#: locale=en
## Action
### URL
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## Media
### Floorplan
### Image
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### Title
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panorama_519E1D24_5A85_04D3_4122_16AF051283C0.label = Garage @ EEE 2
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### Video
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### Video Subtitles
## Popup
### Body
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3D FACE RECOGNITION SYSTEM
This project was designed to keep the MLDA lab secure from unauthorised personnel and at the same time provide convenience to MLDA members by allowing entry without the need of an access card. Unlike normal face recognition systems, the 3D Face Recognition System uses a stereo and depth camera that maps the face contour and is able to differentiate real faces from photos or images.
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3D FACE RECOGNITION SYSTEM
This project was designed to keep the MLDA lab secure from unauthorised personnel and at the same time provide convenience to MLDA members by allowing entry without the need of an access card. Unlike normal face recognition systems, the 3D Face Recognition System uses a stereo and depth camera that maps the face contour and is able to differentiate real faces from photos or images.
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3D-PRINTED SOLAR CARS
NTU Venture 8 is a 4-wheel urban concept electric micro-car designed and built by NTU College of Engineering students for the Shell Eco Marathon Asia 2015 competition. The entire vehicle consists of the many conventional parts made of metal, carbon fibre and over 150 3D printed parts which took 3 months to print and assemble. Special features of the car are the vertically opening doors and the 3D printed accessories such as instrument cluster, door latches, ventilation grills, innovative led lights and other frills.
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3D-PRINTED SOLAR CARS
NTU Venture 8 is a 4-wheel urban concept electric micro-car designed and built by NTU College of Engineering students for the Shell Eco Marathon Asia 2015 competition. The entire vehicle consists of the many conventional parts made of metal, carbon fibre and over 150 3D printed parts which took 3 months to print and assemble. Special features of the car are the vertically opening doors and the 3D printed accessories such as instrument cluster, door latches, ventilation grills, innovative led lights and other frills.
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AI RESEARCH STUDENT CONFERENCE
AI Research Student Conference is a 3-day undergraduate student conference which aims to promote AI research among undergraduate students through tutorial sessions taught by renowned professors in the field of AI. This is paired with our poster competition where students and researchers can submit their papers to compete for prizes and recognition.
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AI RESEARCH STUDENT CONFERENCE
AI Research Student Conference is a 3-day undergraduate student conference which aims to promote AI research among undergraduate students through tutorial sessions taught by renowned professors in the field of AI. This is paired with our poster competition where students and researchers can submit their papers to compete for prizes and recognition.
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BANDSAW MACHINE
Preparing and cutting materials on the Bandsaw Machine. One of the essential machines in Innovation Lab for undergraduate projects like the NTU Venture Eco Cars. It is useful for cutting materials such as plywood, acrylic and aluminium plate.
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BANDSAW MACHINE
Preparing and cutting materials on the Bandsaw Machine. One of the essential machines in Innovation Lab for undergraduate projects like the NTU Venture Eco Cars. It is useful for cutting materials such as plywood, acrylic and aluminium plate.
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CRYO ROOM TEMPERATURE ULTRAMICROTOME
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CRYO ROOM TEMPERATURE ULTRAMICROTOME
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DEEP LEARNING WEEK
Deep Learning Week is MLDA's first flagship event which started in 2019, dedicated to promoting Machine Learning to the general public through panel discussions with renowned speakers, AI career fairs and daily workshops on various deep learning topics during the week-long event. In 2021, a panel of esteemed panellists were invited to conduct a discussion on an AI driven future of industries in Singapore, together with Minister-in-charge of Smart Nation and Cybersecurity, Mrs Josephine Teo, as the Guest-of-Honour. There was also a nation-wide MLDA Deep Learning Week Hackathon open to all students in Singapore to encourage innovation in the field of AI.
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DEEP LEARNING WEEK
Deep Learning Week is MLDA's first flagship event which started in 2019, dedicated to promoting Machine Learning to the general public through panel discussions with renowned speakers, AI career fairs and daily workshops on various deep learning topics during the week-long event. In 2021, a panel of esteemed panellists were invited to conduct a discussion on an AI driven future of industries in Singapore, together with Minister-in-charge of Smart Nation and Cybersecurity, Mrs Josephine Teo, as the Guest-of-Honour. There was also a nation-wide MLDA Deep Learning Week Hackathon open to all students in Singapore to encourage innovation in the field of AI.
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ELECTRONICS STATION
All the necessary tools and equipment that an Electrical Engineer will need. We offer a Soldering Station, Digital Multimeter, Oscilloscope, Function Generator, and Variable Power Supply.
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ELECTRONICS STATION
All the necessary tools and equipment that an Electrical Engineer will need. We offer a Soldering Station, Digital Multimeter, Oscilloscope, Function Generator, and Variable Power Supply.
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FACE MASK DETECTOR
This project was designed in 2020 when COVID-19 hit the world. The camera is programmed to automatically check if visitors are wearing masks. It uses an AI-based Face and Mask Detector that can detect multiple people at the same time.
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FACE MASK DETECTOR
This project was designed in 2020 when COVID-19 hit the world. The camera is programmed to automatically check if visitors are wearing masks. It uses an AI-based Face and Mask Detector that can detect multiple people at the same time.
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FACE TRACKING DRONE
This inhouse project that programmes a drone with the ability to track a user's face that is in the camera's line of sight; stay in front of the person's face; and keep a constant distance away from the person. It utilises Computer Vision to detect the person's face and keypoints which are then passed to a control system that controls the drone and keep its position fixed relative to the person's face, or search for a face if no face is detected.
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FACE TRACKING DRONE
This inhouse project that programmes a drone with the ability to track a user's face that is in the camera's line of sight; stay in front of the person's face; and keep a constant distance away from the person. It utilises Computer Vision to detect the person's face and keypoints which are then passed to a control system that controls the drone and keep its position fixed relative to the person's face, or search for a face if no face is detected.
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IN-SITU TEM SAMPLE PREPARATION ROOM
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IN-SITU TEM SAMPLE PREPARATION ROOM
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INTRODUCTION TO GARAGE@EEE
A brief introduction of what Garage@EEE is all about!
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INTRODUCTION TO GARAGE@EEE
A brief introduction of what Garage@EEE is all about!
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MACHINES AND EQUIPMENT
A wide array of machines to make your project a reality! From 3D printers to a PCB milling machine and even a laser cutter.
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MACHINES AND EQUIPMENT
A wide array of machines to make your project a reality! From 3D printers to a PCB milling machine and even a laser cutter.
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TECHNOLOGY ENHANCED LEARNING SPACE (TELS) ROOM
TELS Room is a venue for learning with online broadcasting capability.
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TECHNOLOGY ENHANCED LEARNING SPACE (TELS) ROOM
TELS Room is a venue for learning with online broadcasting capability.
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WOODWORKING AREA
All the woodworking tools and machinery to aid in creating the hardware and mechanical structure of your projects! A few of which are drills, saws, and clamps.
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WOODWORKING AREA
All the woodworking tools and machinery to aid in creating the hardware and mechanical structure of your projects! A few of which are drills, saws, and clamps.
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ATOMIC FORCE MICROSCOPE (AFM)
AFM is a microscope imaging system that allows users to perform high-resolution topographical and morphology imaging of hard and soft samples by using a mechanical probe to ‘sense’ or ‘feel’ a sample surface.
Applications of AFM include polymer sciences, semiconductors, thin films and coatings, biomaterials and more. AFM is widely used to collect data on various mechanical, functional and electrical properties of materials at the nanoscale level.
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ATOMIC FORCE MICROSCOPE (AFM)
AFM is a microscope imaging system that allows users to perform high-resolution topographical and morphology imaging of hard and soft samples by using a mechanical probe to ‘sense’ or ‘feel’ a sample surface.
Applications of AFM include polymer sciences, semiconductors, thin films and coatings, biomaterials and more. AFM is widely used to collect data on various mechanical, functional and electrical properties of materials at the nanoscale level.
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BIOSAFETY CABINET (BSC): PERFORMING CELL CULTURE WORK
The BSC is mainly used to ensure a sterile work zone for handling biological samples. It creates inflow and downflow of filtered air to protect samples from the risk of cross-contamination.
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BIOSAFETY CABINET (BSC): PERFORMING CELL CULTURE WORK
The BSC is mainly used to ensure a sterile work zone for handling biological samples. It creates inflow and downflow of filtered air to protect samples from the risk of cross-contamination.
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CARBON DIOXIDE INCUBATOR: CONTROLLED CULTIVATION OF CELLS
Carbon dioxide incubators are used to maintain a controlled environment to mimic the bodily conditions for cultivating biological cell cultures. Multiple different cells lines can be cultivated in their individual flasks at the same time. For instance, skin cells such as 'fibroblasts and keratinocytes' can be cultured before introducing them to engineered scaffolds so that they could assist in the wound healing process, particularly on non-healing/chronic wounds, e.g. burn wounds, diabetic wounds.
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CARBON DIOXIDE INCUBATOR: CONTROLLED CULTIVATION OF CELLS
Carbon dioxide incubators are used to maintain a controlled environment to mimic the bodily conditions for cultivating biological cell cultures. Multiple different cells lines can be cultivated in their individual flasks at the same time. For instance, skin cells such as 'fibroblasts and keratinocytes' can be cultured before introducing them to engineered scaffolds so that they could assist in the wound healing process, particularly on non-healing/chronic wounds, e.g. burn wounds, diabetic wounds.
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CENTRIFUGE: SPIN AND HARVEST LIVING CELLS
Centrifuge uses centrifugal force to separate the living cells from their growing media. Living cells are cultivated by submerging them in a "nutrition packed" liquid called the culture media. Then, this cocktail of living cells can be loaded into vessels, called centrifuge tubes and spun around by the centrifuge and harvested for further investigation. Apart from cells, the centrifuge can also be used to harvest proteins or separate fat cells from human tissues for tissue engineering.
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CENTRIFUGE: SPIN AND HARVEST LIVING CELLS
Centrifuge uses centrifugal force to separate the living cells from their growing media. Living cells are cultivated by submerging them in a "nutrition packed" liquid called the culture media. Then, this cocktail of living cells can be loaded into vessels, called centrifuge tubes and spun around by the centrifuge and harvested for further investigation. Apart from cells, the centrifuge can also be used to harvest proteins or separate fat cells from human tissues for tissue engineering.
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DIFFERENTIAL SCANNING CALORIMETER (DSC): CHECKING POLYMERS IF THEY ARE CRYSTALLINE OR AMORPHOUS
The DSC is used to study the thermodynamic parameters of materials such as internal energy, enthalpy, transition temperatures, thermal stability, etc.
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DIFFERENTIAL SCANNING CALORIMETER (DSC): CHECKING POLYMERS IF THEY ARE CRYSTALLINE OR AMORPHOUS
The DSC is used to study the thermodynamic parameters of materials such as internal energy, enthalpy, transition temperatures, thermal stability, etc.
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INTRODUCTION TO CIVIL ENGINEERING
Watch this video to find out what Civil Engineering at NTU is about.
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INTRODUCTION TO CIVIL ENGINEERING
Watch this video to find out what Civil Engineering at NTU is about.
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INTRODUCTION TO ENVIRONMENTAL ENGINEERING
Watch this video to find out what Environmental Engineering at NTU is about.
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INTRODUCTION TO ENVIRONMENTAL ENGINEERING
Watch this video to find out what Environmental Engineering at NTU is about.
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INTRODUCTION TO MARITIME STUDIES
Watch this video to find out what Maritime Studies at NTU is about.
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INTRODUCTION TO MARITIME STUDIES
Watch this video to find out what Maritime Studies at NTU is about.
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INVERTED MICROSCOPE: OBSERVING LIVING ORGANISMS
Inverted microscope is used for observing living cells or organisms from the bottom of a tissue culture flask or multi well plate, which is otherwise not possible with normal upright microscope. This is mainly used for life science research through the use of fluorescence and brightfield microscopy.
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INVERTED MICROSCOPE: OBSERVING LIVING ORGANISMS
Inverted microscope is used for observing living cells or organisms from the bottom of a tissue culture flask or multi well plate, which is otherwise not possible with normal upright microscope. This is mainly used for life science research through the use of fluorescence and brightfield microscopy.
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OPTICAL TENSIOMETER: IS THE MATERIAL HYRDOPHOBIC OR HYRDOPHILLIC?
Depending on whether a material is hyrdophobic or hyrdophillic, the contact angle that is measured by the Optical Tensiometer will be different. For instance, the lotus leaf (hyrdophobic) has a higher contact angle than contact lenses (hyrdophillic).
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OPTICAL TENSIOMETER: IS THE MATERIAL HYRDOPHOBIC OR HYRDOPHILLIC?
Depending on whether a material is hyrdophobic or hyrdophillic, the contact angle that is measured by the Optical Tensiometer will be different. For instance, the lotus leaf (hyrdophobic) has a higher contact angle than contact lenses (hyrdophillic).
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SPECTROPHOTOMETERS ROOM
This equipment is used to measure the optical properties of materials. Specifically, it measures the intensity of light absorbed or reflected off a sample within the ultraviolet (UV) to near-infrared (NIR) range.
UV-Vis-NIR spectroscopy of textile fibres is a common technique in the study of optical properties. Spectral information derived from the UV to NIR tells us the kinds of dyes and pigments used to colour the fibres, as well as the presence of additives. The technique is non-destructive, requires minimal sample preparation and is ideal for industrial applications and even forensics.
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SPECTROPHOTOMETERS ROOM
This equipment is used to measure the optical properties of materials. Specifically, it measures the intensity of light absorbed or reflected off a sample within the ultraviolet (UV) to near-infrared (NIR) range.
UV-Vis-NIR spectroscopy of textile fibres is a common technique in the study of optical properties. Spectral information derived from the UV to NIR tells us the kinds of dyes and pigments used to colour the fibres, as well as the presence of additives. The technique is non-destructive, requires minimal sample preparation and is ideal for industrial applications and even forensics.
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TENSILE TESTER: WHEN WILL YOUR MATERIAL SNAP TO FAIL?
A tensile test will determine how strong a material is and how much it can elongate.
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TENSILE TESTER: WHEN WILL YOUR MATERIAL SNAP TO FAIL?
A tensile test will determine how strong a material is and how much it can elongate.
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In materials characterisation, the quality of the sample is very critical to collect meaningful data. There are various tools available to prepare the samples.
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In materials characterisation, the quality of the sample is very critical to collect meaningful data. There are various tools available to prepare the samples.
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BATTERY ELECTRIC VEHICLE (BEV) PROTOTYPE
Checking of the CAD drawings of the BEV and the assembled components before fabricating the parts.
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BATTERY ELECTRIC VEHICLE (BEV) PROTOTYPE
Checking of the CAD drawings of the BEV and the assembled components before fabricating the parts.
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ROBOMASTER
This is a Robomaster S1 robot equipped with Mecanum wheel with the ability to detect people and autonomously track and follow them.
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ROBOMASTER
This is a Robomaster S1 robot equipped with Mecanum wheel with the ability to detect people and autonomously track and follow them.
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HTMLText_61464D01_41EA_9424_41BC_40F9A727D7C4.html = Established in 1994, the Robotics Research Centre (RRC) is Singapore’s first interdisciplinary robotics research centre. It has two main laboratories and a workshop teeming with research activities. Research work at the Centre ranges from fundamental scientific discoveries to applied research that results in spin-off companies and market-ready products. The research areas include medical robotics, rehabilitation and assistive robotics, social robotics and human-robot interactions.
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HTMLText_69A88BED_40DB_4E43_41CE_9A5D4499850B.html = Garage@EEE is a student-led makerspace that encourages innovation and cultivates the spirit of entrepreneurship as well as engineering ideation amongst students in the School of EEE. We provide the environment, materials, and funding for students to develop their ideas and technical skills! We also run creative initiatives to provide opportunities for our ambassadors to enhance both their soft and hard skills to ensure holistic learning.
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HTMLText_8A7FA799_A214_7A47_41D7_D2E61615CA91.html = The Pilot Plant allows you to conduct experiments and keep up with the latest technologies with our 3 state-of-the-art distillation columns and other scaled-down equipment that mimic those used in the industry.
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HTMLText_6D12F666_40C4_C64E_41A5_D88933BFC164.html = Xperience@EEE is a technology-enabled escape room where players collaboratively work together to solve quests and complete the mission to escape. Every quest station is designed by our very own engineering students!
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## Tour
### Description
### Title
tour.name = NTU CoE 360 Virtual Tour