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Kaleidoscope light

To observe the working of a kaleidoscope, one should shake the instrument and peek in through the small hole. The final step is to pour small colourful glass, crystal, or sparkle pieces into the tube. Attach another circular piece of transparent glass that has the same dimensions as that of the cardboard circular cut out to the base of the tube. Now, attach the cardboard circular piece to the top of the tube with the help of glue or tape. It should be noted that the diameter of the circular cardboard cut out should be equal to the diameter of the cylindrical tube. The next step is to cut a circular piece from the cardboard sheet and drill a small hole at its centre. The length of the cylindrical tube is preferred to be longer than the length of the mirror prism. The prism structure made up of mirrors is then fixed inside the hollow cylindrical tube. These mirrors are attached to each other in the shape of a triangular or a pentagonal prism. Typically, a kaleidoscope usually makes use of three or five rectangle-shaped mirrors. The materials required for the construction of a kaleidoscope include a hollow cardboard cylinder, three or more rectangular pieces of plain mirror, a cardboard piece, adhesive tape or glue, a pair of scissors, and a piece of transparent glass. The first step to constructing a kaleidoscope is to join the rectangular pieces of mirrors or reflective surfaces edge to edge with the help of adhesive tape or glue and form a prism shape. Here, ��X’ denotes the angle of inclination between the two mirrors. The exact number of images of an object formed when it is placed in front of two plane mirrors placed at a particular angle can be easily determined with the help of the formula, (360/X)°-1. The angle between the mirrors serves to be the prime criterion that decides the number of resultant complete and composite or partial images of the object. The number of reflections or the number of images formed as a result can be easily determined by observing the angle at which the mirrors are aligned. One can easily observe the phenomenon of multiple reflections in real life by using more than one mirror to obtain the reflections of an object. This phenomenon is known as multiple reflections. This property of mirrors can be utilized to obtain more than one reflection of an object. The basic property of a mirror is to reflect the image of any object that is placed in front of it. A kaleidoscope typically works on the principle of multiple reflections.

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Last, but not least, while you can’t do any administrative tasks (yet), eFront Android app will let you access your full user profile from within the app. Of course, the eFront Android app is Branch-enabled, so your learners will be able to log in and access any specific Branch (and/or domain) that they have been assigned to. And, as we’ve already said, your completion progress is synced back to your eFront portal. The eFront Android app also supports all the same unit completion methods that are available in the web edition of eFront, including content traversal and course completion rules. This means you have access to all standard question types and assessment features (allowed time, question shuffling, etc), right from your smartphone. Of course, there are certain rules that must be respected in order for a course to function offline, like only using embeded video and not YouTube clips, or not rely on web links.Īssessments are also supported (even when offline). If you fly or travel a lot, frequent areas with poor coverage, or live in a place with expensive data plans, you’ll find this feature rather handy.
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The app offers offline learning with automatic synchronization of your status to your eFront portal when you are back online. The first feature is less some specific functionality, and more of an overall vision, one to which we alluded to already: the eFront Android app is streamlined for mobile learning, with a clean UI, minimal interface distractions, and a focus on your learning content. But let’s have a look at the app’s features already, shall we? Our eFront Android app doesn’t try to cram every feature from the web version of eFront into your smartphone or tablet but aims to provide an interface optimized for the small(er) screens of mobile devices, and the shorter attention spans of people on the move. It also has a strong focus on mobile and offline learning, and especially microlearning (and microcertifications). This means it’s blazing fast, and it allows us to be easy on the battery, integrate better with the underlying device, and do some things that are impossible to do in a web app. Like, proper native, not browser-inside-an-app “native”. The new application is fully native, for starters. But now we are talking about a whole new level of mobile goodness. Sure, eFront always had a great presence on iOS and Android thanks to its responsive and mobile-friendly web UI. It’s time to welcome a fresh member to the team of superhero Talent Development and Learning platforms! We’d love to tell that, but alas, we have newer tales to weave. The eFront origin mythology is a deep and interesting one.

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