Telescopes and Binoculars: The Basics
Once you get a little practice reading a star map and finding your way around the sky, you’ll have many enjoyable nights of stargazing ahead of you using just your unaided eye.
For some, that’s all they’re after.
But many new stargazers are keen to get a telescope to see more.
And why not? Even a modest backyard telescope shows thousand of deep-sky objects and millions of stars… enough for a hundred lifetimes of careful observation and patient contemplation.
But many beginners rush into purchasing a big, complicated telescope and quickly become frustrated and disillusioned because they did not build enough skill and understanding to use such an instrument.
Binoculars
The easiest telescopes to use are a pair of binoculars. Binoculars are the ideal starter instrument because, compared to a full-sized telescope, they are simple and intuitive to use. You see the image right-side-up in front of you. And the large field of view of binoculars makes it easy to find what you’re looking for. Yet binoculars reveal many sights you learned about in Day One of this mini-course, including craters, mountains, and seas on the Moon, planets and their satellites, the occasional comet, countless double and variable stars, dozens of star clusters, and some of the brighter nebulae and galaxies.
All binoculars are marked with two key numbers, magnification and aperture. A pair markeed “7×50″, for example, magnifies 7 times and has objective lenses 50 mm in diameter. Bigger lenses let you see fainter objects.
Some binoculars are marked with the field of view, either in degrees or “feet at 1000 yards”. This tells you how wide a scene you’ll see. A typical pair lets you see 5 to 8 degrees, a little larger than the width of a golf ball held at arms length. In comparison, a telescope lets you see a field of view of 1 degree or less, which is like looking at the sky through a drinking straw.
For astronomy, more aperture is better. So a 10×80 pair lets you see fainter objects than a 10X50 pair. The trade-off? Bigger lenses means more weight, which makes them harder to hold for any length of time.
High power means more detail and a darker background sky. But it’s harder to keep a high-power pair of binoculars steady enough to see fine detail, since the shaking of your arms also gets magnified.
A good pair of new binoculars will cost Rs. 3000-Rs. 9000. A less expensive pair may suffer from poor optical coatings and materials. A more expensive pair gives you crisp images out to the edge of the field of view. Nice to have, but not a necessity.
A pair of 7×35 or 8×42 binoculars are give you an ideal blend of light weight, magnification, and bright images. You’ll use them for years.
Don’t be afraid to invest in a good pair of binoculars. Most amateur astronomers, even those with a large telescope and years of experience, turn to their binoculars for quick and easy viewing and for sweeping the star fields of the Milky Way.
Once you’re set up with a pair of binoculars, head back outside with your star charts to sweep the constellations. You’ll be amazed at how much more you can see. Sights like the Pleiades, the Orion Nebula, the Andromeda Galaxy, and the star fields of the Milky Way are particularly spectacular sights with binoculars.
10 Things You Should Know/Do Before You Buy A Telescope
Most beginners who buy a telescope before learning the basics of what to see in the sky (and how to see it) usually get frustrated and give up astronomy before they barely get started.
So how do you know if you’re ready for a telescope? Here’s a subjective list of 10 things you need to know and do before you take the leap into telescopic observing:
- Know the main points on the celestial sphere: the horizon, zenith, meridian, location of the north (or south) pole, and the ecliptic (you got good start on this on Day 2)
- Learn a dozen or so bright stars and major constellations (the mini-tour and maps on Day 3 got you started on this)
- Learn to find and see things through binoculars, especially the Moon, Jupiter, and bright DSO’s like the Orion Nebula, Andromeda Galaxy, and the Pleiades.
- Look through a telescope and get a feel for how much (and how little) you can see. Many beginners are surprised to see only 0.5 to 1 degree of the sky at a time… it’s a little like looking at the sky through a drinking straw. You can try a friend’s telescope, or attend a star party held by a local astronomy club. If possible, have someone help you find and see a faint object in a telescope to get an idea of what’s involved
- Learn the main types of telescopes and their pros and cons (you’ll learn more about that today…)
- Learn the main features of a telescope… what they are, what they mean (again, a little more about that today). Knowledge is power.
- Determine where you will observe, and how you will get your telescope there. No use getting a big monster scope if you have to wrestled down the stairs of an apartment building every night.
- Figure out where you will store your telescope… it needs a clean dry place that’s conveniently located to let you move the scope out to your observing site.
- Think about what want to observe? Just the moon and planets? Faint fuzzies like nebula and galaxies? Birds and mountains? A little of everything? If you just want to see the moon and bright planets once in a while, you need far less telescope than if you’re bound and determine to look at faint galaxies, for example.
- Count your pennies… and decide how much you can spend on a telescope. Don’t get a new scope that costs less than Rs. 6000-Rs. 7000. You will be disappointed with the quality. Save a little more, or stick with binoculars for now.
Selecting a Telescope
Before starting, here’s a description about one of my first telescopes.
CELESTRON 31034
76mm Dia-600mm FL
Accesories: Two eye-pieces(4 mm and 20mm FL)
One Barlow lens
Any telescope consists of two main lenses:
Objective-It is the lens that recieves the light from the source.
Eyepiece-It is the lens that is near to the eye.
A telescope is as good as the apperture(diameter) of its objective lens and not the length of the telescope, as is the popular opinion.This is because a bigger apperture collects more light and hence gives a better view.In the description above, 76mm is the diameter of the objective lens and 600mm is it’s focal length.Similarly, 4mm & 20mm are the focal lengths of eyepieces.Any one is used as per the viewing requirements.
Calculating Power(Magnification): Power is calculated by dividing the focal length of objective by that of the eyepiece used for viewing.Ex:When i use a 4mm eyepiece i get a magnification of 600/4=150. similarly, with 20mm i get 600/20=30.
Barlow lenses are also called doublers.They are used for doubling the magnifications.When i use a Barlow lens in combination with a 4mm eyepiece, i get a magnification of 3oo,ie 150×2.
Useful Magnification:Some telescope manufacturers claim that their small but powerful telescope gives a magnification of 600.Though this is possible using appropriate lens combinations, it may not be useful.Every telescope has a magnification limit(which depends on it’s apperture size) beyond which even if you increase the power there is no visible use.A rough formula for calculating useful power is to multiply the apperture diameter(in inches) with 50.Hence,my telescope’s useful power is approx. 3×50=150.So, there is no point in using my 4 mm eyepiece with a barlow lens as it would give a power of 300, way past my telescope’s limit.
If you are low on budget then a telescope with appertures of 3 to 5 inches should do just fine for an amateur observer.It is quite useful to get to know how to use a telescope. As and when you think that you have utilised your “small” telescope fully and are getting serious about observing, you can always shift to bigger apperture telescopes(which are costly, i must add).
Type of Telescopes
For amateur astronomers, there are three main telescope configurations:
- Refractorscollect light with a large lens at the top of the tube. A refractor is the type of telescope you may most recognize. While generally low maintenance, refractors are expensive compared to their aperture, or light-gathering capacity. Because lenses refract blue light more than red light, refractors also tend to show false color, especially on brighter objects like the moon and planets. But refractors also produce the highest contrast of any telescope, which makes them superb for astrophotography and visual observation of fine detail.
- Reflectors(also called Newtonian reflectors) collect light using a mirror at the rear of the main tube. For a given aperture, these are generally the least expensive telescope. The simple Dobsonian configuration of a Newtonian reflector offers especially superb value. Reflectors occasionally require adjustment of their optical alignment– especially if the scope gets bumped around. Reflectors are good all around telescopes, but they tend to be the bulkiest design, with tube lengths of 4-5 feet.
- Compound(or catadioptric) telescopes use a combination of lenses and mirrors to pack the optics into a short, light-weight tube; the two most common designs are the Schmidt-Cassegrain and Maksutov-Cassegrain. Compound scopes are also excellent all-around performers, though they tend to have larger focal ratios and smaller fields of view than Newtonian reflectors. Because they have more optics than reflectors, they are also more expensive.
Telescope Mounts
Even the finest telescope isn’t of much value if it doesn’t have a sturdy mount to point it around and damp out vibrations. Some telescopes come packaged with a mount and a tripod; smaller scopes may just have mounting rings or plates which allows them to be attached to a mount which you buy separately.
All telescope mounts are one of two types. An alt-azimuth mount lets the scope to move up-down (altitude) and left-right (azimuth). It’s quick to set up and intuitive to use. Many Newtonian reflectors come on a simple wooden platform known as a Dobsonian mount, which is a variation of the alt-az mount.
A more involved mount, designed to track the motion of the stars by turning on a single axis, is called an equatorial mount. Because only one axis needs to be moved to track celestial objects, equatorial mounts can be more easily motorized. To work properly, one axis of the mount must be aligned with the north celestial pole (or the south celestial pole, if you observe in the southern hemisphere). There are many variations of equatorial mounts; they all tend to be larger and heavier than alt-az designs.
Some telescopes come with mounts that have small motors to move them around the sky with the push of a button. Often called “Go To” telescopes, a small computer is built into a hand control. Once you’ve entered the current date, time, and location, the computer and mount can point and track thousands of celestial objects. Some “Go To”s even let you choose a guided tour of the best celestial sights, complete with a digital readout describing information about each object.
Go To telescopes are a great convenience, and help you spend more time looking at objects and less time finding them. But they are no substitute for learning your way around the sky.
Scopes To Avoid
Whatever you do, please, please don’t buy cheap department store telescopes that advertise based on magnification only. They cost a little less than the telescopes you see in the astronomy magazines, but they are invariably junk. Stay away!
Just Tell Me What Scope To Get…!
If you’re reading this web page and you just want a quick straight-up recommendation of a telescope to get a beginner… a good 8-inch Dobsonian reflector is a good bet. You’ll pay INR 50000-INR 60000 for such a scope, possibly with a computer for helping to find objects. If compactness and convenience is more important, try the compound ETX125 telescope from Meade. It goes for about INR 80,000 and collects less light than an 8-inch Dob, but it has full Go-To capability and is easy to haul around and store.
And remember …don’t rush out and get a telescope before you’re ready. Start with learning to read a star chart, and with finding your way around the sky with your unaided eye. Move to binoculars shortly after. And have a little patience before you get your telescope… it will be worth the wait.