8498 modules
Page 516
-
HIST1016 2026-27
Masada: History and Myth
The Dead Sea fortress Masada was the last stronghold of resistance to Roman rule in Judea. Following the outbreak of revolt against Rome (66) and the fall of Jerusalem to the soldiers of the Roman emperor Vespasian (70), the fortress was finally taken in 73/74 AD. The memory of these events has had a deep and lasting effect on western civilisation.
The story of Masada is told by Flavius Josephus, first a commander on the rebel side, later a prisoner of Vespasian, and, finally, under Vespasian’s patronage in Rome, historian of the Judean War (66-73/74) – posthumously, one of the most read historians of all time. In his lifetime, serious questions were asked about Josephus’s loyalties (“traitor or patriot”?), and his truthfulness – those questions continue to be asked by historians today as they explore Josephus’s complex identity. His account of Masada supplies a classic case study for exploring Josephus’s credibility and the politics of his history writing. As Josephus tells it, armed rebels made Masada their home in 66, men, women, and children, inspired by religious ideology: “No ruler but God”. As proof of their beliefs, the leaders of Masada chose to kill themselves and their families (960 people) rather than surrender to the Roman forces who had laid siege to the fortress. Josephus condemns the rebels of Masada for their resistance to Rome and blames their ideology for the catastrophe of the war. But in their self-inflicted death, he also portrays them as heroes, admired for their bravery by the Roman soldiers who found their bodies. The story raises many questions. Not least, what really happened at Masada?
Following the excavation of Masada in the 1960s, the fortress has yielded a remarkable treasure-trove of evidence about the lives of the people who lived there and the Roman siege operation, which brought their occupation to an end. For historians of the ancient world, this is a rare and precious chance to compare the history of a major event with material evidence from the site of action. Does it confirm or refute Josephus? Can the archaeology tell us about that rarest of things, the viewpoint of rebels against Roman rule? In the modern world, the rebels’ last stand at Masada has become a powerful symbol of heroic resistance but also of survival: “Masada shall not fall again”. -
CHEM6125 2025-26
Mass Spectrometry: Theory and Application
Mass spectrometry is the key enabling technology for the 21st century. It delivers practical and sustainable innovations to enable significant advancements in areas such as healthcare delivery, life sciences, environmental management, energy, food safety, and water quality. This module will explore the tenets of modern mass spectrometry and introduce advanced techniques and applications. -
CHEM6125 2026-27
Mass Spectrometry: Theory and Application
Mass spectrometry is the key enabling technology for the 21st century. It delivers practical and sustainable innovations to enable significant advancements in areas such as healthcare delivery, life sciences, environmental management, energy, food safety, and water quality. This module will explore the tenets of modern mass spectrometry and introduce advanced techniques and applications. -
CHEM6139 2028-29
Masters of Chemistry 1 year placement
-
FEEG2005 2027-28
Materials and Structures
This second year module continues to develop the links between structures and materials, building on the fundamentals established in the first year course on mechanics, structures and materials. The relationship between composition, microstructure and properties of materials is linked to a deeper understanding of their structural performance. This assessment of structural performance is also developed through more advanced stress and deflection analyses for more complex engineering components and systems. This combination of approaches will strengthen the students’ understanding of the interplay between materials engineering and structural design. This module also develops the foundations for more advanced third year and fourth year modules in materials and solid mechanics. -
FEEG2005 2028-29
Materials and Structures
This second year module continues to develop the links between structures and materials, building on the fundamentals established in the first year course on mechanics, structures and materials. The relationship between composition, microstructure and properties of materials is linked to a deeper understanding of their structural performance. This assessment of structural performance is also developed through more advanced stress and deflection analyses for more complex engineering components and systems. This combination of approaches will strengthen the students’ understanding of the interplay between materials engineering and structural design. This module also develops the foundations for more advanced third year and fourth year modules in materials and solid mechanics. -
FEEG2005 2026-27
Materials and Structures
This second year module continues to develop the links between structures and materials, building on the fundamentals established in the first year course on mechanics, structures and materials. The relationship between composition, microstructure and properties of materials is linked to a deeper understanding of their structural performance. This assessment of structural performance is also developed through more advanced stress and deflection analyses for more complex engineering components and systems. This combination of approaches will strengthen the students’ understanding of the interplay between materials engineering and structural design. This module also develops the foundations for more advanced third year and fourth year modules in materials and solid mechanics. -
SESG6042 2029-30
Materials for Transport Applications
This module considers metallic alloys with special reference to applications in transport applications. The main materials considered are aluminium, titanium and nickel based alloys, and steel. Also metal based composites, and high temperature materials such as intermetallics and ceramics are considered. Examples of applications are drawn from aerospace, automotive and marine industries. The microstructural development of the materials is considered in detail, and the use of "microstructural engineering" in materials design and selection explored. -
SESG6042 2031-32
Materials for Transport Applications
This module considers metallic alloys with special reference to applications in transport applications. The main materials considered are aluminium, titanium and nickel based alloys, and steel. Also metal based composites, and high temperature materials such as intermetallics and ceramics are considered. Examples of applications are drawn from aerospace, automotive and marine industries. The microstructural development of the materials is considered in detail, and the use of "microstructural engineering" in materials design and selection explored. -
SESG6042 2028-29
Materials for Transport Applications
This module considers metallic alloys with special reference to applications in transport applications. The main materials considered are aluminium, titanium and nickel based alloys, and steel. Also metal based composites, and high temperature materials such as intermetallics and ceramics are considered. Examples of applications are drawn from aerospace, automotive and marine industries. The microstructural development of the materials is considered in detail, and the use of "microstructural engineering" in materials design and selection explored.