# BSR214 Measurement And Estimating I UITM Assignment Sample Malaysia

BSR214 Measurement And Estimating I course is designed to provide students with the knowledge and skills necessary to accurately measure and estimate construction projects. In this course, students will learn how to read and interpret blueprints, diagrams, and other technical documents; understand basic materials science; calculate area, volume, length, width, and height; use mathematical formulas to compute quantities of labor and materials needed for a project; and use both manual and computerized estimating techniques.

Students are also encouraged to discuss the cost estimates with other members of a construction team, such as architects, engineers, supervisors, and contractors. Upon successful completion of the course, students will have acquired a comprehensive understanding of the principles behind measurement and estimation for a construction project, and be able to confidently apply these skills in the field.

## Acquire assignment samples for BSR214 Measurement And Estimating I course

Malaysiaassignmenthelp.com offers free samples of assignments related to the BSR214 Measurement And Estimating I course. The samples provide an excellent opportunity for students to understand the topics that are discussed in class, see how they can be applied, and gain a better understanding of the concepts being taught. Students can also use the samples to practice their own measurement and estimating skills.

Here, we will discuss some assignment briefs. These are:

### Assignment Brief 1: Measure quantities on sub-structure works based on Standard Method of Measurement (SMM).

The Standard Method of Measurement (SMM) is a set of rules and guidelines used in the construction industry to measure and quantify the work involved in a project. When it comes to sub-structure works, SMM provides guidance on how to measure quantities for items such as foundations, basements, and retaining walls. Here are some steps to follow to measure quantities on sub-structure works based on SMM:

1. Identify the type of sub-structure work involved in the project. This could include foundations, piling, excavation, drainage, or basement works.
2. Review the contract drawings, specifications, and bill of quantities to understand the scope of the sub-structure works.
3. Identify the unit of measurement for each item in the bill of quantities. For example, foundations may be measured in cubic meters, while drainage works may be measured in linear meters.
4. Take accurate measurements of each item in the sub-structure works. This may involve measuring the length, width, and depth of foundations, or the length and diameter of piles.
5. Calculate the volume or length of each item based on the measurements taken. Use the appropriate formulae or tables provided in the SMM for each unit of measurement.
6. Check your calculations and ensure that they are accurate. Any errors in measurement or calculation could lead to costly mistakes and delays in the project.
7. Record the quantities of each item in the bill of quantities or on a separate measurement sheet. Make sure that the quantities are clearly labeled and organized for easy reference.
8. Update the quantities as necessary throughout the project to reflect any changes or variations in the sub-structure works.

By following these steps, you can accurately measure and quantify the sub-structure works on your project based on the Standard Method of Measurement.

### Asignment Brief 2: Analyse construction drawing prepare taking off quantities and built up rates for excavator, concreter and bricklayer.

To analyze a construction drawing and prepare take-off quantities and built-up rates for excavator, concreter, and bricklayer, you would typically follow these steps:

1. Review the construction drawing: Review the drawing carefully to understand the scope of work involved, the types of materials and equipment required, and any specific instructions or requirements.
2. Identify the excavation work: Look for any areas on the drawing that require excavation, such as foundations, trenches, or footings. Measure the dimensions of these areas and calculate the volume of soil that needs to be removed.
3. Determine the excavation rate: Based on the type of soil and the equipment being used, determine the rate at which the excavation work can be completed. This will depend on factors such as the type and size of the excavator, the skill of the operator, and the accessibility of the site.
4. Calculate the excavation cost: Multiply the volume of soil to be removed by the excavation rate to determine the total excavation cost.
5. Identify the concrete work: Look for any areas on the drawing that require concrete, such as foundations, slabs, or walls. Measure the dimensions of these areas and calculate the volume of concrete required.
6. Determine the concrete rate: Based on the type of concrete and the equipment being used, determine the rate at which the concrete work can be completed. This will depend on factors such as the type and size of the mixer, the skill of the concreter, and the accessibility of the site.
7. Calculate the concrete cost: Multiply the volume of concrete required by the concrete rate to determine the total concrete cost.
8. Identify the bricklaying work: Look for any areas on the drawing that require bricklaying, such as walls, columns, or chimneys. Measure the dimensions of these areas and calculate the number of bricks required.
9. Determine the bricklaying rate: Based on the type of bricks and the skill of the bricklayer, determine the rate at which the bricklaying work can be completed.
10. Calculate the bricklaying cost: Multiply the number of bricks required by the bricklaying rate to determine the total bricklaying cost.
11. Add up the costs: Add up the total excavation cost, concrete cost, and bricklaying cost to determine the overall cost of the project.
12. Adjust the rates: You may need to adjust the rates based on the complexity of the project, site conditions, and other factors. It’s important to have a good understanding of the project requirements and site conditions to ensure accurate cost estimates.

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