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How many degrees of freedom or flexible joints does the robear have?

Robear, the caregiving robot developed in Japan, features multiple degrees of freedom to effectively assist in tasks such as lifting and supporting patients. It has approximately 16 degrees of freedom, allowing for flexible movements that mimic human-like interactions. This level of articulation enables Robear to navigate various caregiving scenarios while ensuring safety and comfort for those it assists.


How many degrees of freedom for simply supported beam?

Well, honey, a simply supported beam has two degrees of freedom - one at each end where it can rotate and move up and down. So, if you're looking to shake things up with that beam, you've got a couple of options to play with. Just don't get too wild and start adding more degrees of freedom, keep it simple, sweetie.


How do the screw conveyor design?

A screw conveyor is basically a long tube that transport a certain material from a point A to a point B. The way in which the material is transported is by a helical screw, invented by Archimede almost 2000 years ago. It can transport material in any kind of inclination, from 0 degrees up to 90 degrees. It's used for many industrial purpose.


What is the purpose for the gaps in the road on the bridges?

Thermal expansion. look it up. heat expands and cold contracts. Even RR track-workers leave a near-microscopic gap to allow for this. There are expansion joints on all bridges over a certain size- One end ( of the span) is fixed- directly on the pier(s) the other end has a certain amount of expansion caused by , mainly temperature variations- hence Thermal expansion.The expansion joints are essentially automatic, and do not require operator attention. I used to work on bridges- and am a long-time railroad buff. If they didn't have gaps then the bridges and highways would crack and break which will cost money for the government to repair (the taxes we pay will pay for the cost of it. Hope that it helped :) Mickey this is the answer to 6 copy now


How many btuh in cfm?

To convert CFM (cubic feet per minute) to BTU/hr (British thermal units per hour), you can use the formula: BTU/hr = CFM × ΔT × 1.08, where ΔT is the temperature difference in degrees Fahrenheit between the inlet and outlet air. The constant 1.08 is derived from the specific heat of air and the conversion factors of CFM to BTU. Therefore, the exact number of BTU/hr from CFM depends on the temperature difference you are considering.

Related Questions

How many degrees of freedom or flexible joints does the robot have?

cats


How many flexible joints do entertainment robots have?

Entertainment robots apparently have 7 flexible joints.


How many degrees of freedom or flexible joints does a hoverboard have?

A hoverboard typically has two degrees of freedom, allowing it to move forward, backward, and rotate about a vertical axis. The flexible joints in the hoverboard's design enable it to tilt in response to the rider's shifting weight, facilitating movement in these directions. However, it lacks additional degrees of freedom for lateral movement or vertical adjustments, as it primarily operates on a flat surface.


How manyb flexible joints does a fish robot have?

However many the designer wants it to have.


How many degrees of freedom or flexible joints does the robear have?

Robear, the caregiving robot developed in Japan, features multiple degrees of freedom to effectively assist in tasks such as lifting and supporting patients. It has approximately 16 degrees of freedom, allowing for flexible movements that mimic human-like interactions. This level of articulation enables Robear to navigate various caregiving scenarios while ensuring safety and comfort for those it assists.


How many flexible joints does a robotic vacuum cleaner have?

A robotic vacuum cleaner typically has two flexible joints: one at the base where the vacuum head connects to the main body, and another at the point where the main body connects to the wheels for maneuverability.


How many degrees of freedom of flexible joints does a rescue robots?

Rescue robots typically have multiple degrees of freedom (DoF) in their flexible joints to navigate complex environments effectively. The number of DoF can vary depending on the robot's design; for instance, robotic arms may have 5 to 7 DoF to allow for a wide range of motion. Additionally, mobile rescue robots may have wheels or tracks that provide further movement capabilities, contributing to their overall flexibility. Ultimately, the specific configuration will depend on the robot's intended tasks and design.


How many degrees of freedom or flexible joint does a household robot hav?

50


Why the vertebral column of the human skeleton made up of many bones?

Many bones have many joints, hence, great flexibility.


What has the author P Th L M van Woerkom written?

P. Th. L. M. van Woerkom has written: 'Accuracy of modal frequency set with fictitious joints modelling' -- subject- s -: Flexible bodies, Joints, Modal response, Manipulators 'On fictitious joints modelling of manipulator link flexibility for the HERA simulation facility pilot' -- subject- s -: Joints, Hermes manned spaceplane, Manipulators 'Synthesis of local control for a robotic manipulator joint' -- subject- s -: Actuators, Joints, Robotic manipulators 'Equivalent flexibility modelling for the recursive simulation of robot manipulator dynamics' -- subject- s -: Flexible bodies, Many body problem, Manipulators 'Quasi-recursive dynamics equations for spacecraft-based flexible robotic manipulators' -- subject- s -: Flexible bodies, Many body problem, Dynamic models, Manipulators


How many flexible joints do robot cars have?

The same number as a car driven by a person. The precise number would depend on the make and model of the car.


What is cartilage and why is it important?

Cartilage is a flexible connective tissue found in many parts of the body, such as joints, nose, and ears. It provides support, cushioning, and reduces friction between bones. Cartilage is important for maintaining the structure and function of joints and other body parts.