• How to Make Loop Videos on an iPhone
    #iPhone
    #Loop
    https://officesetup.business.blog/2019/08/02/how-to-make-loop-videos-on-an-iphone/
    Loop videos are quite trending, especially on Instagram. You can easily make a video that goes back and forth. If you have an iPhone, then follow these steps and create loop videos.
    How to Make Loop Videos on an iPhone #iPhone #Loop https://officesetup.business.blog/2019/08/02/how-to-make-loop-videos-on-an-iphone/ Loop videos are quite trending, especially on Instagram. You can easily make a video that goes back and forth. If you have an iPhone, then follow these steps and create loop videos.

    Loop videos are quite trending, especially on Instagram. You can easily make a video that goes back and forth. If you have an iPhone, then follow these steps and create loop videos.

    Making a Looping Video with Boomerang

    Here is the process of making a looping video with Boomerang. Follow the instructions carefully.

    • First, you will have to go to the App Store.

    • After that, Click on Search section.

    • Then you can enter Boomerang and click on search.

    • Thereafter click on Boomerang app and click on GET.

    • When the prompt comes, input your iPhone’s Touch ID.

    • After that, launch the boomerang app.

    • You can slide left via welcome pages and click on Get Started.

    • Click OK to permit Boomerang to access your camera.

    • Select whether to permit Boomerang to use your location.

    • Now, click OK to permit Boomerang to store your looped videos.

    • Align the subject of your video in the camera.

    • Boomerang will launch with the front camera, if you want to use a rear camera then click on the curved arrow icon.

    • After that, press the shutter button to toggle the flash on or off.

    • Then long press on the shutter button to make a video.

    • Click on SAVE.

    Use Looper

    Here is the process of using Looper for making a video. Follow the instructions carefully.

    • First, you will have to go to the App Store on your iPhone.

    • After that, click on Search.

    • Then enter Looper in the search field.

    • Thereafter select the app and click on GET.

    • Now, input your Apple Touch ID when the prompt comes.

    • You can launch the Looper app.

    • Click on the + icon.

    • Check your camera roll.

    • When the prompt comes, click on All Photos.

    • Choose the video that you want to loop.

    • Click on Choose.

    • Click on the red repeat button.

    • You can swipe the slider at the bottom to the right position.

    • After that, click on the check mark.

    • Then click the video and click on the “Download” icon.

    • Click Yes when the prompt comes.

    • Thereafter choose an orientation.

    • Select Yes when the prompt comes.

    •    Click on OK, when you can view the success message.

    Jay Cross is a trained office.com/setup expert who works with the development team with feedback from customers to make it to expectations. He lives in New York and In addition to his work, he also writes for his personal blog.

    Source : Make Loop Videos on iPhone

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  • Spectacular loops and prominences are often visible on the Sun's limb (left).
    Spectacular loops and prominences are often visible on the Sun's limb (left).
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  • The ringer circuit remains connected to the local loop even when the telephone is on hook. A larger voltage is necessary to activate the ringer because the ringer circuit is made with a high electrical impedance in order to avoid draining power from the transmitter-receiver circuit when the telephone is in use. A capacitor prevents direct current from passing through the ringer once the handset has been lifted off the switch hook.
    The ringer circuit remains connected to the local loop even when the telephone is on hook. A larger voltage is necessary to activate the ringer because the ringer circuit is made with a high electrical impedance in order to avoid draining power from the transmitter-receiver circuit when the telephone is in use. A capacitor prevents direct current from passing through the ringer once the handset has been lifted off the switch hook.
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  • When the telephone is “on hook,” contact with the local loop is broken. When it is “off hook” (i.e., when the handset is lifted from the cradle), contact is restored, and current flows through the loop. The switching office signals restoration of contact by transmitting a low-frequency “dial tone”—actually two simultaneous tones of 350 and 440 hertz.
    Business telephone, c. 2000.
    When the telephone is “on hook,” contact with the local loop is broken. When it is “off hook” (i.e., when the handset is lifted from the cradle), contact is restored, and current flows through the loop. The switching office signals restoration of contact by transmitting a low-frequency “dial tone”—actually two simultaneous tones of 350 and 440 hertz. Business telephone, c. 2000.
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  • Switch hook

    The switch hook connects the telephone instrument to the direct current supplied through the local loop. In early telephones the receiver was hung on a hook that operated the switch by opening and closing a metal contact. This system is still common, though the hook has been replaced by a cradle to hold the combined handset, enclosing both receiver and transmitter. In some modern electronic instruments, the mechanical operation of metal contacts has been replaced by a system of transistor relays.
    Switch hook The switch hook connects the telephone instrument to the direct current supplied through the local loop. In early telephones the receiver was hung on a hook that operated the switch by opening and closing a metal contact. This system is still common, though the hook has been replaced by a cradle to hold the combined handset, enclosing both receiver and transmitter. In some modern electronic instruments, the mechanical operation of metal contacts has been replaced by a system of transistor relays.
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  • Power source

    In the first experimental telephones the electric current that powered the telephone circuit was generated at the transmitter, by means of an electromagnet activated by the speaker’s voice. Such a system could not generate enough voltage to produce audible speech in distant receivers, so every transmitter since Bell’s patented design has operated on a direct current supplied by an independent power source. The first sources were batteries located in the telephone instruments themselves, but since the 1890s current has been generated at the local switching office. The current is supplied through a two-wire circuit called the local loop. The standard voltage is 48 volts.
    Power source In the first experimental telephones the electric current that powered the telephone circuit was generated at the transmitter, by means of an electromagnet activated by the speaker’s voice. Such a system could not generate enough voltage to produce audible speech in distant receivers, so every transmitter since Bell’s patented design has operated on a direct current supplied by an independent power source. The first sources were batteries located in the telephone instruments themselves, but since the 1890s current has been generated at the local switching office. The current is supplied through a two-wire circuit called the local loop. The standard voltage is 48 volts.
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  • First computing device

    A portion of Babbage's Difference engine.
    Charles Babbage, an English mechanical engineer and polymath, originated the concept of a programmable computer. Considered the "father of the computer",[17] he conceptualized and invented the first mechanical computer in the early 19th century. After working on his revolutionary difference engine, designed to aid in navigational calculations, in 1833 he realized that a much more general design, an Analytical Engine, was possible. The input of programs and data was to be provided to the machine via punched cards, a method being used at the time to direct mechanical looms such as the Jacquard loom. For output, the machine would have a printer, a curve plotter and a bell. The machine would also be able to punch numbers onto cards to be read in later. The Engine incorporated an arithmetic logic unit, control flow in the form of conditional branching and loops, and integrated memory, making it the first design for a general-purpose computer that could be described in modern terms as Turing-complete.[18][19]

    The machine was about a century ahead of its time. All the parts for his machine had to be made by hand – this was a major problem for a device with thousands of parts. Eventually, the project was dissolved with the decision of the British Government to cease funding. Babbage's failure to complete the analytical engine can be chiefly attributed to difficulties not only of politics and financing, but also to his desire to develop an increasingly sophisticated computer and to move ahead faster than anyone else could follow. Nevertheless, his son, Henry Babbage, completed a simplified version of the analytical engine's computing unit (the mill) in 1888. He gave a successful demonstration of its use in computing tables in 1906.
    First computing device A portion of Babbage's Difference engine. Charles Babbage, an English mechanical engineer and polymath, originated the concept of a programmable computer. Considered the "father of the computer",[17] he conceptualized and invented the first mechanical computer in the early 19th century. After working on his revolutionary difference engine, designed to aid in navigational calculations, in 1833 he realized that a much more general design, an Analytical Engine, was possible. The input of programs and data was to be provided to the machine via punched cards, a method being used at the time to direct mechanical looms such as the Jacquard loom. For output, the machine would have a printer, a curve plotter and a bell. The machine would also be able to punch numbers onto cards to be read in later. The Engine incorporated an arithmetic logic unit, control flow in the form of conditional branching and loops, and integrated memory, making it the first design for a general-purpose computer that could be described in modern terms as Turing-complete.[18][19] The machine was about a century ahead of its time. All the parts for his machine had to be made by hand – this was a major problem for a device with thousands of parts. Eventually, the project was dissolved with the decision of the British Government to cease funding. Babbage's failure to complete the analytical engine can be chiefly attributed to difficulties not only of politics and financing, but also to his desire to develop an increasingly sophisticated computer and to move ahead faster than anyone else could follow. Nevertheless, his son, Henry Babbage, completed a simplified version of the analytical engine's computing unit (the mill) in 1888. He gave a successful demonstration of its use in computing tables in 1906.
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  • http://amritaspa.bloopist.com/posts/benefits-of-aromatherapy-massage Benefits of Aromatherapy Massage - People are enjoying the health benefits of Aromatherapy; basically it is a therapeutic massage which is used to speed up the healing process, reduce anxiety, and it has powerful effects on improving physical, emotional and spiritual well-being.
    http://amritaspa.bloopist.com/posts/benefits-of-aromatherapy-massage Benefits of Aromatherapy Massage - People are enjoying the health benefits of Aromatherapy; basically it is a therapeutic massage which is used to speed up the healing process, reduce anxiety, and it has powerful effects on improving physical, emotional and spiritual well-being.
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