Mungkin Anda Juga Suka
10th Class Physics New Book 2026
10th Class Physics Chapter 1 - Class 10 Physics Chapter 10 - Physics Class 10 Chapter 1
11th Class Physics Chapter 8 - 1st Year Physics Chapter 8 Waves - FSc Part 1 Physics Chapter 8
11th Class Physics Chapter 4 - 1st Year Physics Chapter 4 Work and Energy - FSc Part 1 Physics Chapter 4
First Year Physics book 1 Chapter 5 Circular Motion
OLevel Physics by MHBA Pressure
Foundations of Quantum Physics (Urdu/Hindi)
Class 10 Federal Physics Textbook
9th Class Physics Chapter 3 New Book 2025
12 Physics | Electric Fields
SS 1 Physics
SS 3 Physics
SS 2 Physics
SS 2 Physical
SS 1 Physical
SSS10 Physical
SSS12 Physical
SSS11 Physical
SSS10 Physical
SSS 2 Physics
SSS 3 Physics
Year7 Physics
Year9 Physics
Year8 Physics
Komentar
6 Komentar
Link to our latest notes and resources: https://drive.google.com/drive/u/2/folders/15FnZdp3NJ15WmXnkrSWgi5ltd5rUI9Bg 16 Thermodynamics An understanding of energy from Cambridge IGCSE/O Level Physics or equivalent is assumed. 16.1 Internal energy Candidates should be able to: 1 understand that internal energy is determined by the state of the system and that it can be expressed as the sum of a random distribution of kinetic and potential energies associated with the molecules of a system 2 relate a rise in temperature of an object to an increase in its internal energy 16.2 The first law of thermodynamics Candidates should be able to: 1 recall and use W = p∆V for the work done when the volume of a gas changes at constant pressure and understand the difference between the work done by the gas and the work done on the gas 2 recall and use the first law of thermodynamics ∆U = q + W expressed in terms of the increase in internal energy, the heating of the system (energy transferred to the
Link to our latest notes and resources: https://drive.google.com/drive/u/2/folders/15FnZdp3NJ15WmXnkrSWgi5ltd5rUI9Bg 16 Thermodynamics An understanding of energy from Cambridge IGCSE/O Level Physics or equivalent is assumed. 16.1 Internal energy Candidates should be able to: 1 understand that internal energy is determined by the state of the system and that it can be expressed as the sum of a random distribution of kinetic and potential energies associated with the molecules of a system 2 relate a rise in temperature of an object to an increase in its internal energy 16.2 The first law of thermodynamics Candidates should be able to: 1 recall and use W = p∆V for the work done when the volume of a gas changes at constant pressure and understand the difference between the work done by the gas and the work done on the gas 2 recall and use the first law of thermodynamics ∆U = q + W expressed in terms of the increase in internal energy, the heating of the system (energy transferred to the
Link to our latest notes and resources: https://drive.google.com/drive/u/2/folders/15FnZdp3NJ15WmXnkrSWgi5ltd5rUI9Bg 16 Thermodynamics An understanding of energy from Cambridge IGCSE/O Level Physics or equivalent is assumed. 16.1 Internal energy Candidates should be able to: 1 understand that internal energy is determined by the state of the system and that it can be expressed as the sum of a random distribution of kinetic and potential energies associated with the molecules of a system 2 relate a rise in temperature of an object to an increase in its internal energy 16.2 The first law of thermodynamics Candidates should be able to: 1 recall and use W = p∆V for the work done when the volume of a gas changes at constant pressure and understand the difference between the work done by the gas and the work done on the gas 2 recall and use the first law of thermodynamics ∆U = q + W expressed in terms of the increase in internal energy, the heating of the system (energy transferred to the
Link to our latest notes and resources: https://drive.google.com/drive/u/2/folders/15FnZdp3NJ15WmXnkrSWgi5ltd5rUI9Bg 16 Thermodynamics An understanding of energy from Cambridge IGCSE/O Level Physics or equivalent is assumed. 16.1 Internal energy Candidates should be able to: 1 understand that internal energy is determined by the state of the system and that it can be expressed as the sum of a random distribution of kinetic and potential energies associated with the molecules of a system 2 relate a rise in temperature of an object to an increase in its internal energy 16.2 The first law of thermodynamics Candidates should be able to: 1 recall and use W = p∆V for the work done when the volume of a gas changes at constant pressure and understand the difference between the work done by the gas and the work done on the gas 2 recall and use the first law of thermodynamics ∆U = q + W expressed in terms of the increase in internal energy, the heating of the system (energy transferred to the
Link to our latest notes and resources: https://drive.google.com/drive/u/2/folders/15FnZdp3NJ15WmXnkrSWgi5ltd5rUI9Bg 16 Thermodynamics An understanding of energy from Cambridge IGCSE/O Level Physics or equivalent is assumed. 16.1 Internal energy Candidates should be able to: 1 understand that internal energy is determined by the state of the system and that it can be expressed as the sum of a random distribution of kinetic and potential energies associated with the molecules of a system 2 relate a rise in temperature of an object to an increase in its internal energy 16.2 The first law of thermodynamics Candidates should be able to: 1 recall and use W = p∆V for the work done when the volume of a gas changes at constant pressure and understand the difference between the work done by the gas and the work done on the gas 2 recall and use the first law of thermodynamics ∆U = q + W expressed in terms of the increase in internal energy, the heating of the system (energy transferred to the
Link to our latest notes and resources: https://drive.google.com/drive/u/2/folders/15FnZdp3NJ15WmXnkrSWgi5ltd5rUI9Bg 16 Thermodynamics An understanding of energy from Cambridge IGCSE/O Level Physics or equivalent is assumed. 16.1 Internal energy Candidates should be able to: 1 understand that internal energy is determined by the state of the system and that it can be expressed as the sum of a random distribution of kinetic and potential energies associated with the molecules of a system 2 relate a rise in temperature of an object to an increase in its internal energy 16.2 The first law of thermodynamics Candidates should be able to: 1 recall and use W = p∆V for the work done when the volume of a gas changes at constant pressure and understand the difference between the work done by the gas and the work done on the gas 2 recall and use the first law of thermodynamics ∆U = q + W expressed in terms of the increase in internal energy, the heating of the system (energy transferred to the
