11318 modules
Page 471
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GGES6004 2028-29
Freshwater Ecosystems
Freshwater Ecosystems initially considers the interplay between the physics, chemistry and biology of freshwater ecosystems. A comparative approach is adopted, in which upland streams, lowland rivers, lakes and other standing freshwater environments are considered. Emphasis is placed on the relationships between physics, chemistry and biology, and the differences in these relationships in contrasting freshwater environments. Theoretical aspects are supported by case study seminars. The module finishes by examining the interactions of humans with freshwater ecosystems, with emphasis on impacts and management. -
GGES2000 2028-29
Freshwater Ecosystems
Freshwater Ecosystems initially considers the interplay between the physics, chemistry and biology of freshwater ecosystems. A comparative approach is adopted, in which upland streams, lowland rivers, lakes and other standing freshwater environments are considered. Emphasis is placed on the relationships between physics, chemistry and biology, and the differences in these relationships in contrasting freshwater environments. Theoretical aspects are supported by case study seminars. The module finishes by examining the interactions of humans with freshwater ecosystems, with emphasis on impacts and management. -
GGES6004 2029-30
Freshwater Ecosystems
Freshwater Ecosystems initially considers the interplay between the physics, chemistry and biology of freshwater ecosystems. A comparative approach is adopted, in which upland streams, lowland rivers, lakes and other standing freshwater environments are considered. Emphasis is placed on the relationships between physics, chemistry and biology, and the differences in these relationships in contrasting freshwater environments. Theoretical aspects are supported by case study seminars. The module finishes by examining the interactions of humans with freshwater ecosystems, with emphasis on impacts and management. -
GGES2000 2029-30
Freshwater Ecosystems
Freshwater Ecosystems initially considers the interplay between the physics, chemistry and biology of freshwater ecosystems. A comparative approach is adopted, in which upland streams, lowland rivers, lakes and other standing freshwater environments are considered. Emphasis is placed on the relationships between physics, chemistry and biology, and the differences in these relationships in contrasting freshwater environments. Theoretical aspects are supported by case study seminars. The module finishes by examining the interactions of humans with freshwater ecosystems, with emphasis on impacts and management. -
GGES6004 2026-27
Freshwater Ecosystems
Freshwater Ecosystems initially considers the interplay between the physics, chemistry and biology of freshwater ecosystems. A comparative approach is adopted, in which upland streams, lowland rivers, lakes and other standing freshwater environments are considered. Emphasis is placed on the relationships between physics, chemistry and biology, and the differences in these relationships in contrasting freshwater environments. Theoretical aspects are supported by case study seminars. The module finishes by examining the interactions of humans with freshwater ecosystems, with emphasis on impacts and management. -
GGES2000 2030-31
Freshwater Ecosystems
Freshwater Ecosystems initially considers the interplay between the physics, chemistry and biology of freshwater ecosystems. A comparative approach is adopted, in which upland streams, lowland rivers, lakes and other standing freshwater environments are considered. Emphasis is placed on the relationships between physics, chemistry and biology, and the differences in these relationships in contrasting freshwater environments. Theoretical aspects are supported by case study seminars. The module finishes by examining the interactions of humans with freshwater ecosystems, with emphasis on impacts and management. -
GGES2000 2026-27
Freshwater Ecosystems
Freshwater Ecosystems initially considers the interplay between the physics, chemistry and biology of freshwater ecosystems. A comparative approach is adopted, in which upland streams, lowland rivers, lakes and other standing freshwater environments are considered. Emphasis is placed on the relationships between physics, chemistry and biology, and the differences in these relationships in contrasting freshwater environments. Theoretical aspects are supported by case study seminars. The module finishes by examining the interactions of humans with freshwater ecosystems, with emphasis on impacts and management. -
GGES6004 2030-31
Freshwater Ecosystems
Freshwater Ecosystems initially considers the interplay between the physics, chemistry and biology of freshwater ecosystems. A comparative approach is adopted, in which upland streams, lowland rivers, lakes and other standing freshwater environments are considered. Emphasis is placed on the relationships between physics, chemistry and biology, and the differences in these relationships in contrasting freshwater environments. Theoretical aspects are supported by case study seminars. The module finishes by examining the interactions of humans with freshwater ecosystems, with emphasis on impacts and management. -
GGES6004 2025-26
Freshwater Ecosystems
Freshwater Ecosystems initially considers the interplay between the physics, chemistry and biology of freshwater ecosystems. A comparative approach is adopted, in which upland streams, lowland rivers, lakes and other standing freshwater environments are considered. Emphasis is placed on the relationships between physics, chemistry and biology, and the differences in these relationships in contrasting freshwater environments. Theoretical aspects are supported by case study seminars. The module finishes by examining the interactions of humans with freshwater ecosystems, with emphasis on impacts and management. -
GGES6004 2027-28
Freshwater Ecosystems
Freshwater Ecosystems initially considers the interplay between the physics, chemistry and biology of freshwater ecosystems. A comparative approach is adopted, in which upland streams, lowland rivers, lakes and other standing freshwater environments are considered. Emphasis is placed on the relationships between physics, chemistry and biology, and the differences in these relationships in contrasting freshwater environments. Theoretical aspects are supported by case study seminars. The module finishes by examining the interactions of humans with freshwater ecosystems, with emphasis on impacts and management.