Criminals -- Fiction; Science fiction; Space pirates -- Fiction; Space stations -- Fiction; Weapons -- Fiction
"Obviously the normal kinds are useless. Fragmentation shells would
pelt the exterior of the ship with metallic rain--if and providing you
could get them that close. Armor-piercing would work, possibly, but
their damage would be negligible since hitting a spacecraft with a
shell is impossible if the ship is moving at anything like the usual
velocities. Detonation shells are a waste of energy, since there is no
atmosphere to expand and contract. They'd blossom like roses and do as
much damage as a tossed rose."
"No projectiles, then."
"If you could build a super-heavy fragmentation and detonation shell
and combine it with armor-piercing qualities, and could hit the
ship, you might be able to stop 'em. You'd have to pierce the ship,
and have the thing explode with a terrific blast. It would crack
the ship because of the atmosphere trapped in the hull--and should
be fast enough to exceed the compressibility of air. Also it should
happen so fast that the air leaving the hole made would not have a
chance to decrease the pressure. The detonation would crack the
ship, and the fragmentation would mess up the insides to boot, giving
two possibilities. But if both failed and the ship became airless,
they would fear no more detonation shells. Fragments would always be
dangerous, however."
"So now we must devise some sort of shell--?"
"More than that. The meteor-circuits would intercept the incoming
shell and it would never get there. What you'd need is a series of
shells--say a hundred, all emitting the meteor-alarm primary signals,
which would cause paralysis of the meteor-circuits. Then the big one,
coming in at terrific velocity."
"And speaking of velocity," said Walt Franks. "The projectile and the
rifle are out. We can get better velocity with a constant-acceleration
drive. I say torpedoes!"
"Naturally. But the aiming? Remember, even though we crank up the drive
to 50-G, it takes time to get to several thousand miles per second. The
integration of a course would be hard enough, but add to it the desire
of men to evade torpedoes--and the aiming job is impossible."
"We may be able to aim them with a device similar to the one Charley
Thomas is working with. Murdoch said his hull was made of lithium?"
"Coated with," said Channing.
"Well. Set the alloy-selectivity disk to pure lithium, and use the
output to steer the torpedo right down to the bitter end."
"Fine. Now the armor-piercing qualities."
"Can we drill?"
"Nope. At those velocities, impact would cause detonation, the combined
velocities would look like a detonation wave to the explosive. After
all, darned few explosives can stand shock waves that propagate through
them at a few thousand miles per second."
"O.K. How do we drill?"
"We might drill electrically," suggested Farrell. "Put a beam in front?"
"Not a chance," grinned Channing. "The next time we meet up with
Hellion Murdoch, he'll have absorbers ready for use. We taught him that
one, and Murdoch is not slow to learn."
Public-domain text, read in full here on John Shaqi.
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