caradonobservatory.co.uk Report : Visit Site


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    The main IP address: 213.175.195.117,Your server United Kingdom,Maidenhead ISP:eUKhost LTD  TLD:uk CountryCode:GB

    The description :a collection of astronomical articles from caradon observatory....

    This report updates in 29-Jul-2019

Created Date:12-Apr-2009
Changed Date:05-Apr-2019

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Latitude: 51.522789001465
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City: Maidenhead
Region: England
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articles astrophotography gallery about contact links caradon observatory dslr and kit lens astrophotography 21/9/2017 0 comments the hurlers ​kit lenses, commonly bundled with dslr cameras, offer a natural entry point into astrophotography due to availability and their wide field of view, allowing reasonable exposure times from a fixed tripod. the major difficulties for first time users are finding the correct camera settings and focusing on infinity. this guide offers a few tips based on my own experiences and blunders. cygnus from menorca this was one of my first attempts at shooting the milky way, taken on holiday in menorca. i didn’t have a tripod with me so i simply laid the camera down on the patio, pointing straight up. it’s a 30 second exposure at 18mm focal length, giving the widest field of view. to capture as much light as possible the camera iris was opened fully, giving a focal ratio of f3.5. ​ camera and lens settings it’s worth experimenting with these settings before heading out, to help avoid the frustration of fighting the camera in the dark. aperture when shooting from a fixed tripod it’s important to gather as much light as possible. typically this means shooting with the lens wide open by selecting the lowest aperture setting available. the milky way and andromeda galaxy when taking the image above i forgot to open up the lens aperture, so it was shot at f5.6. as a result less light is reaching the sensor, giving a dim and grainy image dominated by electronic noise. despite this i managed to accidentally capture the andromeda galaxy at lower right. the aperture setting is something of a compromise, shooting wide open will result in distorted stars in the corners (coma) but this is often preferable to a noisy image. (if shooting with a faster lens or a particularly low-noise camera it may be worth stopping down slightly to improve the star shapes.) exposure length at 18mm focal length, giving the widest field of view, exposure lengths of roughly 20-30 seconds are possible before star trailing becomes apparent. the maximum exposure time varies slightly depending on where the camera is pointed. close to the north and south celestial poles the apparent motion of the stars is slower, so longer exposures can be used. i usually take 30 second shots regardless when imaging the milky way, trading a little bit of star trailing for a brighter image. iso users of entry and mid-level cameras will probably get the best results between iso 800 and 3200. iso 3200 will show up the milky way much more clearly but at the expense of a noisier image; however, this can be greatly reduced in post-processing. timer selecting 2 second timer mode helps prevent any vibration when releasing the shutter, to avoid producing streaky stars in the final image. lens switches and zoom manual focus must be selected on the lens. also, some lens models have an image stabilisation/vibration reduction switch which may need to be disabled, depending on the model – some are not suitable for shooting from a tripod with this turned on. the zoom barrel should be set to the widest setting, typically 18mm focal length. focusing the next step is to take the camera outside, preferably somewhere dark. finding a sharp focus with a kit lens can be challenging as they are quite slow lenses. optical design is a compromise and the handy zoom ability results in lower light transmittance compared to a fixed focal length prime lens at the same focal ratio. even at f3.5 only the brightest stars will be visible through the viewfinder or on liveview. ​ the first step is to find a rough infinity focus. auto-focus lenses need to be able to focus past infinity so this won’t be quite at the limit of travel of the focus ring. it’s worth checking in daylight which way the focus ring needs to be turned to reach infinity. for a rough focus turn it to the stop and then back a very small amount. fine focusing is best achieved using the liveview feature if the camera supports it; i boost the iso level to 3200 or 6400 after turning the display on to increase the number of visible stars. the next step is to find an object bright enough to focus on, which may not be in the same area of sky as that you wish to image. this is where some familiarity with the sky helps. a software planetarium such as stellarium (a free download) will allow you to check what is visible from your location at any given time. here are some suggested targets in order of brightness: • the moon. if the moon is up you can even use auto-focus then click the lens back into manual mode, however this may not give the best possible focus across the whole frame. also, if the moon is too bright the sky will be washed out and fewer stars will be visible. • the planets. venus, jupiter, saturn and usually mars are brighter than any stars and easier to focus on. • failing that, a bright star. here’s a list of the brightest visible stars , if you aren’t sure where they are located in the sky you can check using stellarium. if you have a clear view of the horizon, a distant streetlight may be easier to focus on than a star. when focusing on liveview it’s better to place the object a third of the way from the edge of frame rather than in the centre, this gives a better focus across the whole frame. this trick appears to work with all lenses and telescopes. make small adjustments back and forth, the goal is to make the star as small and round as possible. another approach is the ‘disappearing star’ trick. find a star that is barely visible, as the focus ring is tweaked it will pop in and out of view. ​ depending on the model the focus ring on kit lenses can slip slightly out of position while shooting, a piece of micropore tape or a blob of astronomical blu-tack can be used to fix it in place. framing the shot once the lens is focused you’re ready to go. the milky way is the most obvious target but familiar constellations or asterisms also make pleasing images. the winter constellation of orion the hurlers ​adding a foreground object can add interest. for this picture of the hurlers , an ancient stone circle on bodmin moor, i used light-painting to make the stones visible by flicking a torch around the scene for a few seconds. the composition is a compromise between the foreground and sky, i wanted to show both the curve of the circle and the milky way. however, this left the camera pointing towards the strongest sources of light pollution. i might have got a better result if i'd taken the image at a different time of year, when the milky way was positioned differently. i typically use high iso ten-second test exposures to frame images, it can take a few attempts to line everything up correctly. it’s important to tighten all the controls on the tripod as the action of the shutters can shake the camera and produce streaky stars if it’s not secure. for the final shot i typically reduce the iso level to 1600 or 3200 and increase the exposure time to 25 or 30 seconds. shooting from a dark site will always help but moderate levels of light pollution can be incorporated into a composition. the glow of street lighting in this image taken from hertfordshire masquerades as a sunset. hertfordshire sky post processing some simple tweaks in an image processing program to brightness, contrast, colour balance and saturation can greatly enhance an image. for high iso shots applying a de-noise filter can clean up a background considerably. i usually present or print my kit-lens images at a fairly small size to hide any defects in the image. next steps with a little imagination the kit lens has plenty more to give. for example, multiple shots can be stitched together to make a panorama or mosaic; for example microsoft ice is a free download. it is also suitable for making star-trail images, something i haven’t yet experimented with. a faster lens, such as the samyang 14mm f2.8, would yield better results due to its superior light-gathering ability. compare thi

URL analysis for caradonobservatory.co.uk


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//www.caradonobservatory.com/articles/cornish-skies-v-hertfordshire-skies
//www.caradonobservatory.com/articles/comet-41p-in-the-bowl-of-the-big-dipper#comments
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Domain name:
caradonobservatory.co.uk

Data validation:
Nominet was able to match the registrant's name and address against a 3rd party data source on 10-Dec-2012

Registrar:
123-Reg Limited t/a 123-reg [Tag = 123-REG]
URL: http://www.123-reg.co.uk

Relevant dates:
Registered on: 12-Apr-2009
Expiry date: 12-Apr-2021
Last updated: 05-Apr-2019

Registration status:
Registered until expiry date.

Name servers:
ns1.caradonobservatory.co.uk 213.175.195.117
ns2.caradonobservatory.co.uk 213.175.195.118

WHOIS lookup made at 22:17:45 28-Jul-2019

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