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Author | Ian Stewart & Jack Cohen |
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Cover artist | Bob Eggleton |
Country | United States |
Language | English |
Genre | Science fiction |
Publisher | Warner Books |
Publication date | 2000 |
Media type | |
Pages | 498 |
Followed by | Heaven |
Wheelers is a hard science fiction novel written by English mathematician Ian Stewart and reproductive biologist Jack Cohen. The book was originally released in hardcover form in the year 2000, and a more common paperback printing was begun in 2001. It has enjoyed modest commercial success and is perhaps best known for its conceptions of alien zoology and intelligence—hallmarks of Cohen's work as a consultant on exobiology for books, movies, and television.
Though this is the first time the pair has written a fictional narrative of their own, both Stewart and Cohen have worked continually with friend and fantasy author Terry Pratchett on his best-selling Discworld series.
Wheelers chronicles mankind's first contact with an alien intelligence, a meeting which takes place out of necessity when a rogue asteroid enters the Solar System and is set on a collision course with Earth by an advanced and hitherto unknown Jovian species as a way of avoiding a devastating impact to their own world.
The story opens with a feeling of anachronism, as two of the novel's central characters (Charles Dunsmoore, a career archaeologist and his volatile graduate student Prudence Odingo) work in the year 2194 to interpret and preserve artifacts found in the vicinity of the Great Sphinx, which is being disassembled to save it from the advancing waters of a clogged and flooding Nile River after the collapse of the Aswan Dam. A lover's quarrel between the two sends Prudence off in a blind rage, and leaves Dunsmoore the sole caretaker of an important discovery—a position which catapults his career and sets the tension for the novel's second half.
Professionally and personally embittered by the success of Dunsmoore, Prudence begins a life of semi-legal interplanetary exploration (referenced by the book but never fully explained) and makes a living selling cosmic oddities to the highest black market bidder. This dangerous and profitable lifestyle acquaints her with legal authorities as well as the Belters—a group of Zen Buddhists (known as The Order of the Cuckoo) who have populated and mined both Earth's Moon and the asteroid belt that lies between the terrestrial planets and the Jovian worlds of the outer Solar System. Her smuggling career culminates with the discovery of a trove of buried, wheeled, and presumably alien artefacts on Callisto. She takes these 'wheelers' to Earth intending to sell them, but a government investigation headed by Dunsmoore concludes them to be inauthentic.
As the story progresses, another main character materialises in the form of the aptly named Moses Odingo, son of Prudence's sister Charity and animal-handler extraordinaire. His life becomes one of the novel's several core plots, circumstance and apparent fate conspiring to send him on a worldwide journey of hardship and tribulation.
During this time, both Earth-bound scientists and the Belters notice that the innermost moons of Jupiter have mysteriously realigned, altering the trajectory of a once unimportant comet and setting in motion a direct collision with Earth. This is courtesy of the stuffily bureaucratic blimps—intelligent extraterrestrials living in the turbulence of Jupiter's upper atmosphere whose advanced gravity technology allows them to alter the orbital plane of the planet's moons and thereby avoid the type of cometary impact which, obliquely, precipitated their exodus from an unknown 'Firsthome' to Jupiter itself.
Left with twelve years until impact and now convinced of the wheelers' authenticity, Earth's governmental authorities speed a mission to the Jovian satellites in hopes of contacting the as yet unseen alien lifeforms. Dunsmoore is selected to lead the group, with the assumption that his experience with decrypting anthropological artefacts on earth will aid in establishing communiqué with the Jovians. The years tick by without consequence as Dunsmoore and his team search in vain for evidence of alien life on Jupiter's moons, convinced by terrestrial scientists that the planet itself is entirely inhospitable to life (he is warned of the danger of this erroneous presupposition by, appropriately enough, contemporary science-fiction authors).
As the tension on Earth grows unbearable, Prudence Odingo flies her personal craft out to give Dunsmoore's team a push in what she believes to be the correct direction. Hacking into one of the probes that Dunsmoore's been carefully bobbing around the lifeless stratosphere of Jupiter, Odingo's team sends the RCV into the lower atmosphere, immediately encountering alien lifeforms both advanced and simplistic.
Through a quirk of fate and timing, her team manages to save a blimp by the name of Bright Halfholder of the Violent Foam, part of a 'skydiving' rebel faction known as The Instrumentality. Odingo encourages Moses, now a young man, to make a harrowing high-speed journey out to the moons, hoping to use his uncanny knack for animal communication to establish a rapport with Halfholder.
The ploy works, but the Jovians—who live for millions of years and rely on an arcane and tedious system of legal councils—spend too long arguing and contemplating to successfully redirect the comet. The Instrumentality stages a successful coup, but in the end it is Dunsmoore (who has been redeemed by the threat to his home planet) who hijacks the alien gravity technology and pilots Io into a diversionary orbit around the comet itself, barely saving Earth from total annihilation—though millions die as the remnants of the comet and the sulphurous outgassing of ruined Io cascade into Earth.
The book pits the earth and its inhabitants against a universe of diplomatic but equally narcissistic alien lifeforms.
Wheelers, which begins in the year 2210, is set over a backdrop of future technologies which play a role—though not an especially defining one—in the story.
Due to The Pause (a period of time in which fears over unreliable A.I. all but halted forward progress), there is a mix of far-flung futurism and relatively mundane tech.
Blimp technology is organic in nature, and is constructed biologically using pheremones and other chemical tools.
A portion of Wheelers' fiction is based on current theories that the presence of gas giants may actually be a necessary factor in the formation of habitable terrestrial planets, as their mass deflects and breaks up potentially devastating threats. Earth-bound comets from outside the Solar System tend to either slingshot past Jupiter and launch into hyperbolic orbits that take them far from the terrestrial planets, or may lose momentum and drift peaceably into the Sun. Without the incredible gravitational presence of Jupiter, it's possible that our planet would experience so many impacts and close calls as to prevent advanced evolution or even the formation of life.
All the same, Jupiter also pulls many objects from the Kuiper belt and Oort cloud, sending them into the inner Solar System.[ citation needed ]
An asteroid is a minor planet—an object that is neither a true planet nor a comet—that orbits within the inner Solar System. They are rocky, metallic, or icy bodies with no atmosphere. The size and shape of asteroids vary significantly, ranging from small rubble piles under a kilometer across to Ceres, a dwarf planet almost 1000 km in diameter.
Comet Shoemaker–Levy 9 broke apart in July 1992 and collided with Jupiter in July 1994, providing the first direct observation of an extraterrestrial collision of Solar System objects. This generated a large amount of coverage in the popular media, and the comet was closely observed by astronomers worldwide. The collision provided new information about Jupiter and highlighted its possible role in reducing space debris in the inner Solar System.
The Solar System is the gravitationally bound system of the Sun and the objects that orbit it. It was formed 4.6 billion years ago when a dense region of a molecular cloud collapsed, forming the Sun and a protoplanetary disc. The Sun is an ordinary main sequence star that maintains a balanced equilibrium by the fusion of hydrogen into helium at its core, releasing this energy from its outer photosphere.
Jupiter is the fifth planet from the Sun and the largest in the Solar System. A gas giant, Jupiter's mass is more than two and a half times that of all the other planets in the Solar System combined and slightly less than one one-thousandth the mass of the Sun. Jupiter orbits the Sun at a distance of 5.20 AU (778.5 Gm) with an orbital period of 11.86 years. It is the third brightest natural object in the Earth's night sky after the Moon and Venus and has been observed since prehistoric times. Its name derives from Jupiter, the chief deity of ancient Roman religion.
A terrestrial planet, telluric planet, or rocky planet, is a planet that is composed primarily of silicate, rocks or metals. Within the Solar System, the terrestrial planets accepted by the IAU are the inner planets closest to the Sun: Mercury, Venus, Earth and Mars. Among astronomers who use the geophysical definition of a planet, two or three planetary-mass satellites – Earth's Moon, Io, and sometimes Europa – may also be considered terrestrial planets. The large rocky asteroids Pallas and Vesta are sometimes included as well, albeit rarely. The terms "terrestrial planet" and "telluric planet" are derived from Latin words for Earth, as these planets are, in terms of structure, Earth-like. Terrestrial planets are generally studied by geologists, astronomers, and geophysicists.
A gravity assist, gravity assist maneuver, swing-by, or generally a gravitational slingshot in orbital mechanics, is a type of spaceflight flyby which makes use of the relative movement and gravity of a planet or other astronomical object to alter the path and speed of a spacecraft, typically to save propellant and reduce expense.
The definition of the term planet has changed several times since the word was coined by the ancient Greeks. Greek astronomers employed the term ἀστέρες πλανῆται, 'wandering stars', for star-like objects which apparently moved over the sky. Over the millennia, the term has included a variety of different celestial bodies, from the Sun and the Moon to satellites and asteroids.
Planetary habitability is the measure of a planet's or a natural satellite's potential to develop and maintain environments hospitable to life. Life may be generated directly on a planet or satellite endogenously or be transferred to it from another body, through a hypothetical process known as panspermia. Environments do not need to contain life to be considered habitable nor are accepted habitable zones (HZ) the only areas in which life might arise.
Jupiter, the largest planet in the Solar System, has appeared in works of fiction across several centuries. The way the planet has been depicted has evolved as more has become known about its composition; it was initially portrayed as being entirely solid, later as having a high-pressure atmosphere with a solid surface underneath, and finally as being entirely gaseous. It was a popular setting during the pulp era of science fiction. Life on the planet has variously been depicted as identical to humans, larger versions of humans, and non-human. Non-human life on Jupiter has been portrayed as primitive in some works and more advanced than humans in others.
Asteroids have appeared in fiction since at least the late 1800s, the first one—Ceres—having been discovered in 1801. They were initially only used infrequently as writers preferred the planets as settings. The once-popular Phaëton hypothesis, which states that the asteroid belt consists of the remnants of the former fifth planet that existed in an orbit between Mars and Jupiter before somehow being destroyed, has been a recurring theme with various explanations for the planet's destruction proposed. This hypothetical former planet is in science fiction often called "Bodia" in reference to Johann Elert Bode, for whom the since-discredited Titius–Bode law that predicts the planet's existence is named.
There is evidence that the formation of the Solar System began about 4.6 billion years ago with the gravitational collapse of a small part of a giant molecular cloud. Most of the collapsing mass collected in the center, forming the Sun, while the rest flattened into a protoplanetary disk out of which the planets, moons, asteroids, and other small Solar System bodies formed.
The exploration of Jupiter has been conducted via close observations by automated spacecraft. It began with the arrival of Pioneer 10 into the Jovian system in 1973, and, as of 2023, has continued with eight further spacecraft missions in the vicinity of Jupiter. All of these missions were undertaken by the National Aeronautics and Space Administration (NASA), and all but two were flybys taking detailed observations without landing or entering orbit. These probes make Jupiter the most visited of the Solar System's outer planets as all missions to the outer Solar System have used Jupiter flybys. On 5 July 2016, spacecraft Juno arrived and entered the planet's orbit—the second craft ever to do so. Sending a craft to Jupiter is difficult, mostly due to large fuel requirements and the effects of the planet's harsh radiation environment.
Extraterrestrial liquid water is water in its liquid state that naturally occurs outside Earth. It is a subject of wide interest because it is recognized as one of the key prerequisites for life as we know it and is thus surmised to be essential for extraterrestrial life.
The poles of astronomical bodies are determined based on their axis of rotation in relation to the celestial poles of the celestial sphere. Astronomical bodies include stars, planets, dwarf planets and small Solar System bodies such as comets and minor planets, as well as natural satellites and minor-planet moons.
Discovery and exploration of the Solar System is observation, visitation, and increase in knowledge and understanding of Earth's "cosmic neighborhood". This includes the Sun, Earth and the Moon, the major planets Mercury, Venus, Mars, Jupiter, Saturn, Uranus, and Neptune, their satellites, as well as smaller bodies including comets, asteroids, and dust.
The Jupiter Icy Moons Explorer is an interplanetary spacecraft on its way to orbit and study three icy moons of Jupiter: Ganymede, Callisto, and Europa. These planetary-mass moons are planned to be studied because they are thought to have beneath their frozen surfaces significant bodies of liquid water, which would make them potentially habitable for extraterrestrial life.
The following outline is provided as an overview of and topical guide to the Solar System:
A satellite system is a set of gravitationally bound objects in orbit around a planetary mass object or minor planet, or its barycenter. Generally speaking, it is a set of natural satellites (moons), although such systems may also consist of bodies such as circumplanetary disks, ring systems, moonlets, minor-planet moons and artificial satellites any of which may themselves have satellite systems of their own. Some bodies also possess quasi-satellites that have orbits gravitationally influenced by their primary, but are generally not considered to be part of a satellite system. Satellite systems can have complex interactions including magnetic, tidal, atmospheric and orbital interactions such as orbital resonances and libration. Individually major satellite objects are designated in Roman numerals. Satellite systems are referred to either by the possessive adjectives of their primary, or less commonly by the name of their primary. Where only one satellite is known, or it is a binary with a common centre of gravity, it may be referred to using the hyphenated names of the primary and major satellite.
Tianwen-4, formerly known as Gan De, is a planned Chinese interplanetary mission to study the Jovian system, possibly sharing a launch with a spacecraft which will make a flyby of Uranus.
In modern times, numerous impact events on Jupiter have been observed, the most significant of which was the collision of Comet Shoemaker–Levy 9 in 1994. Jupiter is the most massive planet in the Solar System and thus has a vast sphere of gravitational influence, the region of space where an asteroid capture can take place under favorable conditions.