Career PortfolioUPDA Grade C Licensed Engineer

Mechanical engineering · Production · Reliability

Engineering experience,clearly organized.

Mechanical Engineering and UPDA Grade C licensed engineer with experience in production supervision, facility maintenance, piping redesign, ERP documentation, inventory control, and cross-functional coordination. Skilled in improving production processes, supporting technical sales, preparing reports, and working with procurement, logistics, engineering, and maintenance teams to ensure timely and accurate project delivery. Experienced with mechanical design, CAD/SolidWorks, CFD/FEA concepts, Python, Microsoft Office, and relevant API/ASME standards for valves, pipelines, piping systems, and rotating equipment. Strong problem-solving, planning, communication, and organizational skills with practical exposure to manufacturing, testing, quality control, and technical documentation.

Current positionProduction Supervisor
Industry focusManufacturing & Operations
QualificationBSc Mechanical Engineering
01 / Experience

Professional experience

Latest experience first, with responsibilities organized by workstream and the skills utilized listed beneath each position.

Current role

Production Supervisor

Al Watanya Chemical Industries (WCI)

March 2024 - PresentMesaieed, Qatar

Operation & Monitoring

  • Implementing/enforcing operations methods and procedures designed to eliminate operating problems and improve product quality & revenue.
  • Supervising operations within production units to achieve monthly output.
  • Coordinating with other departments - Procurement, logistics and production, to ensure that orders are fulfilled in a timely and accurate manner.
  • Monitoring vibration, temperature, and performance data of rotary equipment (pumps, compressors).
  • Using condition monitoring tools for thermography & ultrasonic monitoring of equipment for any faults.
  • Plan, coordinate, and optimize production processes.
  • Monitor machinery performance and troubleshoot issues.
  • Ensure products meet quality standards.
  • Implement process improvements to increase efficiency.
  • Collaborate with teams to meet production targets.
  • Maintain safety and compliance on the production floor.
  • Prepare production reports and documentation.

Maintenance & Troubleshooting

  • Preventive and predictive maintenance.
  • Overhauling centrifugal pumps.
  • Support the formulation, implementation, and continuous improvement of policies and procedures governing all Facility Maintenance activities, including minor projects.
  • Prepare detailed technical reports on facilities maintenance and modification projects for review and approval by Senior Engineers and the Section Head.

Reliability & Integrity Management

  • Familiarity with API & ISO standards (API 610 for pumps, API 617 for compressors, API 671 for couplings).
  • ISO 14001, 9001, & 45001 for environmental management, quality management (QMS), and occupational health & Safety (OHS).

HSE Compliance

  • Understanding of critical safety systems and shutdown mechanisms (Emergency Shutdown System [ESD], Emergency Power Supply [Diesel Generators], Fire Protection systems [NFPA 10, 11, 12, 13, 16, 25, 72]).

ERP

  • Accounting for all the deliveries & Sales invoice through ERP.
  • Maintaining accurate inventory records and restocking as needed.
  • Keeping all records up to date on ERP system.

Sales, Documentation & Record Keeping

  • Contribute to the development and execution of supplier contracts by providing expert input on contracting strategies, scope of services, and schedules of rates, ensuring full compliance with company policies and procedures.
  • Provide technical guidance, pricing estimates, and implementation strategies to support sales teams.
  • Work closely with product development and engineering teams to address technical challenges and support smooth product implementation.

Skills Utilized

Excel VBACoordinationSafety ProceduresData ManagementProduct DevelopmentManufacturingERPSalesPlanningTeam WorkTroubleshootingCentrifugal PumpOperating ProceduresDocumentation ControlQuality Improvement
Internship

Mechanical Engineering Intern

Delta Corporation

June 2022 - July 2022Al Rayyan, Doha

During my internship, I observed valve assembly, hydrostatic testing, material traceability, coating operations, dimensional inspections, and quality-control activities. I gained exposure to API 6D concepts such as shell testing, seat testing, pressure classes, NDE methods, and documentation requirements used in pipeline valve manufacturing. I also developed an understanding of detailed drawings and their turning and milling operations.

Department

  • HR orientation.
  • Understanding/implementing company policies and procedures.

HSE Orientation

  • Understanding of general safety equipment (PPE) and its importance at workshops.
  • Going through Critical Safety Procedures such as Hazard identification, environmental aspect & its impact identification, incident reporting & investigation procedure, emergency preparedness response, safety in heat procedure.

Machine Shop

  • CNC milling - up to 5 axis milling machines with different types of operations: vertical vs horizontal milling, turning vs milling operations.
  • Criticality of layout for machines in the workshop. Material has to go through multiple machine operations in order to become final ready product.
  • Milling/Turning operations - drilling, facing, step turning, taper turning, parting, knurling, reaming, chamfer, threading, boring, facing, grooving.
  • Tool types - CMMG & DMMG for large and small concave curves & cutting.
  • Thread types - UNC, ACME, NPT, LP, & Butrus thread.
  • Coating Types - Copper, Phosphating for corrosion prevention.
  • Material testing for hardness, tensile strength & impact test. Tests performed according to API procedures.

Test & Assembly

  • Testing is done as per API 6A standard.
  • Shell testing, hydrostatic testing, seat testing at various pressures (5, 10 and 15 bar).

Process Engineering (MED)

  • Responsible for generating CNC codes using CAD/CAM software for manufacturing.

Dserv - Workshop

  • Responding to customer enquiries for services.
  • Tubular repair work, sandblasting, coating and welding services are provided.
  • Re-designing and repairing of pipes.

Engineering - OTR

  • Going from design process to the delivery of final product to customer.
  • Execution, research, implementation, project-handling, final detailed design, manufacturing, bill of material to finalized product assembly, delivery and invoicing.

Planning

  • Planning of each phase of project for each customer.
  • Order of raw material, setting deadlines for customer deliveries, machining of raw material, assembly & quality inspection, and ensuring delivery is made on time.

Warehouse

  • Visiting and understanding of various types of CNC machines.

Research & Development

  • Overview of wellhead design and improvements that can be made as per the customer complaints.
  • Going through detailed design process.

Sales & Marketing

  • Ensuring all customer enquiries are fulfilled in timely manner.

Supply Chain

  • Ensuring availability of raw material for customer beforehand.
  • Ordering extra material in advance for backup.
  • Ensuring raw materials reach warehouse and machine shop for manufacturing and quality inspection.

DClad Workshop

  • Cladding - another type of coating for anti-corrosion protection.
  • Inkonel (nickel chromium) coating for gas excavation projects.
  • Painting/glavanizing for corrosion protection.
  • Up to 4 layers of paint coating can be done for various types of corrosion and sunlight protection.

Quality & Inspection

Skills Utilized

Microsoft ExcelTeam CoordinationTechnical DrawingSafety ProceduresFEAImpact AnalysisDraftingData ManagementProduct DevelopmentManufacturingCAD/CAM DesignSolidWorks 3D Design/RenderingEngineeringSalesPlanningTeamworkAPI StandardOperating ProceduresDocumentationQuality Improvement
02 / Projects at Qatar University

Project experience

Eight projects arranged by the latest completion date, with the full scope, role, methodology, delivery stages, and results.

01
Original project #02 · Qatar University Final Year Project

Design of Automatic Part Removal Robot for Additive Manufacturing

01/09/2022 - 20/06/2023 (~12 months)

Project descriptionDesign of Robot, Automation of 3D printing process.

In this project, a smart system that can assist in the automated extraction of printed parts from a 3D printer bed is proposed. The project objective was to provide an automated solution for the 3D printing process that can save manufacturers both time and running costs.

Project Initiation

As a senior design student, my team and I followed the mechanical design process to build the robot. The early stages of the design process included identifying stakeholders and their expectations. It also included identifying requirements, constraints, aims/objectives, and possible risks.

Planning

We went over how the project would be handled. The work was broken down into specific tasks and who would be responsible for each part, forming the WBS. A Gantt chart was used for organization and for producing a work timeline for each task. Team dynamics showing how the project would be communicated were decided, including the ethical and professional responsibilities for each team member. The main system and subsystems were defined, and each person was given one subsystem to work on for an individual design role.

Executing

I was responsible for the structure subsystem of the robot. I came up with at least five designs for the structure of the robot and conducted FEA (Finite Element Analysis) using software on the final selected design. During the design stage, revisions were made based on customer feedback, and the final alternative was chosen through a Pugh matrix.

Monitoring & Controlling

Expected cost analysis was performed before initiating the project and compared with cost analysis after the project. We had access to the university workshop, and therefore most materials were readily available. However, components such as bearings and shafts were procured in advance. Engineering drawings were finalized, and we moved onto the final stage of developing and testing the prototype in the workshop.

Closing

After testing the prototype, it would be physically tested to ensure it had met all constraints and customer requirements. The test would conclude that the prototype was able to successfully perform its intended operation.

02
Original project #06 · Qatar University Introduction to Drones Project

Design, Assembly, and Testing of DJI Quadcopter Drone

20/01/2023 - 25/05/2023 (~4 months)

Project descriptionDesign & assembly of drone, control of drone through controller, programming drone using DJI Terra software, and drone calibration using DJI software.

In this project, as a group of five, we were tasked with first ordering the necessary parts to build a DJI drone and assemble it. Our tasks also included drone calibration, programming, and testing using DJI Terra software. Later, we used the drone with the camera attached for 2D and 3D mapping of buildings to identify empty spaces on rooftops for solar panels, identify which parts of a building needed reinforcement or replacement, and find the repaint volume of a building.

Project Initiation

As a team, we identified project aims/objectives, constraints, risk assessment, and customer requirements. We also identified stakeholders and their expectations from the project.

Planning

The work was broken down into specific tasks and who would be responsible for each part, forming the WBS. Team dynamics showing how the project would be communicated were decided, including the ethical and professional responsibilities for each team member. Each member had a specific role after drone assembly and calibration.

Executing

My role was to program the drone so it would fly over the required building and take photos for 2D and 3D mapping. I also proposed at least three different designs for attachment of the camera on the drone after performing background research. During the design process, necessary revisions were made to ensure the final prototype worked at its best and that the operation was smooth.

Monitoring & Controlling

Cost analysis of each part was performed. The total cost was estimated to be not more than QAR 10,000. Most electronics for the drone and the frame were procured by the university in advance.

Closing

The aims/objectives of the project were achieved after testing the final prototype. The drone was correctly assembled and calibrated. After successful 2D/3D mapping, DJI Terra was used to compile images. The model was then 3D printed.

03
Original project #05 · Qatar University Control Systems Project

Design of Elevator Door

11/09/2022 - 26/12/2022 (~4 months)

Project descriptionDesign of elevator, control of elevator door through Arduino module, programming Arduino module using C programming language, use of ultrasonic sensors to detect obstacles, and PID control.

In this project, as a group of three, we were tasked with designing a control system after the design of an elevator door. The door had to respond if there was an obstacle between it and return to its original position when open. Similarly, our task was to use PID (Proportional Integral Differential) control to ensure that the door closed slowly and did not harm people if they were accidentally standing between the door while it was closing. The operation had to be smooth using the PID controller.

Project Initiation

As a team, we identified project aims/objectives, constraints, risk assessment, and customer requirements. We also identified stakeholders, such as high-rise building construction companies, and their expectations from the project.

Planning

The work was broken down into specific tasks and who would be responsible for each part, forming the WBS. A Gantt chart was used for organization and for producing a work timeline for each task. Team dynamics showing how the project would be communicated were decided, including the ethical and professional responsibilities for each team member.

Executing

I was responsible for conducting the design of the elevator door system and coordinating with the team on programming the PID controller. I also proposed at least three different designs for the elevator door after performing background research. After conducting FEA and reviewing the results, one of the three designs was finalized. During the design process, necessary revisions were made to ensure the final prototype worked at its best and that the operation was smooth.

Monitoring & Controlling

Cost analysis of each part was performed. The total cost was estimated to be not more than QAR 5,000. We only needed a small prototype for the elevator door and not an actual-size door; therefore, the cost was lower than expected. Most parts were sent for 3D printing, and some parts, such as bearings and shafts, were procured either from the workshop or industrial area in advance.

Closing

The aims/objectives of the project were achieved after testing the final prototype. The prototype was able to open/close the elevator door as expected. It would also return to its original position if there was an obstacle in the way. Sensors such as ultrasonic sensors were used. The PID controller allowed the elevator door to slowly speed up and slow down when necessary.

04
Original project #07 · Qatar University Vibrations Project

Design of Vibration Absorber

10/01/2022 - 02/05/2022 (~4 months)

Project descriptionDesign of vibration absorber, testing and evaluating the vibration absorber at various frequencies of vibration of a motor on a steel plank.

In this project, as a group of three, a vibration absorber for a motor placed in the center of a steel plank was designed, tested at various frequencies, and the results were evaluated. Tasks also included ensuring that the final design was capable of absorbing the maximum amount of energy from the plank in order to reduce vibration caused by the motor at its natural frequency.

Project Initiation

My team followed the mechanical design process to build a vibration absorber. Identifying requirements, constraints, aims/objectives, and possible risks were part of project initiation.

Planning

A project management plan was laid out. This included working on the WBS and producing a Gantt chart to distribute tasks throughout the semester, providing a timeline for each team member and what they would be focusing on.

Executing

I was responsible for proposing at least three designs for the vibration absorber model after performing background research. Simulations were performed on the three models using software to see how each would perform. The final design was selected based on the performance of the model.

Monitoring & Controlling

Cost analysis of each part was performed. The total budget allocated was QAR 10,000. The actual cost was much lower, as the size of the prototype and the materials procured were not very expensive. Therefore, multiple prototypes were built to take full advantage of the budget and test a range of frequencies to determine which prototype was best.

Closing

The aims/objectives of the project were achieved after testing the final prototype. The selected prototype was able to absorb maximum energy from the motor, thus reducing vibration in the steel plank.

05
Original project #01 · Qatar University Machine Design Project

Design of an Aluminum Can Crusher

01/10/2021 - 07/12/2021 (~4 months)

Project descriptionCan crusher, gear, and shaft design.

The objective of the project was to design an aluminum can compactor to reduce storage and transportation cost and space for aluminum can waste.

Project Initiation

As a 3rd-year student, my team and I followed the mechanical design process to design the can crusher. The early stages of the design process included identifying stakeholders and their expectations. It also included identifying requirements, constraints, aims/objectives, and possible risks.

Planning

The scope of the project was defined along with aims/objectives. A WBS was created showing the responsibilities and tasks for each team member and the allocated time in which each task needed to be completed. A Gantt chart was made to equally distribute tasks throughout the semester in order to finish tasks on time.

Executing

My role was to design a gear box. Together as a team, we came up with at least three final designs and chose one by evaluating them through a Pugh matrix.

Monitoring & Controlling

Any changes made throughout the project would be updated immediately so everyone in the team was aware of them. Procurement for materials such as the clutch and shafts was made in advance and recorded. All changes made were updated in the final report.

Closing

The project was completed within the planned budget, and all work was documented in the final report. If there were any mishaps during the project, the reasons and lessons learned were noted so they would not be repeated in future projects.

06
Original project #08 · Qatar University Programming Project

Design of Geometric Shape Application Menu on Python

15/09/2021 - 20/11/2021 (~3 months)

Project descriptionDesign of geometric shape application menu on Python. The application must be able to run on Python with no errors. The application must be able to draw shapes according to the data input and save the dimensions in a separate text file.

In this project, as a group of four, the design of a geometric shape application was proposed where a person could input the lengths, widths, and diameters of shapes in order for the program to draw the exact shapes and save the data to a text file in the form of a table. The project was to be delivered in two phases.

Project Initiation

The iterative method was followed, as many changes would be made to the coding throughout the project but with only one final delivery. Requirements, constraints, aims/objectives, and possible risks were defined before the beginning of the project.

Planning

A project management plan was laid out. This included working on the WBS and producing a Gantt chart to distribute tasks throughout the semester, providing a timeline for each team member and what they would be focusing on.

Executing

In the first phase, the first half of the project was delivered without using functions and without the option to save geometric data to a text file. Phase two included changing the code to functions and adding the option to save the data to a separate text file.

Monitoring & Controlling

Since the project was about coding and most information regarding Python was open source, we expected the budget to be lower compared with other mechanical projects. Multiple techniques were studied and applied in the first and second phases to get the code running as smoothly as possible without errors.

Closing

The finalized version of the code was able to successfully run and ask the user to input data for the selected shape. It would then ask whether the user wanted to save the data in a separate text file. The aims/objectives of the project were achieved after testing the final code.

07
Original project #04 · Qatar University Dynamics-II Project

Design & Testing of Projectile Launcher

10/01/2020 - 02/05/2020 (~4 months)

Project descriptionDesign of projectile launcher able to launch tennis balls and perform calculations to ensure that the tennis ball lands in a designated area.

In this project, as a group of three, we were required to design a projectile launcher able to launch a tennis ball. The ball had to go through the required target at a certain distance. For that reason, accurate calculations needed to be performed using dynamics concepts.

Project Initiation

As a team, we identified project aims/objectives, constraints, risk assessment, and customer requirements.

Planning

A project management plan was laid out. This included working on the WBS and producing a Gantt chart to distribute tasks throughout the semester, providing a timeline for each team member and what they would be focusing on.

Executing

I was responsible for performing calculations to ensure that, with a certain amount of energy, the tennis ball was able to reach the goal. I also proposed at least three different designs for the mechanical launching mechanism after performing background research. The final design for the mechanical launcher mechanism was selected through a Pugh matrix.

Monitoring & Controlling

Cost analysis of each part was performed. The total cost was estimated to be around QAR 10,000. Most materials were procured from the university workshop; therefore, readily available parts were used, and there was no need to order anything in advance. Engineering drawings were finalized, and manufacturing was done at the university workshop using CNC machines.

Closing

The aims/objectives of the project were achieved after testing the final prototype. The prototype was able to launch a projectile to a certain target. However, the chances of the projectile going through the goal varied due to factors such as air resistance acting on the tennis ball.

08
Original project #03 · Qatar University Statics Project

Designing Parking Shade in Qatar

09/09/2019 - 02/12/2019 (~4 months)

Project descriptionDesign of parking shade.

In this project, as a group of three, we determined different factors that affect a parking shade, such as high winds and changes in weather, and studied external forces acting on supporting beams. We also determined whether two beams were enough to support the parking shade and how many cars a single parking shade could cover without crossing its stress limits.

Project Initiation

As a team, we identified project aims/objectives, constraints, risk assessment, and customer requirements. We also identified stakeholders and their expectations from the project.

Planning

A project management plan was laid out. This included working on the WBS and producing a Gantt chart to distribute tasks throughout the semester, providing a timeline for each team member and what they would be focusing on.

Executing

I was responsible for conducting FEA (Finite Element Analysis) on the supporting beams of the parking structure. I also proposed at least two different designs for the parking shade after performing background research. After conducting FEA and reviewing the results, one of the two designs was finalized. Customer feedback was taken after selecting the final design.

Monitoring & Controlling

Cost analysis of each part was performed. The total cost was estimated to be around QAR 20,000 for one parking shade. We only needed a small prototype for the parking shade and not an actual-size shade; therefore, the cost was lower than expected. Materials such as supporting beams were taken from the workshop. Other material, such as the top covering, was procured before testing.

Closing

The aims/objectives of the project were achieved after testing the final prototype. The prototype was able to withstand strong winds and different weather conditions without crossing its stress limits.

03 / Skills

Skills and applied knowledge

Technical, operational, analytical, digital, and teamwork capabilities with the details supplied for each.

01

Microsoft Excel

I can embed/write VBA code into Excel in order to fast-track my data keeping. I am able to generate tables/graphs and analyze data as per my needs.

02

Coordination

I work in a team and coordinate across departments to complete tasks on time.

03

Technical Drawing

I had the chance to review technical drawings and their details with the engineering department during my internship. I went over API 6A standards for Christmas tree components such as gate valves, choke valves, and spools for design. The standards specify external dimensions for customers but retain internal dimensions for competition reasons.

04

Safety Procedures

I went over safety procedures thoroughly when I joined both Delta Corporation and Al Watanya Chemical Industries. Both companies emphasized the importance of HSE at work. We currently have technical briefings on HSE on a monthly basis, including workplace injuries, road safety, heat stress, slips/trips/falls, and safety moments. I have also undergone third-party training in chemical handling, COSHH, Emergency First Aid kit, and Oil Spillage.

05

Finite Element Analysis

I learned extensively during my BSc in Mechanical Engineering at Qatar University. My knowledge of FEA remains fresh, and I can conduct FEA on components/assemblies, including pipes, to study stress/strain, vibration with resonance frequencies, and suitable mode shapes.

06

Impact Analysis

A concept used in FEA. I conducted extensive impact analysis during my studies at Qatar University. One project was the design of an aluminum can crushing machine, where impact analysis was used to identify the maximum force needed to completely crush the can without deforming the plates. Another project was motor vibration absorption, where impact analysis was used to simulate the behavior of the spring and dampener and identify which frequency was best for maximum energy transfer from the motor to reduce vibrations.

07

Drafting

I undertook drafting during my internship at Delta and during my Design Engineering course at Qatar University. I covered orthographic/isometric views in AutoCAD, detailed A-A sectional views, surface finish requirements, Bill of Material (BOM), dimensions & tolerances including geometric tolerances, exploded assembly views, and 3D rendering.

08

Data Management

At my current workplace, I handle crucial company data including legal documents, HSE documents, maintenance records, and operational procedures. I also ensure the documents are kept up to date.

09

Product Development

10

VBA

I have used VBA in Excel to program files according to my needs for easy and efficient data recording. It is helpful for recording data in bulk on a daily basis and helps me in my current position to keep track.

11

Manufacturing

Currently working as Senior Production Engineer. I have developed and made changes to the manufacturing facility to meet customer needs. One example is changing pipelines to accommodate a new product and connecting them to another large storage tank to start production of new material. This allows the company to expand its scope and sign new contracts as production capacity has increased.

12

CAD Design

I have experience in CAD design using AutoCAD (Orthographic/Isometric). I also have hands-on experience in 3D drawing/rendering of components and assemblies using SolidWorks & ANSYS.

13

Enterprise Resource Planning (ERP)

I have hands-on experience handling ERP systems. I understand ERP basics including creation/modification of Purchase Orders, Sales Orders, and accounting to handle bills/invoices. I can generate invoices & bills through SOs & POs. Moreover, I can handle inventory/manufacturing stocks based on customer requirements and generate yearly audit reports to cross-match physical inventory against ERP.

14

ANSYS

I used ANSYS during CFD analysis on pipes in my Fluid Mechanics course. I am able to make a 2D drawing of a pipeline in ANSYS, perform meshing operations, and apply suitable inlet/outlet pressures with fluid properties to identify how fluid behaves in different environments.

15

SolidWorks

I gained experience in 3D drawing & rendering of components and assemblies during projects at Qatar University. I can conduct stress/strain graphs and generate Bills of Materials, exploded views, and drawings.

16

Engineering

I have a UPDA Grade C License for the Urban Planning & Development Authority within the State of Qatar, allowing me to perform mechanical engineering work.

17

Sales

I monitor deliveries and sales at my current work, making sure all delivery requests are fulfilled on time and invoiced through the ERP system.

18

Planning

19

Teamwork

I prefer working as a team to complete tasks. I have worked as part of a team throughout all projects, from university to my internship at Delta and my current position.

20

API

I covered API 6A & 6D standards during my internship at Delta. In API 6A, I mainly covered hydrostatic shell tests, seat tests, pressure classes, and documentation requirements for wellhead assembly & valves.

21

Troubleshooting

22

Centrifugal Pumps

I am able to design/select a pump based on head requirements. At my current employment, there are many centrifugal pumps for water and chemical purposes, each designed based on how much head is required.

23

Operating Procedures

When joining the company, I generated operating procedures for production and continue to maintain them over time.

24

Python

I covered the basics of Python during my programming course at Qatar University. My basic understanding of Python remains fresh, and I can build upon it if needed in the future.

25

Documentation

Keeping records of all data, both soft & hard copies, in an organized way.

26

Quality Improvement

Receiving customer feedback and using it to improve the quality of the final product.

Relevant Codes & Standards

API & ASME exposure

Had exposure to the following International Codes & Standards throughout my internship & recent work experience:

API 6A - Wellhead and Christmas Tree EquipmentAPI 6D - Pipeline Valves for Oil & Gas IndustriesAPI 570 - Piping Inspection CodeAPI Spec 5L - Line Pipe SpecificationAPI Std 610 - Centrifugal Pumps for Petroleum, Petrochemical & Natural Gas IndustriesASME B16.5 - Pipe Flanges and Flanged FittingsASME B16.34 - Valves: Flanged, Threaded and Welding EndASME B31.8 - Gas Transmission and Distribution Piping SystemsASME B36.10 - Welded and Seamless Wrought Steel PipeASME B36.19 - Stainless Steel Pipe
04 / Education

Academic foundation

Bachelor of Science

Mechanical Engineering

Qatar University · Doha, Qatar

Study periodSeptember 2018 - June 2023
GPA3.25 / 4.00

General

Computer ProgrammingEngineering Skills and EthicsEngineering GraphicsProbability/Statistics for EngineersNumerical MethodsEngineering EconomicsCalculus IICalculus IIIMathematics Engineering

Major Core - Mechanical Engineering

Materials ScienceLinear AlgebraEngineering MeasurementsEngineering Mechanics I - StaticsEngineering Mechanics II - DynamicsSolid MechanicsIntroduction to DesignManufacturing ProcessesThermofluidsMechanical MechanismsMechanical VibrationsMechanical DesignIntroduction to Mechatronics & Measurement SystemsThermodynamicsFluid MechanicsHeat TransferControl SystemsPractical TrainingEnergy SystemsDesign of Energy Systems

Major Electives

Fire Protection ScienceIntroduction to DronesHeat Engines
05 / Certificates & Licenses

Professional license

Ministry of Municipality & Environment

UPDA Engineer's License (Grade C)

December 2023 - December 2026

Grade C
06 / Languages

Language proficiency

EN

English

Expert

ReadingExpert
WritingExpert
ListeningExpert
SpeakingExpert
UR

Urdu

Native

ReadingNative
WritingNative
ListeningNative
SpeakingNative