Engineering Technology: Statics & Dynamics
Third Award
According to the World Health Organization, over 1.3 million people are killed each year in road traffic crashes worldwide. Autonomous vehicles have the potential to solve these issues and a…
Engineering Technology: Statics & Dynamics
Third Award
This paper presents the mechanical design and control of a three degree of freedom (DoF) ball joint module suitable for use in COVID swabbing robots and surgical robots. A prototype iteratio…
Engineering Technology: Statics & Dynamics
Tailless Flapping-Wing Micro Air Vehicles (FW-MAVs) have gained more attention recently because they utilize energy more efficiently compared to fixed-wing aircraft and rotorcrafts. FW-MAVs…
Engineering Technology: Statics & Dynamics
The main goal of every rocket engine is to generate a lot of heat and pressure and then convert that into workable thrust. The problem is most rockets don’t solve pressure discrepancies at v…
Engineering Technology: Statics & Dynamics
Second Award
On average, 51% of a rocket engine’s weight is in the cooling system, so finding an engine design that would drastically reduce the engine's weight, complexity, and production cost would be…
Engineering Technology: Statics & Dynamics
Second Award
Magnetically deflected ballistic mass (MBDM) describes a system in which a metal rotor, the mass in the system, is suspended inside an evacuated sheath like a maglev train. The metal rotor c…
Engineering Technology: Statics & Dynamics
Humanity’s carbon emissions have started to affect the global climate. In order to reduce this impact, we must dramatically reduce carbon emissions in all sectors. In aviation, increasing th…
Engineering Technology: Statics & Dynamics
Small-scale establishments of passion fruit processing have a high demand for automatic machines. However, current passion fruit juice separators on the market do not match the requirements…
Engineering Technology: Statics & Dynamics
Inspired by the high mobility and flexibility of dolphins, this project sought to learn from and mimic the dolphin’s movements to create a bionic dolphin robot and to find out the impact of…
Engineering Technology: Statics & Dynamics
A magnetic buzzer is one of the most widely used electronic devices generating sound frequency. Generally, magnetic buzzers are categorized into two types, namely, passive and active. Active…
Engineering Technology: Statics & Dynamics
Some large modes of transportation, such as trains and roller coasters, do not use traditional hydraulic-friction brakes because of the wear that they experience. Therefore, electromagnetic…
Engineering Technology: Statics & Dynamics
This study explores the effects of earthquakes and soil liquefaction and evaluates the safety of an existing foundation and to create a new style of foundation, taking into account of (1) ea…
Engineering Technology: Statics & Dynamics
Fourth Award
Air travel keeps the world connected; but despite its benefits, the sector accounts for 2.1% of global CO2 emissions. We designed and tested an experimental model for an electric aviation en…
Engineering Technology: Statics & Dynamics
Since the earliest alchemists claimed to turn lead into gold, there have been inventors that have discovered free energy or a system to harvest energy for seemingly nothing. The “Blackbird”…
Engineering Technology: Statics & Dynamics
While humans can see, smell, hear, touch, and taste to help us understand the world around us, robots must use different sensors to interpret their environment and navigate and avoid obstacl…
Engineering Technology: Statics & Dynamics
The design and optimization of assembly occupancies are most usually restricted by fire, building, and life safety codes. This can prevent even the greatest designs from ever being created.…
Engineering Technology: Statics & Dynamics
First Award
With the goal of achieving greater environmental and economic sustainability, the automotive industry has begun transitioning to electric vehicles (EVs). However, the challenge is that the p…
Engineering Technology: Statics & Dynamics
The purpose of this project was to assist food deserts through growing healthy foods easily and affordably with a self-sufficient greenhouse. The solution to this problem had three main part…
Engineering Technology: Statics & Dynamics
Aerospace is an increasingly important industry. Advances in technology, along with new prospects to explore space, expand scientific knowledge, find new resources, and boost the economy, ha…
Engineering Technology: Statics & Dynamics
Puerto Rico has a deaf adult population of 8.4%. This community has encountered many difficulties while communicating with the hearing people. The deaf community should feel safe while using…
Engineering Technology: Statics & Dynamics
The purpose of this project was to create a more efficient drone that was still stable enough to fly FPV. The design I am using is a large central propellor to generate most of the thrust an…
Engineering Technology: Statics & Dynamics
Second Award
Climate change can be solved, but the window is closing. 90% of goods move by cargo ships, resulting in 4% of climate change emissions. There is a need for climate change technology that wor…
Engineering Technology: Statics & Dynamics
Fourth Award
Apple is the most popular fruit around the world, and it is the fruit that I was looking, while came to my mind to develop a time indicator to determine the life of consumable goods. While I…
Engineering Technology: Statics & Dynamics
For various biomedical applications, biosensors are particularly important and can be introduced via photonic optical microlasers. In the past, such sensing systems have been created using b…
Engineering Technology: Statics & Dynamics
Two major induction motor designs exist, the first being the squirrel cage induction motor with high efficiency and a poor starting torque, and the second being the slip-ring motor with a gr…
Engineering Technology: Statics & Dynamics
While the original goal of the project seemed rather simple I soon learned that making a machine that carries perpetual motion, forever, would be a long and tiring process. The amount of sma…
Engineering Technology: Statics & Dynamics
Our urban population is rapidly expanding, which will require a reduction in private transportation and the adoption of faster and more efficient public transportation. Magnetic levitating (…
Engineering Technology: Statics & Dynamics
Third Award
Fixed-wing unmanned aerial systems are utilized in a wide range of applications such as mapping, monitoring, surveillance, etc. These systems are usually extremely expensive and almost exclu…
Engineering Technology: Statics & Dynamics
Third Award
There are three propulsion systems in chemical rockets, and they are solid rocket, hybrid rocket, and liquid rocket. Compared to a solid rocket, we can verify the thrust of a hybrid rocket,…
Engineering Technology: Statics & Dynamics
Radiation is a silent force that has and continues to affect the lives of those living around nuclear power. Calibrating previously developed custom imaging algorithms through Monte-Carlo N-…