The Myth Hindi Dubbed Movie Download 300mb

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Gundenia Ransbottom

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Aug 4, 2024, 11:49:55 PM8/4/24
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OKmoved house from 300mbs smart hub 2, was perfect connection all the time.

Now I have the 900mb package with a nokia modem and the new Hub that gives an EE-wifi address.



Wifi was topping out at 20Mbps. Constantly drops. Engineer found the installer bent the cable, replaced that.

Wifi still slow as hell. Next engineer things it's intereference, changes bands on hub and tells me to upgrade to a wifi 6 router if I want to use the fibre to full potential.



So now I have a TP-Link Wifi 6 AX3000 Mbps plugged into the BT Hub and I am using a TP-Link AC1300 high gain MU-MIMO wifi dongle.

Dongle showing 866Mbps link speed. Router showing 1000mbps speed.

Internet speed tests 220-300mbps....?



I have checked it's using 5ghz etc. Can't work out why I'm not getting the full speed possible.


The first thing to check is that you're getting the 900 Mb/s speed on your fibre. You can do this on the MyBT app on your phone, or with a laptop connected to the router by a Cat 5e or better ethernet cable (although I think the MyBT app will only work with the BT Hub).


Assuming that shows the fibre is delivering full speed, then you know the problem is 'just' your WiFi. Unfortunately that's the hardest thing to optimise as it depends on so many parameters. Best starting point is to get a WiFi analyser app on your phone and switching your router to the least busy channel(s).


To be honest, the 220 - 300 Mb/s you're seeing is pretty good in my experience, and if you want to do something that needs more (e.g. large game downloads) then you're better off with an ethernet cable.


Alas I have solved the issue.



Turns out the high gain dongle isn't Wifi 6, which I discovered in trying to switch the band to 802.11ax.



Have ordered a wifi 6 dongle now. Should have 866 Mb/s by tomorrow



/edit, should also add that disabling wifi on the EE BT hub whatever it's called, has dramatically improved the connection. Customer service offered to send me a Smart hub 2 again, because in their own words "it's much stronger against interference than the new ones"



If I could remove the hub from the daisy chain completely I would but the nokia modem doesn't have a phone jack so I can't use my landline unless I have the hub plugged in


Please dont expect 866Mbps ahead of time, it is very hard to achieve unless the conditions are perfect and you are right near an AP. You will likely need to use 80Mhz which will open you up to more interference.


In my home after much tweaking, it is possible to get 850Mbps using Unifi gear but actually 600-700Mbps is more often the result, also if you want to see the absolute max WIFI performance you need a local speed test server, build an Openspeed Test Server either on a Raspberry Pi or something.


Cat5e is perfectly fine for break neck WIFI speeds, my setup is all 2.5Gb switches which we all know is rock solid over Cat5e. Now a 2.5Gb network is going to give you more than enough headroom for WIFI 6 top speeds.


Anyway, other than that, this dude isnt getting 866Mbps tomorrow and this could lead him down an expensive wormhole like I did. Like I said, if you want to chase dizzy wifi highs then you need a local speed test server and not using internet ones.


The new dongle is 1200 down 540 up. The 866 link speed is what my new router is sending out and windows is recognising it but my current dongle can't process wifi 6 protcol so it's topping out at 300Mb/s by not using the correct band. very consistently 300Mb/s though it's very nice for a laptop.



I know I can do much better with a hardline but I am on a mission to get full value of my fibre with a wireless connection. I only recently moved so I'll install some lines when I'm not acheing from the renovation works anymore






Wi-Fi 6 was rumoured to be full duplex but it never happened, as far as I know. Wi-Fi 7 is in prep and said to be full duplex, using two different frequencies, but that may turn out to be urban myth again.


That sounds realistic, I'll let you know what I achieve.

I am currently running the 5ghz on 160Mhz and it's been crystal clear, I've now optimized my software for the speed. Fingers crossed it works as planned.


Video file size can be a tricky thing. How large is the one you just recorded? This complex storage format holds a lot of information and there are many reasons why you may want to check the size of it. In order to get the most accurate calculation, we need to start by dispelling a common myth:


Bitrate is the most important factor in determining a video file size. Technically-speaking, you can have a 4K video with a lower bitrate than a 720p video. However, in this instance, the 4k video quality would appear poor but take less space on the disk when compared to a 720p video. And if your video contains audio? That track has its own bitrate as well.


Although the original intent to write about video file size, read along if you would like to learn more about videos, overall. This guide purposefully hides complex details to simplify the understanding of most common terms and their usage. If you have any questions or suggestions, please reach out to our team.


Frame Rate: The number of frames (frame rate) presented on screen per second is represented as with FPS or frames per second. A typical video can have 15 to 120 frames per second. 24 is used in movies and 30 FPS on common on TV.



The frame rate should not be used interchangeably with shutter speed. Shutter speed is an in-camera setting used to determine the amount of motion blur in film production.



More FPS means smoother playback but a bigger file.


Compression reduces the space required to store similar frames that have fewer moving parts. Such as a landscape scene with little or no motion between frames. Since motion in scenes can drastically change in most videos, some encoders allow encoding at a variable bit rate by consuming more than average when needed and less when the scene is mostly static.


Encoding: Encoding is the process of digitization of analog video streams. Just like getting an electric wire feed from the camera and storing the content in a .mov file. The process may happen in hardware or software. Many digital cameras encode video natively, without needing to have any additional software post-processing and requiring less storage space.



The conversion between different file formats is called transcoding. These terms have different meanings but are used interchangeably since digital cameras have greatly eliminated the need for encoding these days.


Codec: Codec is the program that is responsible for the encoding and compression of the video and audio tracks. A lossless raw encoder may not compress the data hence need a lot of storage space to store every bit of the video feed. A lossy codec such as H.264 could store the same video on a fraction of filesize. Different codecs are used to achieve a balance between quality and storage space.


H.264 aka AVC (Advanced Video Coding) by the MPEG group is internets current popular codec. This codec is widely supported by most mobile devices, web browsers, and operating system vendors thankfully requiring many different formats for playback like the old days.



Mp3 by MPEG group and AAC (Advanced Audio Coding) by Apple are the most popular audio codec on the internet. Since the mp3 patents have expired AAC is being recommended.


A newer video codec H.265 aka High-Efficiency Video Coding or HEVC is now available as the successor of the H.264 codec. H.256 provides better compression and faster decompression. This codec is being promoted for use by video pioneers such as Netflix and Youtube to improve the streaming video quality and experience, especially on slower connections.


Containers: Often called file formats such as MP4, MOV, AVI, WMV, MKV, and WebM. There are a lot of different container formats. MP4 is very popular on the web and WebM is an open container format being actively promoted by Google for royalty-free internet use.


The container is a file format that describes how the tracks (video/audio/subtitles) stored inside the file. The file format is just a matter of choice often used along with well-known codecs that work together. Some containers allow streaming video playback while others require the file to be downloaded entirely before playback. Since these container formats support different feature sets and require some agreement and royalty payment by the manufacturer, vendors tend to prefer one format over another.



If you like to learn more here is a detailed comparison on Wikipedia.


MP4: MP4 (MPEG-4 Part 14) is a well-known internet container/file format that is supported by a wide range of devices such as mobile phones and digital cameras. This container allows storage of multiple video, audio, subtitles, and other metadata, where containers such as mp3 container only allowed audio tracks and a limited set of metadata inside it. A variant of this format supports progressive streaming, this is the most preferred format for internet video playback.


HDR: High dynamic range. Modern TVs and cameras are able to capture greater details of images and video in senses that contain brighter and dark objects. In traditional SDR (Standard dynamic range) images were either bright or dark depending on the contrast application. HDR format can, however, capture more information per pixel (32 bits) and let the display decide the actual contract at the time of presentation. This method requires double the amount of storage file size and some advanced compression technique that can impact the final file size when applied.


Audio: Some containers allow multiple audio tracks embedded in the video files. Hence the size of the video depends on no of tracks and bitrate of the audio as well. 192Kbps bitrate is considered good quality audio for stereo sound.

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