##  [An intentional values-based approach to engineering](/spotlight/student/intentional-values-based-approach-to-engineering) 

*"Next, be endlessly curious. University is full of opportunities to explore beyond what’s required in your classes – take them."*



 

  ![tumi smiling](/sites/default/files/styles/max_480w/public/spotlight-images/2025-09/tumi.jpg.webp?itok=ohB46TDq)  

##  Tumi Fabiyi 

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- **Degree:**
    - Bachelor of Applied Science
- **Program:**
    - [Engineering Physics](https://engineering.ubc.ca/programs/undergraduate/engineering-physics "Find out more about Engineering Physics")
- **Campus:** Vancouver
 
## **What attracted you to engineering?**

Growing up, engineering always felt like a natural fit for me. I’ve always been drawn to math, physics and science, and I love working on hands-on projects where I can see ideas take shape in real life. In high school, for example, I was deeply involved in my school’s robotics team – serving as team captain and founding our first all-girls team. These experiences not only strengthened my technical skills but also taught me the value of leadership, collaboration, and creating opportunities for others to get involved in STEM.

Beyond my interests and skills, I’ve always been drawn to engineering because of the tangible impact it allows you to make on the world. Engineers design and build the tools and systems that shape how people interact with the world, and they can embed their philosophies and values directly into that work. The ability to take an idea from a sketch in a notebook to a fully functioning prototype is incredibly powerful. What ultimately drew me to engineering is that it gives me the opportunity to not only create and problem-solve but also to infuse my values into my work and make a meaningful difference – to literally help shape a world that reflects the principles I care about.

## **Why did you choose UBC?**

> Compared to some other universities, UBC has the whole package – it offers a beautiful campus, a holistic engineering education focused on engineering leadership, and the best co-op program in Western Canada. What’s not to love?





## **Why did you choose Engineering Physics?**

I’d never even heard of Engineering Physics before first year – I had fully expected to go into computer engineering to pursue my interests in robotics.

> However, during my first year, I realized that Engineering Physics combines everything I love: the theoretical foundations of math and physics alongside the hands-on aspects of electrical, mechanical and software engineering.

I was also attracted to its rigorous curriculum and the program’s impressive alumni, who have gone on to lead across a wide range of industries. Best of all, it turned out to be much more aligned with my robotics interests than I had anticipated, offering an intensive robotics and prototyping course in the summer of my second year.

I’ve just finished my second year, which was a busy but rewarding one! In addition to a heavy course load, I was involved in numerous extracurricular activities and held a part-time job, which allowed me to apply what I was learning in real-world contexts while developing valuable skills outside the classroom.

## **Tell us about Robot Summer!**

I’ve just finished up what is known as [Robot Summer](https://projectlab.engphys.ubc.ca/enph-253-2025/) – a summer program for second-year Engineering Physics students, where we spend six weeks taking six courses, followed by six weeks building a robot with a team of other students to perform a defined task. Our challenge this year was pet rescue, where stuffed animals were scattered around a playing field full of obstacles. Our robots had to identify the pets, pick them up and return them to a designated safe zone. We had complete freedom in our robot design and access to a fully equipped lab to make it happen.

[Robot Summer](https://projectlab.engphys.ubc.ca/enph-253-2025/)

Despite this being a “competition,” the vibes in the lab were incredibly friendly and supportive. The lab felt lively and collaborative, and I felt comfortable asking for advice or ideas when we got stuck and offering support in turn. Having so many people openly sharing their expertise made tackling challenges less intimidating and learning easier and far more rewarding. Our robot used LIDAR to detect obstacles and pets on the playing field (the same technology used in self-driving cars!), grabbed them with a mechanical arm powered by inverse kinematics, and featured a gorgeous purple-and-black paint job –courtesy of me! I ended up taking on an “all-rounder” role on our team, splitting my time between designing PCBs, CAD-ing up miscellaneous mounts and mechanisms, and creating logging software to make debugging smoother.

 ![robot](/sites/default/files/styles/max_325x325/public/2025-09/robotsummer_6088.jpg.webp?itok=Vr3Y28rG)

 

The competition itself was so much fun! Families, friends, and even local media came out to watch –my family brought signs and my mom surprised us with matching team t-shirts! We made it to the semi-finals, but a series of unlucky events knocked us out: one of the pets fell out of our basket, landed in just the wrong way, and got stuck under our reflectance sensors, sending the robot veering off course. Still, we were proud to be one of only three teams to consistently collect five pets!

> My team was incredibly motivated, organized and effective –a rare combo in school projects – and I’m so grateful I got the chance to work alongside such talented people while sharpening my prototyping and robotics skills.

This summer truly solidified for me that I want to be an engineer. Building a robot from the ground up – from design to debugging to competition day – showed me how much I value collaboration, creativity, and problem-solving under pressure. I feel incredibly lucky to have had the opportunity to work on such a challenging, hands-on project through the Engineering Physics program, and I’m so excited to carry what I’ve learned into future projects.





## **Tell us about your co-op position.**

I completed a four-month co-op term at Insporos from January to April 2025. The startup company is developing technology to sort out non-viable seeds before they are planted. As a research and development intern, I worked on optimizing the seed scanner as well as developing an imaging system.

This was an interesting experience. I’d worked the summer before at Amazon, focusing entirely on software development, whereas this role brought in mechanical and electrical engineering, as well as project design. My time at Insporos was a more holistic engineering experience.

## **What extracurriculars are you involved in?**

In my second year, I was the area president for the Totem Park Residence Association, representing over 2,000 students and the area to the upper councils.

The Black population at UBC is very small, and I am involved in several groups to create space for Black students and create a supportive and welcoming community for them. I was part of the [African Awareness Initiative](https://www.instagram.com/ubc_aai/?hl=en) as VP internal, planning and organizing events to raise awareness of African culture and bring African students together on campus. As the rep for the UBC Chapter of the [National Society of Black Engineers](https://www.instagram.com/nsbe_ubc/?hl=en), I’ve organized initiatives to connect the broader engineering community in Vancouver with Black students. And lastly, I’m the VP External with the [Women in Data Science](https://www.ubcwids.com/), a student-led organization that aims to build a supportive community for women in technology at UBC.

[African Awareness Initiative](https://www.instagram.com/ubc_aai/?hl=en) [Women in Data Science](https://www.ubcwids.com/)





## **Why do you think it’s important to get involved in these types of activities?** 

I see a lot of value in getting involved in clubs and groups, particularly those that aren’t focused on engineering. I believe this involvement is essential because, to be an effective engineer, you need a diverse range of perspectives and experiences to inform your design practice.

> Engaging in these activities exposes you to these perspectives and deepens your understanding of how engineers fit into a broader society.

Despite being central to the design process, values are often overlooked. Everything we make is infused with our values and beliefs, and we’ve seen how embedding values like extraction, convenience and hyper-efficiency into our designs – while useful in some aspects – can lead to a world that is lonelier, more hostile and less sustainable. To avoid these outcomes, one must consider how their design will exist in the world and be used by people of varying backgrounds, experiences and abilities. For me, getting involved and taking a values-based approach to design is a key step toward becoming the kind of engineer who works to build a more inclusive and healthier world

## **You also open up opportunities for young students through Ethos Lab. Tell us about it!**

I currently work part-time for [Ethos Lab](https://ethoslab.ca/), an incredible non-profit organization that develops and delivers STEAM education through the lens of Black and African histories and experiences. As a program co-lead, I taught a high school course where students explored game design using Unity and Rive, ultimately presenting their final projects to engineers at EA! At Ethọ́s, I’ve found a strong sense of community and belonging, as many of the staff share my background and interests. It’s one of the few spaces where I feel truly celebrated and supported as a Black person in STEAM, and I’m honoured to help cultivate that same environment for others

[Ethos Lab](https://ethoslab.ca/)





## **What goals do you have for yourself for the remainder of your degree?** 

There’s so much to do! I’d like to go on exchange, do more co-op terms, take the new venture design course and join a design team again. Not to mention the leadership positions I’d like to continue with. Overall, I want to make the most of my experience at UBC, following wherever my curiosity takes me, and being a leader in every space I enter!

## **Advice for incoming students!**

My first piece of advice is to prioritize both your passions and your rest. Engineering is intense, and it’s easy to lose yourself in endless coursework. Lean into the extracurriculars that bring you joy, and build a routine that makes space for rest – I’ve found that literally scheduling time for sleep, exercise and hobbies in my Google Calendar works wonders!

Next, be endlessly curious. University is full of opportunities to explore beyond what’s required in your classes – take them.

> Ask questions, even when you’re worried they might seem basic.

Attend workshops, go to guest lectures, and get involved in projects that push you out of your comfort zone. Most importantly, learn from the people around you. Talk to upper years, professors, TAs and peers who have different experiences and skill sets – there’s so much to gain from their perspectives. Some of the most valuable lessons I’ve learned in engineering didn’t come from lectures or labs but from conversations with people who approached problems differently than I did.

> Lastly, prioritize your network and relationships as much as your studies.

Engineering isn’t meant to be done alone! Make friends across your classes, connect with upper years, and seek out meaningful relationships with mentors. So many of the opportunities I’ve received have come from being willing to build connections and lean on my network.







### Find me on:

 [ LinkedIn  ](https://www.linkedin.com/in/tumi-fabiyi/?originalSubdomain=ca "LinkedIn") 

 [ UBC Engineering Physics ![UBC Engineering Physics logo](/sites/default/files/styles/max_325x325/public/2026-02/ubc-engineering-physics-logo-shortname-334x28.png.webp?itok=XD8o-zO-)

 



 ](https://www.engphys.ubc.ca/ "UBC Engineering Physics")



 

 

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