|---|---|
| Working memory | Persistent data |
| Usually volatile | Non-volatile |
| Very fast | Slower than CPU registers/cache |
| Smaller | Usually larger |
| Running programs use it | Files are stored here |
For example:
WordPress files
↓
SSD
Running WordPress/PHP processes
↓
RAM
15. Input and Output
A computer also needs to communicate with the outside world.
Examples:
Keyboard
Mouse
Display
USB
Network interface
Disk controller
For a server, the network interface is particularly important.
Internet
↓
Network interface
↓
Server
16. Interconnects
Computer components need to communicate.
For example:
CPU
↕
Memory
↕
Storage
↕
Network
These connections use electrical signaling and protocols.
At the lowest level:
Transistors
↓
Electrical signals
↓
Digital interfaces
↓
Computer buses/interconnects
17. The Motherboard
In a traditional physical computer, the motherboard provides much of the physical infrastructure connecting components.
Conceptually:
CPU
│
┌──────┼──────┐
↓ ↓ ↓
RAM Storage Network
Modern systems can integrate many of these functions into a smaller number of chips, but the conceptual organization remains useful.
18. Power
None of this works without energy.
The power system converts electrical energy into appropriate voltage/current rails for the components.
Conceptually:
Electrical supply
↓
Power supply
↓
Voltage regulation
↓
CPU / RAM / SSD / Network
19. Computer Hardware vs Software
This distinction is essential.
Hardware
Physical components:
CPU
RAM
SSD
Motherboard
Network interface
Software
Instructions and data:
Operating system
Applications
Libraries
Configuration
Website
Database
So:
Hardware
+
Software
↓
Computer system
20. What Is an Operating System?
The hardware needs software that manages resources and provides useful abstractions.
That software is the:
Operating System
Examples:
Linux
Windows
macOS
Android
For your web hosting environment, the important one is:
Linux
21. What Does Linux Do?
Linux manages hardware resources and provides interfaces for applications.
Conceptually:
Applications
↓
System calls
↓
Linux kernel
↓
Hardware
For example:
Nginx
↓
Linux
↓
Network hardware
22. What Is the Kernel?
The kernel is the central privileged part of an operating system.
It manages resources such as:
CPU
Memory
Processes
Devices
Networking
Filesystems
Conceptually:
Applications
↓
Kernel
↓
Hardware
23. What Is a Process?
When you start a program, the operating system creates a running execution context called a process.
For example:
Nginx program
↓
Nginx processes
Similarly:
PHP program
↓
PHP-FPM processes
A process has things such as:
Code
Memory
State
Resources
Identifiers
24. What Is a Program?
A program is a set of instructions and associated data that can be executed by a computer.
Conceptually:
Program
↓
Machine instructions
↓
CPU
↓
Execution
25. What Is a File?
A file is a persistent representation of data managed by a filesystem.
Examples:
index.html
style.css
wp-config.php
image.jpg
database backup
On Linux:
/storage/websites/
is simply part of the filesystem hierarchy.
26. What Is a Filesystem?
A filesystem organizes persistent data into structures such as:
Directories
Files
Metadata
Permissions
Conceptually:
Disk
↓
Filesystem
↓
Directories
↓
Files
For example:
/storage/websites/templates.cresignsys.com/public/
can be understood as a path through the Linux filesystem.
27. What Is a Server?
A server is not necessarily a special type of physical machine.
A server is fundamentally a system that provides a service to clients.
For example:
Web server
DNS server
Database server
Mail server
File server
Your computer can technically act as a server.
28. What Makes a Computer a Web Server?
Install web-server software.
For example:
Computer
↓
Linux
↓
Nginx
↓
Web service
Nginx listens for network requests and sends appropriate responses.
29. Client and Server
Suppose you open:
https://templates.cresignsys.com
Your browser is the:
CLIENT
Your hosting machine is the:
SERVER
Conceptually:
Browser
│
│ Request
↓
Internet
│
↓
Server
│
│ Response
↓
Browser
30. The Web Server Stack
Your website can involve several software layers:
Internet
↓
Network interface
↓
Linux
↓
Nginx
↓
PHP-FPM
↓
WordPress
↓
MySQL
Each component has a different responsibility.
31. Nginx
Nginx is web-server/reverse-proxy software.
It can:
Receive HTTP/HTTPS requests
Serve static files
Proxy requests
Handle TLS
Route requests
Manage connections
32. PHP
WordPress is primarily written in PHP.
Conceptually:
Browser
↓
Nginx
↓
PHP-FPM
↓
WordPress PHP code
↓
Response
33. MySQL
WordPress needs a database.
Conceptually:
WordPress
↓
Database query
↓
MySQL
↓
Data
↓
WordPress
The database can contain:
Posts
Pages
Users
Settings
Metadata
Plugins' data
34. Your Hosting Stack
The system you are building can therefore be visualized as:
PHYSICAL / CLOUD INFRASTRUCTURE
↓
Virtual Machine
↓
Ubuntu
↓
Linux Kernel
↓
File System
↓
Nginx
/ \
HTTPS HTTP
↓
PHP-FPM
↓
WordPress
↓
MySQL
↓
Website
35. The Complete Journey
You have now travelled from basic physics to a real web-hosting architecture:
Matter
↓
Atom
↓
Electron
↓
Electric charge
↓
Electric field
↓
Voltage
↓
Current
↓
Circuit
↓
Semiconductor
↓
Transistor
↓
Logic
↓
Binary
↓
CPU
↓
Computer
↓
Operating System
↓
Linux
↓
Networking
↓
Internet
↓
HTTP/HTTPS
↓
Nginx
↓
PHP
↓
WordPress
↓
MySQL
↓
Website
↓
Web Hosting
This is the CresignSys Learn technology path.
36. Next Level
The next lesson should not jump directly to web hosting yet.
We should understand the layer immediately above the computer hardware:
Lesson 015 — What Is an Operating System?
We will go deeply into:
Computer hardware
↓
Boot process
↓
Firmware
↓
Bootloader
↓
Linux kernel
↓
Operating system
↓
Processes
↓
Memory
↓
Filesystems
↓
Users
↓
Permissions
↓
Services
↓
Commands
Then we will connect it directly to the commands you are already using on your Ubuntu web-hosting server.