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What is VMS? Assemblages of mostly sulfide minerals that develop on the seafloor at locations of concentrated hydrothermal discharge, relates to a kind of ore deposit that’s mined from existing oceanic crust formed underwater are Volcanogenic Massive Sulfides (VMS) Deposit. ...
Geology 101 is the study of the Earth and its materials, structures, processes, and history. It is a broad field that encompasses many different disciplines, including mineralogy, petrology, paleontology, and geophysics. Geologists study the Earth’s physical features, including its rocks, ...
In engineering and geology, a fault is a fracture or discontinuity in the Earth’s crust where movement or displacement has occurred. Types of faults Causes of Fault The causes of faults are diverse and depend on the type of fault. ...
Sand dunes are dynamic landforms created by the wind-driven accumulation of sand. They are typically found in deserts, coastal areas, and even some inland regions. Sand dunes can take on various shapes and sizes, influenced by factors such as wind ...
An ophiolite is a section of oceanic crust and upper mantle that has been uplifted and exposed above sea level due to tectonic processes. Ophiolites are important geological features because they provide a window into the Earth’s interior and allow ...
Unveiling the Mysteries of Igneous Rocks Introduction: Igneous rocks, born from the fiery depths of the Earth, hold a unique place in the geological tapestry. Formed through the solidification of molten magma or lava, these rocks play a pivotal role ...
Geologic strata, also known as rock layers or rock formations, are the result of the sedimentation, deposition, and cementation of minerals, rocks, and other Earth materials over millions of years. These strata provide a window into Earth’s geological history, revealing ...
Coal, a fossil fuel formed over millions of years, holds a pivotal role in powering civilizations and shaping energy landscapes. This article explores the intricate details of coal, from its formation to the various types that fuel industries worldwide. Formation ...
Introduction: Sedimentary Exhalative (SEDEX) deposits stand as intriguing geological formations, offering a glimpse into the subaqueous processes that shape the Earth’s crust. These deposits, characterized by the accumulation of minerals in marine sedimentary basins, play a significant role in the ...
There are several sampling techniques used in mineral exploration and mining, depending on the nature and characteristics of the deposit. Some of the most common techniques include: Ultimately, the choice of sampling technique will depend on the specific objectives of ...
Geology and engineering geology are related fields, but they have different focuses and applications: 1. Geology: - Geology is the broader study of the Earth's physical structure, composition, history, and natural processes. - Geologists investigate the Earth's interior, its rock formations,Read more
Geology and engineering geology are related fields, but they have different focuses and applications:
1. Geology:
– Geology is the broader study of the Earth’s physical structure, composition, history, and natural processes.
– Geologists investigate the Earth’s interior, its rock formations, minerals, fossils, and the processes that have shaped the planet over geological time scales.
– Geologists often work in academia, research, environmental consulting, and natural resource exploration, among other areas.
– The primary goal of geology is to understand the Earth’s geological history and processes.
2. Engineering Geology:
– Engineering geology is a specialized branch of geology that focuses on the application of geological knowledge to engineering projects and construction.
– Engineering geologists assess geological conditions at construction sites, including soil stability, rock quality, groundwater levels, and potential geological hazards.
– They provide essential information and recommendations to engineers and construction professionals to ensure the safe and cost-effective completion of projects like building foundations, tunnels, dams, and highways.
– The primary goal of engineering geology is to mitigate geological risks and ensure the stability of engineering structures.
In summary, while both geology and engineering geology involve the study of the Earth’s subsurface, geology has a broader scope, encompassing the planet’s natural history and processes, whereas engineering geology is specifically focused on applying geological knowledge to engineering and construction projects to address geological challenges and risks.
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