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Micrometer Simulator for PC

Developed By: loo kang wee

License: Free

Rating: 3.3/5 - 3 reviews

Last Updated: 2020-10-28

Compatible: Windows 11, Windows 10, Windows 8.1, Windows 8, Windows XP, Windows Vista, Windows 7, Windows Surface

What's Cool

● Pro Version thank you for your support. https://itunes.apple.com/us/app/micrometer-simulator-pro/id1237535074?ls=1&mt=8 Free Version https://itunes.apple.com/us/app/micrometer-simulator/id1164367611?ls=1&mt=8 About An open source physics at Singapore simulation based on codes written by Fu-Kwun Hwang, Loo Kang WEE and Wolfgang Christian more resources can be found here http://iwant2study.org/ospsg/index.php/interactive-resources/physics/01-measurements Introduction Micrometers use the principle of a screw to amplify small distances that are too small to measure directly into large rotations of the screw that are big enough to read from a scale.
● The basic operating principles of a micrometer are as follows: The amount of rotation of an accurately made screw can be directly and precisely correlated to a certain amount of axial movement (and vice-versa), through the constant known as the screws lead.
● (In most threads [that is, in all single-start threads], lead and pitch refer to essentially the same concept.) With an appropriate lead and major diameter of the screw, a given amount of axial movement will be amplified in the resulting circumferential movement.
● It is thick because it needs to minimize expansion, and contraction, which would distort the measurement.
● has a text 0.01 mm for smallest division of instrument has a text 2 rounds = 100 = 1.00 mm to allow association to actual micrometer Anvil (Gray) The shiny part that the spindle moves toward, and that the sample rests against. Sleeve / barrel / stock (Yellow) The stationary round part with the linear scale on it.

App Information

Version 0.1.13
Size 63.2 MB
Release Date 2016-10-13
Category Education

What's New:
bug fixes ... [see more]

Description:
Pro Version thank you for your ... [read more]

Age Rating: 4+

Compatible with Android

Download for Android

Compatible with iPhone, iPad and MAC

Download on iOS

App preview ([see all 4 screenshots])

App preview

Micrometer Simulator is Free Education app, developed by loo kang wee. Latest version of Micrometer Simulator is 0.1.13, was released on 2016-10-13 (updated on 2020-10-28). Overall rating of Micrometer Simulator is 3.3. This app had been rated by 3 users.

How to install Micrometer Simulator on Windows and MAC?

You are using a Windows or MAC operating system computer. You want to use Micrometer Simulator on your computer, but currently Micrometer Simulator software is only written for Android or iOS operating systems. In this article we will help you make your wish come true.

Currently, the demand for using applications for Android and iOS on computers is great, so there have been many emulators born to help users run those applications on their computers, outstanding above all Bluestacks and NoxPlayer.

Here we will show you how to install and use the two emulators above to run Android and iOS applications on Windows and MAC computers.

Method 1: Micrometer Simulator Download for PC Windows 11/10/8/7 using NoxPlayer

NoxPlayer is Android emulator which is gaining a lot of attention in recent times. It is super flexible, fast and exclusively designed for gaming purposes. Now we will see how to Download Micrometer Simulator for PC Windows 11 or 10 or 8 or 7 laptop using NoxPlayer.

  • Step 1: Download and Install NoxPlayer on your PC. Here is the Download link for you – NoxPlayer Website. Open the official website and download the software.
  • Step 2: Once the emulator is installed, just open it and find Google Playstore icon on the home screen of NoxPlayer. Just double tap on that to open.
  • Step 3: Now search for Micrometer Simulator on Google playstore. Find the official from developer and click on the Install button.
  • Step 4: Upon successful installation, you can find Micrometer Simulator on the home screen of NoxPlayer.

NoxPlayer is simple and easy to use application. It is very lightweight compared to Bluestacks. As it is designed for Gaming purposes, you can play high-end games like PUBG, Mini Militia, Temple Run, etc.

Method 2: Micrometer Simulator for PC Windows 11/10/8/7 or Mac using BlueStacks

Bluestacks is one of the coolest and widely used Emulator to run Android applications on your Windows PC. Bluestacks software is even available for Mac OS as well. We are going to use Bluestacks in this method to Download and Install Micrometer Simulator for PC Windows 11/10/8/7 Laptop. Let’s start our step by step installation guide.

  • Step 1: Download the Bluestacks software from the below link, if you haven’t installed it earlier – Download Bluestacks for PC
  • Step 2: Installation procedure is quite simple and straight-forward. After successful installation, open Bluestacks emulator.
  • Step 3: It may take some time to load the Bluestacks app initially. Once it is opened, you should be able to see the Home screen of Bluestacks.
  • Step 4: Google play store comes pre-installed in Bluestacks. On the home screen, find Playstore and double click on the icon to open it.
  • Step 5: Now search for the you want to install on your PC. In our case search for Micrometer Simulator to install on PC.
  • Step 6: Once you click on the Install button, Micrometer Simulator will be installed automatically on Bluestacks. You can find the under list of installed apps in Bluestacks.

Now you can just double click on the icon in bluestacks and start using Micrometer Simulator on your laptop. You can use the the same way you use it on your Android or iOS smartphones.

For MacOS: The steps to use Micrometer Simulator for Mac are exactly like the ones for Windows OS above. All you need to do is install the Bluestacks Application Emulator on your Macintosh. The links are provided in step one and choose Bluestacks 4 for MacOS.

Micrometer Simulator for PC – Conclusion:

Micrometer Simulator has got enormous popularity with it’s simple yet effective interface. We have listed down two of the best methods to Install Micrometer Simulator on PC Windows laptop. Both the mentioned emulators are popular to use Apps on PC. You can follow any of these methods to get Micrometer Simulator for PC Windows 11 or Windows 10.

We are concluding this article on Micrometer Simulator Download for PC with this. If you have any queries or facing any issues while installing Emulators or Micrometer Simulator for Windows, do let us know through comments. We will be glad to help you out!

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bug fixes and enhancements added AdsMob
Pro Version thank you for your support. https://itunes.apple.com/us/app/micrometer-simulator-pro/id1237535074?ls=1&mt=8 Free Version https://itunes.apple.com/us/app/micrometer-simulator/id1164367611?ls=1&mt=8 About An open source physics at Singapore simulation based on codes written by Fu-Kwun Hwang, Loo Kang WEE and Wolfgang Christian more resources can be found here http://iwant2study.org/ospsg/index.php/interactive-resources/physics/01-measurements Introduction Micrometers use the principle of a screw to amplify small distances that are too small to measure directly into large rotations of the screw that are big enough to read from a scale. The accuracy of a micrometer derives from the accuracy of the thread form that is at its heart. The basic operating principles of a micrometer are as follows: The amount of rotation of an accurately made screw can be directly and precisely correlated to a certain amount of axial movement (and vice-versa), through the constant known as the screws lead. A screws lead is the distance it moves forward axially with one complete turn (360°). (In most threads [that is, in all single-start threads], lead and pitch refer to essentially the same concept.) With an appropriate lead and major diameter of the screw, a given amount of axial movement will be amplified in the resulting circumferential movement. The micrometer has most functional physical parts of a real micrometer. Frame ( Orange ) The C-shaped body that holds the anvil and barrel in constant relation to each other. It is thick because it needs to minimize expansion, and contraction, which would distort the measurement. The frame is heavy and consequently has a high thermal mass, to prevent substantial heating up by the holding hand/fingers. has a text 0.01 mm for smallest division of instrument has a text 2 rounds = 100 = 1.00 mm to allow association to actual micrometer Anvil (Gray) The shiny part that the spindle moves toward, and that the sample rests against. Sleeve / barrel / stock (Yellow) The stationary round part with the linear scale on it. Sometimes vernier markings. Lock nut / lock-ring / thimble lock (Blue) The knurled part (or lever) that one can tighten to hold the spindle stationary, such as when momentarily holding a measurement. Screw (not seen) The heart of the micrometer It is inside the barrel. Spindle (Dark Green) The shiny cylindrical part that the thimble causes to move toward the anvil. Thimble (Green) The part that ones thumb turns. Graduated markings. Ratchet (Teal) (not shown ) Device on end of handle that limits applied pressure by slipping at a calibrated torque. This applet has an object (Black) with slider on left top to control the y-motion of the object into the anvil and spindle (jaws), the graphics also allows drag action. with slider on left bottom to control the x-size of the object into the anvil and spindle (jaws). On the left bottom slider is the zero error control to allow of exploring with if the micrometer has either +0.15 mm (max) or -0.15 mm (min) zero error. The are check boxes: hint: guide lines and arrows to indicate the region of interest plus the accompanying rationale for the answer. answer: shows the measurement d = ??? mm lock: allows simulating of the lock function in real micrometer which disable changes to the position of the spindle then by the measurement is unchangeable. On the bottom there is a green slider to control the position of the spindle, drag on any part of the view also drags the spindle. Interesting Fact This simulation has object detection and hints targeted for O level Physics education, the zero error is also built in which other iOS app do not have. Acknowledgement My sincere gratitude for the tireless contributions of Francisco Esquembre, Fu-Kwun Hwang, Wolfgang Christian, Félix Jesús Garcia Clemente, Anne Cox, Andrew Duffy, Todd Timberlake and many more in the Open Source Physics community.