Telepresenz vs Levers Calculator Kullanım & İstatistikleri

Telepresenz® is an augmented reality remote mentor solution that connects remote users in the field to the experts in your team enabling quicker diagnosis and resolution of issues in real-time and facilitates remote auditing, assessments, and inspections. The Telepresenz® application enables remote field users to connect with Experts and Support Teams via a video call, to collaborate and receive real-time visual assistance as and when the need occurs. The integrated workflow management capability allows field users to receive and complete assigned jobs on their devices using the digital step by step work instructions and reference materials attached to the procedures. Some of the applications of Telepresenz® include:- Remote maintenance and servicing of equipment Remote assessment and auditing for factory acceptance or installations Digitizing maintenance and inspection rounds to aid reliability Knowledge capture and competency delivery platform and more … Remote Assist Features: Calling/Receiving Calls Viewing mark-ups/documents/videos/3D files shared by Expert Camera Controls: Take Picture, Zoom, Flashlight Send/Receive Text Messages Workflow Features: Receive assigned jobs Follow step by step procedures as outlined in workflow Take Picture / Record Video as evidence Scan QR Code to programmatically retrieve data from server Call Expert while Job is in progress
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The Levers Calculator is a physics/math calculator designed for quick and easy determination of effort force, load force, distance from load force to fulcrum, distance from effort force to fulcrum, or Mechanical Advantage. Features: - Instant calculation - Results are copyable to other apps - Formulas included as references - Supports up to 16 decimal places - Supports various units for each input A lever is a simple machine consisting of a beam or rigid rod pivoted at a fixed hinge, or fulcrum. Classified into three types based on the location of fulcrum, load, and effort, levers amplify input force to provide a greater output force, creating leverage. The mechanical advantage of a lever is the ratio of the output force to the input force. Classes of levers: 1. Class 1: Fulcrum in the middle - effort on one side, load on the other (e.g., seesaw, crowbar). 2. Class 2: Resistance in the middle - effort on one side, fulcrum on the other (e.g., wheelbarrow, nutcracker). 3. Class 3: Effort in the middle - load on one side, fulcrum on the other (e.g., tweezers, human mandible). Mechanical advantage is a measure of force amplification. It's expressed by the law of the lever, where the moment action on both sides is equal: Fe x De = Fl x Dl Where: - F_e = effort force (N, lb) - F_l = load force (N, lb) - D_l = distance from load force to fulcrum (m, ft) - D_e = distance from effort force to fulcrum (m, ft) The effort force can be calculated using the formula: Fe = Fl x Dl / De Fe = m x g x Dl / De where m = mass (kg) g = acceleration of gravity (9.81 m/s²) Thanks for your support, and please visit nitrio.com for more apps for your iOS devices.
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Telepresenz VS.
Levers Calculator

Aralık 13, 2024