# BSR512 Measurement And Estimating I UITM Assignment Sample Malaysia

The BSR512 Measurement and Estimating I course is a great opportunity for construction professionals to gain the knowledge and skills needed to confidently take on measurements and estimations in the real world. This course will cover crucial concepts such as determining precise measurements, estimating the costs of materials, understanding current industry standards, and more.

These powerful lessons will ensure that students have a solid foundation of measurement and estimating expertise that can be applied to any upcoming project. With the right instruction and guidance, BSR512 Measurement and Estimating I can help participants become more effective professionals!

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Here, we will present several assignment tasks which include:

### Assignment Task 1: Explain with clear specifications for measured item in the drawing and use of performance specifications.

To explain with clear specifications for a measured item in a drawing, we need to identify the item to be measured and the relevant performance specifications. Let’s assume that we are working with a mechanical drawing of a machine part, and we need to measure a critical dimension to ensure the part will function properly.

The first step is to identify the dimension to be measured. Let’s say we are measuring the diameter of a hole in the part. The drawing will typically provide a view of the hole, along with its nominal dimension and tolerance. For example, the drawing might show a circle with a diameter of 10 mm, and a tolerance of ±0.1 mm.

The next step is to determine the appropriate tools for measuring the dimension. In this case, we might use a micrometer or a gauge pin to measure the diameter of the hole.

Now, let’s discuss the performance specifications. Performance specifications are a set of criteria that define how well the item must perform in order to meet the requirements of the design. In the case of our machine part, the performance specification for the diameter of the hole might be that it must be within the specified tolerance of ±0.1 mm.

To ensure that the part meets the performance specification, we need to perform a measurement and compare the result to the specification. If the measured dimension falls within the specified tolerance, the part is deemed acceptable. If the measured dimension falls outside the tolerance, the part is rejected.

### Assignment Task 2: Determine super structure works on cost implication during construction development.

Superstructure works refer to the construction of the parts of a building or structure that are above the foundation level, such as walls, columns, floors, and roofs. The cost of superstructure works during construction development depends on several factors, including:

1. Type of materials: The cost of superstructure works will vary depending on the type of materials used. For example, using concrete or steel will generally be more expensive than using wood or brick.
2. Size and complexity of the structure: A larger and more complex structure will typically require more materials, labor, and time to construct, which will increase the cost of the superstructure works.
3. Location of the structure: The cost of superstructure works will also depend on the location of the structure. For example, if the site is in a remote location, it may be more expensive to transport materials and labor to the site.
4. Labor costs: The cost of labor will also affect the cost of superstructure works. This will depend on the location of the project, the availability of skilled labor, and any labor regulations that may affect the cost of construction.
5. Design and engineering requirements: If the structure has complex design or engineering requirements, the cost of the superstructure works will likely be higher to accommodate these requirements.
6. Quality and safety requirements: The cost of superstructure works will also depend on the quality and safety requirements of the project. For example, if the project requires high-quality materials or safety features, this will increase the cost of the superstructure works.

Overall, the cost of superstructure works during construction development will depend on a variety of factors, and it is important to carefully consider these factors when planning and budgeting for a construction project.

### Assignment Task 3: Interpret the construction development process, principle of financial and managing risk, feasibility studies, pre-tender decisions and overall cost control process in construction industry.

The construction development process involves several stages, starting from the conceptualization of the project to its completion. These stages include:

1. Conceptualization: This is the stage where the initial idea for the construction project is developed. It involves the identification of the need for the project, the scope, and the objectives of the project.
2. Feasibility Studies: This is the stage where the feasibility of the project is assessed. This includes a detailed analysis of the project’s technical, economic, financial, legal, and environmental aspects. This stage helps to determine whether the project is viable and whether it should proceed to the next stage.
3. Design: This is the stage where the project design is developed. This includes the architectural, structural, mechanical, and electrical design of the project.
4. Pre-construction: This is the stage where the project is prepared for construction. This includes the procurement of materials, equipment, and labor, as well as the preparation of the site for construction.
5. Construction: This is the stage where the project is built according to the design specifications.
6. Commissioning: This is the stage where the completed project is tested to ensure that it meets the design specifications.
7. Handover: This is the stage where the completed project is handed over to the client.

In the construction industry, financial and managing risk is a critical aspect that must be carefully managed. This involves identifying and assessing potential risks that could impact the project and developing strategies to mitigate those risks. Some of the common risks in the construction industry include changes in scope, delays in project completion, and cost overruns.

Feasibility studies are also an important aspect of the construction development process. These studies assess the viability of the project and provide a detailed analysis of the project’s technical, economic, financial, legal, and environmental aspects. Feasibility studies help to identify potential risks and opportunities associated with the project, which can inform decision-making.

Pre-tender decisions are made during the procurement stage of the project. These decisions include the selection of contractors and suppliers, the negotiation of contracts, and the establishment of budgets and timelines. Pre-tender decisions are critical to the success of the project, as they can impact the overall cost and quality of the project.

Overall cost control is another critical aspect of the construction development process. This involves managing costs throughout the project lifecycle, from the initial design stage to project completion. Effective cost control strategies can help to ensure that the project is completed within budget and to the required quality standards. Some of the key cost control measures include cost estimation, budget tracking, and value engineering.

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