QSM301 Construction Measurement (3 of 4) Advanced Civil & Structural Works Assignment Sample SUSS Singapore
The construction measurement course takes students through the most advanced techniques in measuring building works. It teaches them how to accurately measure site preparation, excavation and framing for any type of structure or project they are working on- from an apartment complex up past skyscrapers. Students will also be able to identify and properly apply the latest construction technology available for streamlining the measurement process.
This course is perfect for those who wish to make a career out of construction surveying, or for those who simply want to update their skill set and add another credential to their resume. No matter what your goals are, this course will give you the ability to perform construction measurements with speed, accuracy, and confidence. Enrol today and get started on your way to becoming a construction measurement expert.
- Learn the most advanced techniques in measuring building works.
- How to accurately measure site preparation, excavation, and framing for any type of structure.
- Identify and properly apply the latest construction technology available.
- Gain confidence in your measurement skill set.
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Assignment Brief 1: Apply the relevant SMM rules for measuring quantities.
To measure quantities using the SMM rules, first determine what units you will be using. The base units for length, mass, and time are the meter (m), kilogram (kg), and second (s). Once you have determined the units, apply the following rules:
- Length: The length of an object is measured by its longest dimension; if the object is symmetrical, then the length is measured from end to end. For example, a meter stick would be 1 m long.
- Mass: The mass of an object is measured by its weight in grams; an object with a mass of 1 kg would weigh 9.81 N (newtons).
- Time: The time it takes for an object to complete one cycle is measured in seconds; for example, if an object completes a cycle in 2 minutes, then the time would be 120 s.
- Volume: The volume of an object is measured by its length times its width times its height (in meters); for example, a cube with a length of 1 m, a width of 0.5 m, and a height of 0.25 m would have a volume of 0.125 m3.
Assignment Brief 2: Identify scope and interpret drawings and specifications for measuring site preparation work, excavation of reinforced concrete framed & load-bearing structures, reinforced concrete super-structure works, including staircases and specialized piling in projects.
As a contractor, you will be responsible for measuring and interpreting drawings of reinforced concrete structures from start to finish. This includes site preparation work like removing vegetation before we begin any excavation or drilling operations that may take place on the project specifics; it also involves analyzing construction documents such as blueprints which define what’s being built at each step to determine how much material is required based off those specifications so our team can plan accordingly during transport logistics too.
A lot goes down behind closed doors when things get started up here – but only if someone has done their homework first by accurately assessing all potential risks involved, and that’s where your expertise as a contractor comes in. Not only will you be the one to determine if the site is ready for construction, but also you’ll need to investigate the stability of the soil and subsoil before any excavation can begin. This is important because if there are any signs that the ground may not be able to support the weight of the structure being built, it could lead to major safety hazards and financial losses on our end.
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Assignment Brief 3: Interpret the principles and rules of the Standard Method of Measurement for Building Works 2 (SMM2) relating to the measurement of site preparation work, excavation of reinforced concrete framed & load-bearing structures and reinforced concrete super-structure works, including staircases and specialized piling in projects.
The principles and rules of the SMM2 relating to site preparation work, excavation for reinforced concrete framed & load-bearing structures or superstructures including staircases can be interpreted to make sure that all measurements are precise and. accurate. This will allow for an efficient and cost-effective building project. All measurements must be made by the SMM2 to avoid any potential errors.
Some of the main principles that should be followed when interpreting the SMM2 include:
- ensuring that all measurements are made to the correct scale.
- making sure that all measurements are made in the correct units.
- ensuring that all measurements are taken from the correct points on the structure.
- taking into account the thickness of any materials when making measurements.
- ensuring that all dimensions are correctly recorded.
- recording all measurements clearly and concisely.
Assignment Brief 4: Prepare a list of items based on drawings and specifications for measuring quantities relating to the measurement of site preparation work, excavation of reinforced concrete framed & load-bearing structures and reinforced concrete super-structure works, including staircases and specialized piling in projects.
To ensure that the site preparation work, excavation of reinforced concrete framed & load-bearing structures and superstructure projects are done correctly we need to prepare a list with specifications on how much each item will Need. This way there can’t be any mistakes during installation or construction time.
Some of the important aspects that should be considered while making a specification list are:
- The type of soil on which the foundation will be laid
- The depth of the foundation
- The load-bearing capacity of the soil
- The type of concrete to be used for the foundation and superstructure
- The grade of reinforcement steel to be used
- The type of bricks to be used for the masonry work
- The size and type of windows to be used
- The type and size of doors to be used
- The type of roofing material to be used
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Assignment Brief 5: Apply the principles and rules of SMM2 to measure site preparation work, excavation of reinforced concrete framed & load-bearing structures and reinforced concrete super-structure works, including staircases and specialized piling in projects.
The principles and rules of SMM2 will help you measure site preparation work, excavation for reinforced concrete framed & load-bearing structures or superstructures like staircases. For specialized piling, you need to use a different method.
When measuring site preparation work, you will look at the area of land that needs to be cleared and graded. You will also take into account the depth of excavation that is required.
For the excavation of reinforced concrete framed & load-bearing structures, you will need to measure the volume of excavated material. You will also need to take into account the depth of excavation and the width of the trench.
For reinforced concrete super-structure works, you will need to measure the volume of concrete that is used. You will also need to take into account the height of the structure and the number of floors.
Assignment Brief 6: Demonstrate ability to ensure that quantity measured is accurate and consistent with SMM2 principles through bulk check.
To ensure accuracy and consistency with SMM2 principles, a bulk check is performed on all quantities measured. This bulk check helps to verify that the measurements taken are indeed accurate and consistent with the SMM2 principles. By performing this bulk check, we can be sure that all quantities measured are accurate and conform to SMM2 standards.
A bulk check is an important tool in ensuring accuracy and consistency in measurements. It helps to identify any errors or inconsistencies in the measurements and allows for corrections to be made. This bulk check is essential in ensuring that all quantities measured are accurate and conform to SMM2 principles.
The first step in ensuring that measurements are accurate and consistent is to conduct a bulk check. This involves taking a large number of measurements of the same quantity and then comparing the results to see if they are within an acceptable range. If they are not, then the measurements need to be repeated or corrected.
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