Introduction to Fundamentals of Physics I

Cod y Modiwl
PH04020
Teitl y Modiwl
Introduction to Fundamentals of Physics I
Blwyddyn Academaidd
2026/2027
Semester
Semester 1
Cyd-gysylltydd y Modiwl
Dr Tom Knight
Rhestr Ddarllen
Gweld ar Aspire
Rhagofynion

GCSE Mathematics and Science or equivalent
Staff Eraill sy'n Cyfrannu
Dr Xing Li
Dr Gwenllian Williams

Dulliau Asesu

Math o Asesiad

Manylion Asesiad

Cyfran

Asesiad Semester Test: 2 Awr 15%
Asesiad Semester Test: 2 Awr 15%
Arholiad Semester Exam: 3 Awr 70%
Asesiad Ailsefyll Test: 2 Awr 15%
Asesiad Ailsefyll Test: 2 Awr 15%
Arholiad Ailsefyll Exam: 3 Awr 70%

Canlyniadau Dysgu

Wedi cwblhau'r modiwl dylai'r myfyrwyr fedru:

  1. Recall and apply the physics of the structure of matter, thermal properties of matter, kinetic theory of gases
  2. Demonstrate the ability to solve problems on the structure of matter, thermal properties of matter, kinetic theory of gases
  3. Recall and apply the physics underlying objects in motion
  4. Demonstrate the ability to solve problems on objects in motion
  5. Produce qualitative descriptions of the macroscopic and microscopic behaviour of matter

Disgrifiad cryno

The module explores the current understanding of the effects of forces on the properties and behaviour of matter. A qualitative introduction to the four fundamental forces gives the context to the behaviour of matter from sub-atomic particles, to solids and gases, through to the orbital motions of massive planetary bodies.

Nod

This module aims to enable students of physics, and other students in STEM fields, with a broad base of knowledge required to understand the behaviour of matter in the form of objects and matter. Such context is essential for students to be able to study physics at undergraduate level.

Cynnwys

Syllabus Outline:

FORCES
- Definitions of force
- Gravitational, electromagnetic, strong- and weak-nuclear forces; their range and relative strengths

STRUCTURE OF MATTER
- Atomic structure and behaviour: subatomic particles, isotopes, radioactivity
- Quantisation of energy: photon, electron energy levels within atoms, quantum numbers, emission spectra
- Interatomic bonding to form molecules, intermolecular forces
- Interatomic bonding to form solid lattices
- Deformation of solids: stress, strain, elastic moduli, plastic deformation

KINETIC THEORY
- Kinetic theory of gases
- Equations of state (qualitative)
- Avogadro's number, the mole
- Ideal gas: derivation of the equation of state of an ideal gas from the kinetic theory
- Isochoric, isobaric, isothermal and adiabatic processes

THERMAL PHYSICS
- Macroscopic properties of systems in terms of the microscopic behaviour of molecules, pressure, rms velocity, Maxwell-Boltzmann distribution
- First law of thermodynamics: heat, work, internal energy
- Thermal properties of matter: specific heat capacity, latent heat, thermal conductivity, thermal expansion

OBJECTS IN MOTION
- Displacement, velocity, acceleration
- Linear motion with constant acceleration
- Forces in equilibrium
- Newton's three laws of motion
- Impulse, conservation of momentum
- Circular motion: angular velocity, centripetal force, centripetal acceleration
- Motion under gravity: projectile motion, Kepler's laws of planetary motion, gravitational field and potential, escape velocity

Sgiliau Modiwl

Math o Sgiliau

Manylion Sgiliau

Datrys Problemau Creadigol Throughout the module
Meddwl beirniadol a dadansoddol Throughout the module
Sgiliau Pwnc-benodol Throughout the module

Nodau

Mae'r modiwl hwn yn cydymffurfio a FfCChC Lefel 3