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They now all come within the range of cohesion, so that when the metal cools they are held by that force in a solid mass. In what liquids is the force of cohesion greatest? Mercury, molasses, etc. Name some solids that will volatilize without melting? Arsenic, camphor. Why does cloth shrink when wet? By capillary attraction the water is drawn into the pores ot the cloth.

The fibres are thus expanded sidewise and shortened lengthwise. The cloth "fulls uIf" or thickens while it shortens and narrows shrinks in the process. IWhy do sailors at a boat-race wet the sails? The pores being full and expanded make the sails more compact. They will therefore hold the wind better. Why does not writing-ipaer blot? Because the pores are filled with size. See Chemistry, p.

Why does iainztprevent woodfrom shrinking? Because it fills the pores of the wood. Ordinarily the former is concave and the latter convex. Why can we not dry a toweltierfectly by wringing? Because of the strength of the capillary force by which the water is held in the pores of the cloth. Why will not water run through a fine sieve when the w7ires have been greased?

Because the grease repels the water and so prevents capi!. Why will camnihor dissolve in alcohol and not in water? Because there is a strong adhesion between the alcohol and camphor, and little, if any, between the water and camphor. Why will mercury rise in zinc turbes as water does zn glass tubes?

Because of the strong adhesion between zinc and mercury. Why is it so diffcult to lift a board out of water? Because of the adhesion between the board and the water. Why will ink spilled on the edge of a book extendfurther inside than f stsilled on the side of the leaves? Because the capillary pores of the paper are short, being only the thickness of a leaf, while the capillary spaces between the leaves are longer and continuous.

If you should hali ten to spill some ink on the edge of,your book, ought you lo press the leaves togfether?. Because you would make the capillary spaces between tlie leasves smaller, and so the ink would rise in them further. WZhy can you not mix oil and water? Because there is no adhesion between them. Because in the former case there is an adhesion, in the latter none. I 6 Why is a tub or fail liable to fall to pieces if noalflled with water or kefpt in the cellar?

Because the moisture dries out of the pores, and the wood shrinks so as to let the hoops fall off. NAame instances where the attraction of adhesion is stronger than that of cohesion. WXTood fastened by glue will often split before the glue will yield. Paper stuck with paste, and bricks with mortar, are also examples. When an afttle fills to thegroulrd, how izmuch doesthe earth rise to meet it?

The earth falls as much less distance than the apple, as its mass is greater. Uthat causes the sawdust in a mill-ofind to collect in large masses? The attraction of gravity which exists between all bodies, whereby they attract each other. All bodies on the earth would tend to approach each other, and the big ones would gather all the little ones around them were they as free to move as the sawdust floating on water.

Will a body weigh more in a valley than on a mountain P It will, because the attraction of the earth is greater. Will a pfound weight fall mIore slowly than a tzwo-fiound Veight? They will both fall in the same time, except the slight difference which is caused by the resistance of the air. Galileo propounded this view and proved it, in the presence of a xast crowd, by letting unequal weights fall from the leaning towez of Pisa.

Is the centre qf gravity always within a body-as, fao examiple, a ring.? It is not. In the case given it is at the centre of the circle. If two bodies, weighing respectively 2 and 4 pounds, be coznneced b't a rod 24 inches long, where is the centre of ravity? To be in equilibrium the weight of one multiplied by its distance from the centre of gravity iust equal the weight of the other mtltiplied by its distance. Therefore the centre of gravity is 8 in. In a balli of equai density throughout, where is the centre of gravity?

At the cefitre of the ball. Why does a ball roll down hill? Because the line of direction falls without the small base of the ball.

Because the base of the ball is so much smaller, and therefore the centre of gravity need not be raised to bring the line of direction without. Why is it easier to tifz over a load of hay than one of stone? Because the centre of gravity in a load of hay is very high, and in a load of stone very low. Therefore the centre of gravity in the former need not be raised much to bring the line of direction without the base, while in the latter it must be.

Why is a fyranmid the stablest of structures? Because the base is so broad and the centre of gravity so low. The centre of gravity must therefore be lifted very ligh before the line of direction will fall without the base. When a hamner is thrown, on which end does it always strike? On the heavy end or head, because that part is attracted by the earth more strongly. WIhy does a rope-walker carry a heavy balancing-oleI Because in this way he can easily shift his centre of gravity.

What would become of a ball if droApied Zilto a hoie bored through the centre qf the earth? In falling, it would gain a momentum which would carry it past the centre of the earth.

But as it is constantly coming to a part having a slower axial revolution than itself, it would scrape on the east side of the hole until it reached the centre; beyond that point it would scrape on the west side. This friction would prevent its reaching the opposite side of the earth. It would therefore vibrate to and fro, each time through a shorter distance, until, at last, it would come to rest at the centre of the earth.

Would a clock lose or gain time if carried to the top of a mountain? It would lose time, because the force of gravity would be lessened. At the North Pole it would gain time, because there the force of gravity would be increased. In the winter, would you raise or lower the pendulzumbob of your clock? I would lower it, since the cold of winter shortens the pendulum, and this movement of the bob would counteract that change.

Why is the iendulum-bob always madeflat? To decrease the friction of the air. What beats off the time in a watch? The vibration of the balance-wheel. Is solved in the book. To vibrate quarter-seconds? To vibrate hours? What is the profiortionate time of vibration of two pen. According to the 2nd. Why, when you are standing erect against a wall, and a piece of money is placed between your feet, can you not stoyV forward and ftick it upf? By leaning forward you bring the centre of gravity in front of your feet, and, as on account of the wall, you cannot throw any part of your body back to preserve the balance, you fall forward.

If a tower were i 98 feet high, with what velocity would a stonle droPifiedfromn the summnit, strike the ground? A bodyfalls in 5 seconds: with what velocity does zi rtrike the grozund? How far will a body fall in Io seconds? Witih what velocity will it strike the ground? A body is thrown iujward with a velocity of feet the,irst second, to what height will it rise? A ball is shot ufiward with a velocity of feet;, t what height will it rise?

Are any two plumb-lines parallel? Thev are not, since they point to the earth's centre of gravity. No twvo spokes of a wheel can be parallel. A stone let fallfromi a bridge strikes the water in three seconds. What is the hezght? A stonefallsfrom a church steeple in 4 seconds. What is the height? How far would a body fall the first second at a hez-ght of I2, miles above the earth's surface?

A body at the surface of the earth weizghs oo tons. A boy wishing to find the hezght of a steetle les fly an arrow thatjust reaches the toti and then falls to the ground. It is in the air 6 seconds.

Required the hezght. A cat let fall fronm a balloon reaches the ground it io seconds. Required the distance. In what time wzll a tpeznduinu 40 feet long make a vzibration? Page 14 14 A. Two mneieoric bodies in space are 12 miles apart. They weigh Ioo and lbs. If they siould fall toaether by force of their mutual attraction, what Plortion of the distance woluld be passed over by each body? The distance passed over by the two bodies is inversely as their mass; hence one moves 8 miles and the oth er 4 miles.

The weight of bodies below the surface of the earth decreases as the distance increases. What would the above body weigh if carried 2, mziles below the surface? See Physics, page 5, note. At what distance, above the sufwace of the earth will a body fall, the frst second, 21 inches? A body falls 16 ft. Hence the body must be 12, miles from the centre, or 8, miles from the surface of the earth.

How far will a bodyfall in 8 seconds? I,o24 ft. Can a rifle-ball befred thr-olgi a handkerchief sus. The wind of the ball will lift the handkerchief somewhat. A rife-ball thrown against a board standing edg6ewise will knock it down; the same bullet fired at the board vill pass through it without disturbizng its position. Why is this? The ball which is thrown has time to impart its motion to the board; the one fired has not. Why can a boy skate safely over a piece of thin ice, when, if he should pause, it would break under him directly?

In the former case there is time for the weight of his body to be communicated to the ice; in the latter, there is not. Why can a cannzon-ball be fred through a ldoor standing ajar, without moving it on its hin-ges? Because the cannon-ball is moving so quickly that its motion is not imparted to the door. Why can we drive on the head of a hammzer by sinuply strikinzg the end of the handle? This can only be done by a quick, sharp blow which will drive the wooden handle through the socket before the motion has time to overcome the inertia of the iron head.

A slow, steady blow will be imparted to the head, and so fail of the desired effect. Suzipose o'u were on a train of cars movin, at the rate of 30 milesper hour: with what force would you be thrown forward if the train were stopped instantly?

With the same velocity which the train had, oi 44 feet pet second. Your momentum would be your weight avoirdupois multiplied by this velocity. IZ what line does a stone fall from the nast-head of a vessel in motion? In a curved line, produced by the two forces-gravity and the forward motion of the vessel. In the daily revolution of the earth on its axis, from vwest to east, the top of the tower moves faster than the bottom, because it passes through a larger circle.

When, therefore, the ball falls, it retains that swifter easterly motion and so strikes east of the vertical. If is staled that a suit was once brought by the driver of a light-wagon against the owner of a coach for damcages caused by a collision.

The comn laint was that the lattfr was drivingl sofast, that wheln the two carriages struck, fte drivcr Zf the former was thrown-forerard over the dash-board. WThen the light-wagon was suddenly stopped, its driver went on by his inertia with the same speed at which the wagon was moving. That this threw him forward over the dash-board, proves his speed to have been unusual. In a vertical line to the track.

The two equal, opposite motions would exactly destroy each other. Su5ppose a steamer in ralpid motion and on its deck a man jumping. Can he jumnpi further by leapigs the w'ay the boat is moving or in the ofpiosile direction?

It will make no difference as long as he jumps on the deck. Should he jump off the boat, then the effect would be different. WHhy is a runnlintgjuniz lont er than a standing one? Because the motion gained in running is retained in the jump and adds to its distance. If a stone be dr ojpped from the mast-head of a vessel in motion, will it strike the same spot on the deck that it would if the vessel were at rest? It will. It falls with the motion of the vessel, and goes just as far forward while falling as the vessel does.

Coltd a party play ball on the deck of the Great Eastern when steaming along at the rate of 20 miles per hour, without making allowance for the motion of the ship.? They could. The ball would have the motion of the ship, and would move with it in whatever direction they might throw it. Since "action is equal to reaction," why is it not as dangerous to receive the "' kick" of a gun as the force of the bullet? The striking force is as the square of the velocity; and the velocity with which the gun moves backward is as much less than that with which the bullet moves forward, as the gun is heavier than the bullet.

For this reason a heavy gun will kick much less than a light one. If you were to jumZn from a carriage in rapid nZotion, wouldyou leap directly toward the spiot on which you wished to alzghlt? No; because as one jumps from the wagon he has its forward motion, and will go just as far ahead, while leaping, as he would if he had remained in the carriage.

He should, therefore, aim a little back of the desired alighting-place. If you wished lo shoot a bird in swift fzight, would you aim directly at it? The bird will fly forward while the bullet is going to it. One should, therefore, aim a little in advance.

At what parts of the earth is the centrifugalforce the least? The poles. They simply turn around in 24 hours. What causes the mud tojfy from the wheels of a carriage in rapid motion? The centrifugal force the inertia of the mud. What proof have we that the earth was once a soft mass? It is flattened at the poles. This effect is produced upon a ball of soft clay by simply revolving it on a wire axis. On a curve in a railroad, why is one track always higher than the other?

I4What is the pirincijple of the sling? The sling is whirled until a strong centrifugal force is generated; the string, the centripetal force, is then released, when the stone flies off at a tangent.

The mouth of the Mississzppi river is about 24 miles fulrther from the centre of the earth than its source. What causes its water to thus " run Au hill? Were the earth to stand still in its daily rotation, the Gulf of Mexico would empty its waters back through the Mississippi to the northern regions. Is it action or reaction that breaks an egg wheen I strike it against the table?

The reaction of the table. Was the man philosophical who said "it was not the falling so far but the stofiping so quick that hurt him? If oneferson runs against another, which receives the greater blow? Action is equal to reaction: hence the blows must be equal. Would it vary the effect if the two persons were running in otbtosite directions? The blow would then be the sum of both their momenta.

If they were running in the same direction? The blow would be equal to the diference of their momenta. Because a single force always produces motion in a straight line. See problem I5. How much does the shipz move to meet the boat?

The ship moves as much less distance than the boat, as it'3 heavier than the boat. Suppose a string, fastened at one end, will just sut5p5or a weight of 25 lbs. Unfasten it, and let two persons pull uipon it in opfilosite directions. The second person, in the latter case, can pull as much as the nail did in the former. Can a man standing on a pilatfor;-scale make himself Iighter by ifting uip on himself? He cannot; because action is equal to reaction, and in an opposite direction.

As much as he lifts up, so much must he press down. Why cannot a man lift himself by fiulling utp on his boot-straps? See last problem. If ifrom a gun pilaced vertically, a ball were fired into perfectly still air, where would it.

It would return into the gun. With what momentum would a steamboat weighing I,ooo tons, and moving with a velocity of I o feet per second, strike against a sunken rock? With what momentum would a train of cars weighing Ioo tons, and running Io miles per hour, strike against an 7bstacle? What would be the copfiarative striking-force of tzwc hammers, one driven with a velocity of 20feetfer second, ana the other Io feet?

Hence one will strike four times ae ht,rd a blow as the other. This principle is of great impertance in chopping wood, splitting rails, and in all cases where percussion is concerned. On trial the plan failed. In which di rection should he have turned the bellows?

In the manner adopted at first, of turning the nozzle toward the sails, the action of the wind against the sails and the reaction of the bellows against the boat just balanced each other. If the man had turned the nozzle backward he could have saved the reaction of the bellows to move the boat. This would, however, have been a most costly and bungling way of navigation. Why will the foam all collect in the hollow at the centre? Describe the rudder of a boat as a lever.

The water is the F, the boat the V, and the hand the P. As the W is between the F and the P, it is a lever of the second class. Show the change that occurs from the second to the third class of levers, when you take hold of a ladder at one end and raise it against a building.

At first the ground is the F at one end, the hand the P at the other, and the ladder the W hanging between; hence this is a lever of the second class. After a little, the F remaining the same, the P is applied at one end, near the F, and the ladder is the WV hanging, at the other; hence this is now a lever of the third class. Why is a piinch from the tongs near the hinge more severe than one near the end? Because in the former case the tongs are a lever of the first class-in the latter, of the third.

In the first class there is a gain of power, in the third a loss. Two 5ersons are carrying a weight of lbs. Whe e should it be suspended so that one will lift only 50 lbs.? One lifts 50 lbs. The proportionate length of the arms of the lever should be the same as the proportionate weights-i. In a lever of the first class, 6 feet long, where should the F be fplaced so that a P of I lb. The W must be placed 3 in. What P would be required to lift a barrel of fiork with a windlass whose axle is one foot in diameter and handle 3 ft.

P: W: rad. WHhat number of movable pzulleys would be required to;ift a W of lbs. How many lbs. What weight could be lifted with a single horseowe, 33, lbs. This block has 3 movable pulleys, and using the equation of the pulleys given in the last two problems, we have, making no allowance for friction, 33, lbs. What distance should there be between the threads oj a screzwe, that a Pof 25 lbs. F: W:: Interval: Circumference. How high could a P of 12 lbs. P: W:: height: length.

I wish to roll a barrel of flour into a wagon, the box of which is 4ft. How Ionff a plank should I get? The "evenzer" of apair of whifclrees is 3 J. For every 3 lbs. Hence one arm of the evener must be 6 in. Or, if we prefer, we may say 21 in. See Prob. In a set of three horse wshiffletrees, haing an "evene"?

For every lb. Hence one arm mast be 20 in.. The single horse should draw 3 lbs. What W can be lifted with a P of 0oo lbs. What is the object of the big balls cast on the ends of the Fandle of the screw used in cohying-firesses? By their inertia and centrifugal force they make the motion more uniform and continuous.

In a steelyard 2ft. How heavy a body can be weighed with a I lb. Describe the changefrom the Ist to the 3d class of levers, il the ditSerent ways of using a spade. When digging, the ground at the back of the spade is the F; the ground lifted is the W; and the hand at the other end is the P. When throwing dirt, the left hand at one end of the spade is the F; the dirt at the other end is the W, and the right hand between the two is the P.

As the P is between the F and the W, this is a lever of the 3d class. W Vhy are not blacksmiths' and fire tongs constructed on the same princihle P The former are of the Ist class, as power is required: the latter of the 3d class, as rapidity only is necessary.

In a lever of the 3d class, what y will a P of 50 lbs. P: W:: Wd: Pd. In a lever of the 2d class, what IV will a P of 50 lbs. In a lever of the Ist class, what Wgwill a P of 50 lt. A balance. Required the circumference of thu wheel.

P: W:: diameter of axle: diam. Required the circumference of the axle. What P would be necessary to sustain a weight o0 3, lbs. Iowr many movable pfilleys would be required to sustain I Wof lbs. Why do housekeepfers test the strength of lye, b trying whether or not an egg will float on it?

The potash dissolved in the water to form lye increases the density of the liquid. When enough has been dissolved to make its specific gravity greater than that of the egg, the egg will float. This becomes, therefore, a simple means of testing the amount of potash contained in the lye. How much water will it take to make a gallon of strong brine. A gallon. The salt does not increase the bulk of the liquid. Why can afat man swim easier than. Because muscles and bones are heavier than fat.

The specific gravity of a fat man is therefore less than that of a lean one. Why does thefiring of a cannon over the watersometimes bring to the surface the body of a drowned person. It is probable, also, that the firing of the gun produces a partial vacuum, or in some way takes off, for an instant, a part of the pressure of the air on the water.

The gases in the body would then expand and bring it to the top. The pressure of the water is less as they near the top, and so they expand. What is the pressure on a lock-gate 14 feet high and Io feet wide, when the lock is full of water f 14 x 10 x 7 x oz. Will a iail of water weigh any more with a live fish in it than without? If the pail were full before the fish was put in, then it will make no difference, since the fish will displace its own weight of water, which will run over.

If the pail is only partially filled, then, though the fish is upheld by the buoyancy of the water, since action is equal to reaction, it adds its own weight to that of the water. If the water filtering down through a rock should collect in a crevice an inch square and feet high, opening at the bottom into a closed fissure having 20 square feet of surface, what would be the total pressure tending to break the rock?

The pressure is the same on every square inch of the twenty square feet of surface. Why can stones in water be moved so mnuch more easily than on land? Because the water oaoys up about one-half of their weight. Why is it so difficult to wade in the water where there is any current? Because the buoyant force of the water makes us so light that we are easily carried away from our footing.

Why is a mill-dam or a canal embankment small at the tofp and large at the bottom? Because the pressure of the water increases with the depth.

In digging canals and building railroads, ozught not the engineer to take into consideration the curvature of the earth? If he should build on a true level he would find his embankment pointing up to the stars. Is the water at the bottom of the ocean denser than thal at the surface? The immense pressure must condense it very much at great depths. There is a certain point beyond which divers cannot penetrate. Why does the bubble of air in a spzrit-level move as the instrument is turned?

Because the air is lighter than the alcohol and rises constantly to the highest point. For this reason, also, the tube is curved upward at the centre. Why can a swimmer tread on glass and other sharp substances at the bottom of the water with ithttle harm? See problem I I. Will a vessel draw more water in salt or in fresh water!

In fresh, because its specific gravity is less. Will iron sink in mercury? It will float, like a cork on water. The water in the reservoir in New York is about 8ofeel. What is tihe pressure on a single inch of the pi]pe at the latterpoint? Why does cream rise on milk? Because it is lighter than the milk. Ifa ship founders at sea, to what dei5th will it sink? Until its specific gravity becomes equal to that of the water? There is a story told of a Chinese boy who accidentally dropped his ball into a deep hole, where he could not reach it.

He filled the hole with water, but the ball would not quite lat. Hefinally bethought himself of a lucky expedient, which was successful. Can you guess it? He put salt in the water. Which has the greater buoyantforce, oil or water? Water, because its density is greater.

What is the weight of 4 cu. How many oz. What is the specific gravity of a body whose weight ix air is 30 grs. The body is three times as heavy as water. Which is heavier, a pail of fresh water or one of salt. A pail of salt-water is as much heavier than one of freshwater as the weight of the salt added to make the brine. Not all volunteers read for LibriVox. If you would prefer not to lend your voice to LibriVox , you could lend us your ears.

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