Concept explainers
If life exists elsewhere in our solar system, it may not have developed independently from life on Earth. Instead, it’s possible that microbes from Earth may have colonized other planets or moons by hitching a ride on a rock blasted from Earth’s surface by a meteor impact. If the impact gives the rock enough energy to escape into space (while at the same time not raising its temperature so high as to “cook” the microbes), the rock may eventually reach another body in the solar system. In fact, rocks from Mars are known to have reached Earth in just this way, although none are currently known to have contained microbes. Computer modeling can be used to estimate the probability that a rock ejected from the surface of the Earth with a speed greater than the escape speed will reach another planet. These computer models indicate that under the influence of gravitational fields from the other objects in the solar system, an ejected rock can take millions of years to travel from one planet to another. During this time any life “aboard” is continually exposed to the high
The accompanying plot shows the residual speed of an ejected object—that is, the speed the object would have when infinitely far from the Earth—as a function of its speed at the surface of the Earth (its original ejection speed). By simulating the motion of rocks ejected from the Earth with a variety of speeds, researchers conclude that 0.03% of the rocks ejected such that they have a residual speed of 2.5 km/s will have reached Mars 2.0 million years later. Although this doesn’t seem like a high probability, there have been so many meteor impacts over the long history of the Earth that many ejected rocks must have reached Mars—though whether they carried microbes, and if they did, whether the microbes would have survived, are open questions.
94. •• Consider a similar plot for rocks ejected from Mars. Where would this plot intercept the x axis?
- A. The plot for Mars would intercept the x axis at 5.0 km/s.
- B. The plot for Mars would intercept the x axis at 16.2 km/s.
- C. The plot for Mars would intercept the x axis at 11.2 km/s.
- D. The plot for Mars would not intercept the x axis.
Want to see the full answer?
Check out a sample textbook solutionChapter 12 Solutions
Physics, Books a la Carte Plus Mastering Physics with Pearson eText -- Access Card Package (5th Edition)
Additional Science Textbook Solutions
Campbell Essential Biology with Physiology (5th Edition)
Microbiology: An Introduction
Campbell Biology (11th Edition)
Human Biology: Concepts and Current Issues (8th Edition)
Human Anatomy & Physiology (2nd Edition)
Concepts of Genetics (12th Edition)
- a) What is the lenght of x? b) Findθ c) Find ϕarrow_forwardA surveyor measures the distance across a straight river by the following method: Starting directly across from a tree on the opposite bank, he walks x = 97.7 m along the riverbank to establish a baseline. Then he sights across to the tree. The angle from his baseline to the tree is θ = 33.0 °. How wide is the river?arrow_forwardA small turtle moves at a speed of 697. furlong/fortnight. Find the speed of the turtle in centimeters per second. Note that 1.00 furlong = 220. yards, 1.00 yard = 3.00 feet, 1.00 foot = 12.0 inches, 1.00 inch = 2.54 cm, and 1.00 fortnight = 14.0 days.arrow_forward
- The landmass of Sokovia lifted in the air in Avengers: Age of Ultron had a volume of about 1.98 km3. What volume is that in m3?arrow_forwardA fathom is a unit of length, usually reserved for measuring the depth of water. A fathom is exactly 6.00 ft in length. Take the distance from Earth to the Moon to be 252,000 miles, and use the given approximation to find the distance in fathoms. 1 mile = 5280 ft. (Answer in sig fig.)arrow_forwardNo chatgpt pls will upvotearrow_forward
- One of the earliest video games to have a plot, Zork, measured distances in “Bloits” where 1 Bloit was defined as the distance the king’s favorite pet could run in one hour, 1,090 m. In the same game the king has a statue made that is 9.00 Bloits high. What is this in meters?arrow_forwardNo chatgpt pls will upvotearrow_forwardNo chatgpt pls will upvotearrow_forward
- Defination of voltagearrow_forwardAt point A, 3.20 m from a small source of sound that is emitting uniformly in all directions, the intensity level is 58.0 dB. What is the intensity of the sound at A? How far from the source must you go so that the intensity is one-fourth of what it was at A? How far must you go so that the sound level is one-fourth of what it was at A?arrow_forwardMake a plot of the acceleration of a ball that is thrown upward at 20 m/s subject to gravitation alone (no drag). Assume upward is the +y direction (and downward negative y).arrow_forward
- AstronomyPhysicsISBN:9781938168284Author:Andrew Fraknoi; David Morrison; Sidney C. WolffPublisher:OpenStaxFoundations of Astronomy (MindTap Course List)PhysicsISBN:9781337399920Author:Michael A. Seeds, Dana BackmanPublisher:Cengage LearningStars and Galaxies (MindTap Course List)PhysicsISBN:9781337399944Author:Michael A. SeedsPublisher:Cengage Learning
- Stars and GalaxiesPhysicsISBN:9781305120785Author:Michael A. Seeds, Dana BackmanPublisher:Cengage Learning