About
Establishing trust, verifying identity, and authorizing transactions online is no small…
Activity
8K followers
Experience
Education
Licenses & Certifications
Projects
-
@SaveInStone
See projectAuthentic tweets saved in stone: mention @saveinstone to make any tweet permanent. Powered by @OraclizeIT
-
ElctriKey
RegHackDownUnder Hackathon in Melbourne, Australia.
Security for smart meters within the energy industry. Enable smart meters to secure the network they operate on. Embedded decentralized verification. Enforce standards and regulate the operation of smart meters. Distribute energy user information, effectively providing a transparency layer. -
Acropolis
Blockgeeks hackathon in Toronto, Ontario
Crowdfunding / investing platform for personal real estate. Enable a new avenue for loans to purchase personal real estate.
Create a lower barrier to entry for investment in real estate. May effectively buy and sell shares within property.
- solidity, web3, geth, react -
SuitYourself
Completed at RegHackTo Hackathon in Toronto, Ontario
Creation and distribution of suitability forms. Customer creates and owns their data and may define the permission of varying institutions. -
Intra-Pour Concrete Quality Assurance
• Designed, developed and deployed a solution to assure the quality of concrete as it is placed.
• Entire lifecycle project management, customer relation, product ownership (definition, backlog and roadmap creation), development and deployment.
• Utilized state-of-the-art 3D laser scanners to acquire high resolution point clouds and effectively locate areas of concern minutes after the concrete is initially placed and therefore still workable.
• Real-time assurance equates to…• Designed, developed and deployed a solution to assure the quality of concrete as it is placed.
• Entire lifecycle project management, customer relation, product ownership (definition, backlog and roadmap creation), development and deployment.
• Utilized state-of-the-art 3D laser scanners to acquire high resolution point clouds and effectively locate areas of concern minutes after the concrete is initially placed and therefore still workable.
• Real-time assurance equates to significant savings in rework and project timeline cost.
-
4th YearCapstone Design Project - Compliant Variable-Torque Robotic Arm
Project will be completed through-out entire final year. Working in a team of three, alongside professors to design and produce a 2DOF (2 degrees of freedom) robotic arm. The joints are to accommodate a unique magnetorheological (MR) fluid clutch system to increase the fidelity and effectively increase safety of the robot. The robot is to be controlled with the Force (Haptic) Feedback user input device.
This MR fluid clutch system differs from other torque-control methods because it…Project will be completed through-out entire final year. Working in a team of three, alongside professors to design and produce a 2DOF (2 degrees of freedom) robotic arm. The joints are to accommodate a unique magnetorheological (MR) fluid clutch system to increase the fidelity and effectively increase safety of the robot. The robot is to be controlled with the Force (Haptic) Feedback user input device.
This MR fluid clutch system differs from other torque-control methods because it will allow deviation from its own equilibrium position, depending on the applied external force. This type of joint replicates a "soft" joint allowing manipulation of the robotic arm allowing for variance of joint rigidity. -
Design of a mechatronic device to help a disabled child play a board game.
2nd year design project
Designed and produced an automated monopoly board. The game board consisted of two rotating tracks mounted on supports and driven by gears that were powered with two individual servomotors. The entire board and supports were designed using Solidworks and then printed via Western University’s 3D printer. The motors were controlled using an Arduino microcontroller which also illuminated LED’s to show which player’s turn it was followed by the number they had…2nd year design project
Designed and produced an automated monopoly board. The game board consisted of two rotating tracks mounted on supports and driven by gears that were powered with two individual servomotors. The entire board and supports were designed using Solidworks and then printed via Western University’s 3D printer. The motors were controlled using an Arduino microcontroller which also illuminated LED’s to show which player’s turn it was followed by the number they had rolled. The final product and project report were presented at a design showcase to fellow classmates, upper year students, professors as well as various other engineering professionals.
Honors & Awards
-
Dean's Honour List
-
Received award for achieving an academic average above 80%.
-
Dean's Honour List
-
Received award for achieving an academic average above 80%.
Other similar profiles
Explore collaborative articles
We’re unlocking community knowledge in a new way. Experts add insights directly into each article, started with the help of AI.
Explore MoreOthers named Adam Lemmon
10 others named Adam Lemmon are on LinkedIn
See others named Adam Lemmon