What do you do to make mesos?
basilmarket.com forums : General Maple Story  |  9 posts archived
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thread starter aznarcher904 Jul 02 2009 + PM | QUOTE | PERMALINK | REPORT
In this Thread, I want people to say and share some ideas of how they make their mesos. 1. Right now, I'm collecting toy drums from drumming bunny's in the mini dungeon and then selling them on basilmarket. I get around 1-2k drums every hour and then put them up for auction. I'm going to start collecting other quest items (mateon tentacles, zombie lupin dolls, etc.) 2. I do a crap load of quests that give good rewards. 3. I did a bunch of quests in NLC to get Crimsonwood exchange quest. I then go to windraiders to train and I collect their badges. I trade them in to Joko for prizes. So far, I made 1.5 mil, a Boww ATT scroll, and 2 silver crows (lvl 42 crossbows which sell to the npc for 130k a piece) Now share how you make your mesos..... I guess...
ImKafei 07/02/09 + PM | QUOTE | PERMALINK | REPORT
I invest. Buy low, sell high. 1 step at a time. Patience.
brownskinnedman 07/02/09 + PM | QUOTE | PERMALINK | REPORT
after being MIA from maple for 5 months i came back to find MEGAINFLATED GFAs and like 10 new quests that give GFAs so easy 20+ mill for me :D
disbemorri 07/02/09 + PM | QUOTE | PERMALINK | REPORT
u scam ur fellow maplersl for them
Jonathan5525 07/02/09 + PM | QUOTE | PERMALINK | REPORT
ImKafei said: "I invest. Buy low, sell high. 1 step at a time. Patience." I have a nice word that can sum up what you said: Merchant.
ImKafei 07/02/09 + PM | QUOTE | PERMALINK | REPORT
Jonathan5525 said: " I have a nice word that can sum up what you said: Merchant." Merchant is a noun, not a verb. Merchanting isn't a word, either, regardless of slang.
TehJub 07/02/09 + PM | QUOTE | PERMALINK | REPORT
Well what i sometimes do for an easy 150k is buy the CPQ 7 maple coin weapon and sell it to nps's for 150k It is getting 150k for leveling basically....
warriormike 07/02/09 + PM | QUOTE | PERMALINK | REPORT
napkins said: "SCIENCE PROJECT ON EINSTEIN? NO NEED TO LOOK ANY FURTHER! Albert Einstein is perhaps the most famous scientist of this century. One of his most well-known accomplishments is the formula Despite its familiarity, many people don't really understand what it means. We hope this explanation will help! One of Einstein's great insights was to realize that matter and energy are really different forms of the same thing. Matter can be turned into energy, and energy into matter. For example, consider a simple hydrogen atom, basically composed of a single proton. This subatomic particle has a mass of 0.000 000 000 000 000 000 000 000 001 672 kg This is a tiny mass indeed. But in everyday quantities of matter there are a lot of atoms! For instance, in one kilogram of pure water, the mass of hydrogen atoms amounts to just slightly more than 111 grams, or 0.111 kg. Einstein's formula tells us the amount of energy this mass would be equivalent to, if it were all suddenly turned into energy. It says that to find the energy, you multiply the mass by the square of the speed of light, this number being 300,000,000 meters per second (a very large number): = 0.111 x 300,000,000 x 300,000,000 = 10,000,000,000,000,000 Joules This is an incredible amount of energy! A Joule is not a large unit of energy ... one Joule is about the energy released when you drop a textbook to the floor. But the amount of energy in 30 grams of hydrogen atoms is equivalent to burning hundreds of thousands of gallons of gasoline! If you consider all the energy in the full kilogram of water, which also contains oxygen atoms, the total energy equivalent is close to 10 million gallons of gasoline! Can all this energy really be released? Has it ever been? The only way for ALL this energy to be released is for the kilogram of water to be totally annhilated. This process involves the complete destruction of matter, and occurs only when that matter meets an equal amount of antimatter ... a substance composed of mass with a negative charge. Antimatter does exist; it is observable as single subatomic particles in radioactive decay, and has been created in the laboratory. But it is rather short-lived (!), since it annihilates itself and an equal quantity of ordinary matter as soon as it encounters anything. For this reason, it has not yet been made in measurable quantities, so our kilogram of water can't be turned into energy by mixing it with 'antiwater'. At least, not yet. Another phenomenon peculiar to small elementary particles like protons is that they combine. A single proton forms the nucleus of a hydrogen atom. Two protons are found in the nucleus of a helium atom. This is how the elements are formed ... all the way up to the heaviest naturally occuring substance, uranium, which has 92 protons in its nucleus. It is possible to make two free protons (Hydrogen nuclei) come together to make the beginnings of a helium nucleus. This requires that the protons be hurled at each other at a
aznarcher904 07/02/09 + PM | QUOTE | PERMALINK | REPORT
ipwnmomo said: "Power hacksaw machines having a mechanical feed can usually be regulated to feed the saw downward from 0.001 to 0.025 inch per stroke, depending upon the type and size of the material to be cut. On these machines, a device to stop the feed when hard spots are encountered is usually incorporated into the design. The feed of machines having gravity feed is regulated by the weight of the saw frame and any additional weights or springs that might be connected or attached to the frame to increase or decrease the downward force of the hacksaw blade. Maximum and minimum blade pressures obtainable are determined by the manufacturer of the hacksawing machine, and are specified as relatively light or heavy. The following general rules apply for selecting proper feeds for hacksawing machines: * The feed should be very light when starting a cut and can be increased after the cut is well started. * Hard materials require a lighter feed than soft materials; reduce the feed when welds or hard spots in materials are encountered. * Wide material requires a heavier feed than narrow material because the pressure is distributed over a larger surface. * Sharp hacksaw blades will cut well with lighter feeds. Heavier feeds are necessary for cutting with dull blades. BANDSAWING The cutting speed of the bandsaw machine is the speed of the bands blade as it passes the table measured in feet per minute. The feed of the horizontal band saw machines downward pressure applied to the material being cut by the bands blade. The feed of vertical bandsawing machines is the pressure applied to the bands blade by the material being cut. Bandsawing Speeds Proper bandsaw speeds are important in conserving bands blades. Too great a speed for the material being cut will cause abnormally rapid blade wear, while too slow a speed will result in inefficient production. The chart of recommended speeds (Figure 6-17) are guidelines only. It shows the speeds for a given type of machine. The cutting speed always depends on the type of machine you are using and the manufactures' recommendations. All bandsawing machines have several cutting speeds. Since the diameter of the drive wheel of the bandsaw machine establishes a fixed ratio between the motor or transmission speed in RPM to the blade speed in FPM, it is not necessary to convert RPM into FPM as with most other machine tools. The speeds are identified in FPM on the sawing machine speed selector controls. Some machines have a speed indicator so a careful check of sawing speeds may be made when the machine is operating with or without a load. In general the following principles apply to speeds of bandsaw blades: * The harder the material, the slower the speed; conversely, the softer the material, the faster the speed. * The faster the speed, the finer the finish produced on the cut surface. This principle applies to light feeds in conjunction with fast feeds. Horizontal Bandsawing Machine Feeds Feed of horizontal bandsaw machi
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