Part5Unit2TheoryofSolarSystem
... system is a by-product of the origin of the sun. The most accepted explanation is the Nebular Hypothesis ...
... system is a by-product of the origin of the sun. The most accepted explanation is the Nebular Hypothesis ...
SOLAR SYSTEM
... • A year on Earth is exactly 365.26 days. This is the reason for a leap year every four years. Seasons are caused by the tilt of the Earth on its own axis. When the N hemisphere is tilted toward the sun it is summer for us; when the S hemisphere is tilted toward the sun it is their ...
... • A year on Earth is exactly 365.26 days. This is the reason for a leap year every four years. Seasons are caused by the tilt of the Earth on its own axis. When the N hemisphere is tilted toward the sun it is summer for us; when the S hemisphere is tilted toward the sun it is their ...
Name_______________ Period
... Working as a class determine the optimum scale factor Complete the table below using the scale factor to determine the diameter and distance for our model Using craft paper, scissors, tape, rulers, etc, create a paper model and ID card for the Sun and each planet. (2.54 cm = 1 inch 30.5 cm = 1 foot) ...
... Working as a class determine the optimum scale factor Complete the table below using the scale factor to determine the diameter and distance for our model Using craft paper, scissors, tape, rulers, etc, create a paper model and ID card for the Sun and each planet. (2.54 cm = 1 inch 30.5 cm = 1 foot) ...
The Sun and the Solar System
... constant by the total surface area of a sphere of radius 1 AU: L¤ = 4πr2C = 3.826 x 1033 erg s-‐1 • Another way to determine the luminosity is to mul)ply the surface area of the Sun b ...
... constant by the total surface area of a sphere of radius 1 AU: L¤ = 4πr2C = 3.826 x 1033 erg s-‐1 • Another way to determine the luminosity is to mul)ply the surface area of the Sun b ...
Standard 1 Information Sheet
... #1 Earth’s place in the universe (Solar System) STANDARD 1. Astronomy and planetary exploration reveal the solar system’s structure, scale, and change over time. As a basis for understanding this concept: Section A Students know how the differences and similarities among the Sun, the terrestrial pla ...
... #1 Earth’s place in the universe (Solar System) STANDARD 1. Astronomy and planetary exploration reveal the solar system’s structure, scale, and change over time. As a basis for understanding this concept: Section A Students know how the differences and similarities among the Sun, the terrestrial pla ...
SCIENCE 9
... UNIVERSAL GRAVITATION- Newton’s Law states that all objects attract all other objects, and provides an explanation for the planets’ elliptical orbits ROCKET- a tube that contains combustible material in one end and a payload in the other end and moves by the action, reaction principle PAYLOAD- the d ...
... UNIVERSAL GRAVITATION- Newton’s Law states that all objects attract all other objects, and provides an explanation for the planets’ elliptical orbits ROCKET- a tube that contains combustible material in one end and a payload in the other end and moves by the action, reaction principle PAYLOAD- the d ...
Our Solar System
... These dust particles stuck together to make clumps, then clumps stuck together to make rocks, then rocks collided to make planets. ...
... These dust particles stuck together to make clumps, then clumps stuck together to make rocks, then rocks collided to make planets. ...
Solar System Review - answer key
... Mercury, Venus, Earth, Mars, Jupiter, Saturn, Uranus, Neptune (Pluto) 5. Describe the shape of the orbit of the planets in our Solar System. The planets orbit around the sun in an elliptical, but nearly circular, pattern. 6. Why are dwarf planets and plutoids not considered planets? Planets must orb ...
... Mercury, Venus, Earth, Mars, Jupiter, Saturn, Uranus, Neptune (Pluto) 5. Describe the shape of the orbit of the planets in our Solar System. The planets orbit around the sun in an elliptical, but nearly circular, pattern. 6. Why are dwarf planets and plutoids not considered planets? Planets must orb ...
Is There Life in Space?
... NEBULA: Cloud of dust and gas where stars are born Black Hole: is a region of space from which nothing, including light, can escape. It is the result of the deformation of spacetime caused by a very compact mass. NEUTRON STAR: A neutron star is about 20 km in diameter and has the mass of about 1.4 t ...
... NEBULA: Cloud of dust and gas where stars are born Black Hole: is a region of space from which nothing, including light, can escape. It is the result of the deformation of spacetime caused by a very compact mass. NEUTRON STAR: A neutron star is about 20 km in diameter and has the mass of about 1.4 t ...
What do you know about light?
... What Else is Out There? • Asteroids: Rocks floating in space. These can range in size from 1m to hundreds of km. • Thought to be the building blocks of our solar system, many share characteristics of planets. • Some asteroids cross the path of Earth and pose a potential collision hazard. ...
... What Else is Out There? • Asteroids: Rocks floating in space. These can range in size from 1m to hundreds of km. • Thought to be the building blocks of our solar system, many share characteristics of planets. • Some asteroids cross the path of Earth and pose a potential collision hazard. ...
Solar System Study Guide 1
... Uranus, and Neptune. Four of these planets – Jupiter, Saturn, Uranus, and Neptune – are large spheres made up mostly of gases. Because of this, these planets are often called the gas giants. Jupiter is the largest planet in our solar system. The three thin rings that surround it are hard to see. ...
... Uranus, and Neptune. Four of these planets – Jupiter, Saturn, Uranus, and Neptune – are large spheres made up mostly of gases. Because of this, these planets are often called the gas giants. Jupiter is the largest planet in our solar system. The three thin rings that surround it are hard to see. ...
Short Answer Study Guide
... Telescope-used to see vast distances from earth. Space Probes-unmanned probes that travel in space and send back information to earth. Space shuttles-Take people into space to the space station. Space Station-Laboratory in space used to study space and life in space. Space Suits-protect astronauts w ...
... Telescope-used to see vast distances from earth. Space Probes-unmanned probes that travel in space and send back information to earth. Space shuttles-Take people into space to the space station. Space Station-Laboratory in space used to study space and life in space. Space Suits-protect astronauts w ...
Lets Go Into Space!
... Venus You guys remember the missions to Venus? Well there are still remaining gaps filled with data! ...
... Venus You guys remember the missions to Venus? Well there are still remaining gaps filled with data! ...
the universe notes - Cloverleaf Local Schools
... While in flight, the melted pieces solidified and made the asteroid belt (between Mars & Jupiter) Some pieces flew into other locations making up our planets. ...
... While in flight, the melted pieces solidified and made the asteroid belt (between Mars & Jupiter) Some pieces flew into other locations making up our planets. ...
knowledge quiz - Discovery Education
... in the middle where it has many stars. Where is the Milky Way brightest? A. in its middle B. on its edges C. It has the same brightness throughout. D. It’s not bright at all. 10. Galaxies are made up of billions of stars, all giving off light, but many galaxies can only be seen with powerful telesco ...
... in the middle where it has many stars. Where is the Milky Way brightest? A. in its middle B. on its edges C. It has the same brightness throughout. D. It’s not bright at all. 10. Galaxies are made up of billions of stars, all giving off light, but many galaxies can only be seen with powerful telesco ...
Lesson Power Point
... The dividing line between the inner planets and the outer planets is the asteroid belt. The asteroid belt is chunks of rock and metal that orbit around the Earth. ...
... The dividing line between the inner planets and the outer planets is the asteroid belt. The asteroid belt is chunks of rock and metal that orbit around the Earth. ...
Lecture 22: The Family of the Sun
... Landed men on the Moon Robotic landers on Moon, Venus, Mars, Titan & an asteroid Rocks returned from the Moon Probed Atmospheres of Venus, Mars, Jupiter, & Titan Flown spacecraft by all planets Extensive exploration of Mars in progress Mapped Venus & Titan with radar Flown by asteroids & comets Spac ...
... Landed men on the Moon Robotic landers on Moon, Venus, Mars, Titan & an asteroid Rocks returned from the Moon Probed Atmospheres of Venus, Mars, Jupiter, & Titan Flown spacecraft by all planets Extensive exploration of Mars in progress Mapped Venus & Titan with radar Flown by asteroids & comets Spac ...
3rd Astronomy Exam: The Solar System and the Sun 14 April 2014
... 26. Scientists are still unsure as to the origin of the Earth’s oceans. Circle the hypotheses below that are currently be investigated regarding the origin of the Earth’s oceans. (Circle all that apply) a. Comets delivered water to fill the oceans to the Earth after it had formed. b. The water came ...
... 26. Scientists are still unsure as to the origin of the Earth’s oceans. Circle the hypotheses below that are currently be investigated regarding the origin of the Earth’s oceans. (Circle all that apply) a. Comets delivered water to fill the oceans to the Earth after it had formed. b. The water came ...
The Solar System
... During the formation of the Solar System, the Jovian planets were not impacted by the high temperatures and pressure from the Sun. These planets are made up of the less dense elements that were pushed out of the inner solar system. ...
... During the formation of the Solar System, the Jovian planets were not impacted by the high temperatures and pressure from the Sun. These planets are made up of the less dense elements that were pushed out of the inner solar system. ...
Summary from last lecture
... • This 3:2 resonance “spin-orbit resonance” not due to chance! Simple relation between 2 timescales: day and year. ...
... • This 3:2 resonance “spin-orbit resonance” not due to chance! Simple relation between 2 timescales: day and year. ...
Solar System Survey
... Pluto and similar objects don’t fit either planet family Astronomers have discovered more than 200 objects like Pluto orbiting the Sun In 2006, a new family was introduced – the dwarf planets Massive enough to pull themselves spherical Orbits have not been swept clear of debris ...
... Pluto and similar objects don’t fit either planet family Astronomers have discovered more than 200 objects like Pluto orbiting the Sun In 2006, a new family was introduced – the dwarf planets Massive enough to pull themselves spherical Orbits have not been swept clear of debris ...
Sample multiple choice questions for Exam 3
... Multiple Choice: 26 questions, 3 points each. Select the best answer to each of the questions below. Place your answer on the computer answer sheet provided. 1) The approximate dimensions of the frozen nucleus of a typical comet is a) 1-2 millimeters (pinhead-sized) b) 1-20 km (city-sized) c) 300 – ...
... Multiple Choice: 26 questions, 3 points each. Select the best answer to each of the questions below. Place your answer on the computer answer sheet provided. 1) The approximate dimensions of the frozen nucleus of a typical comet is a) 1-2 millimeters (pinhead-sized) b) 1-20 km (city-sized) c) 300 – ...
pals_20160211_howpla.. - Department of Physics and Astronomy
... “Drag” from proto-planetary nebula gas? Gravitational interactions with each other? We think that Uranus & Neptune formed closer to Sun, were flung to their present orbits by interactions with Jupiter, maybe Saturn ...
... “Drag” from proto-planetary nebula gas? Gravitational interactions with each other? We think that Uranus & Neptune formed closer to Sun, were flung to their present orbits by interactions with Jupiter, maybe Saturn ...
Days and Nights
... happens because the Earth is spinning on its axis. If we look south and plot the Sun in the sky during the day, we find that it appears to move like this: ...
... happens because the Earth is spinning on its axis. If we look south and plot the Sun in the sky during the day, we find that it appears to move like this: ...
History of Solar System formation and evolution hypotheses
Ideas concerning the origin and fate of the world date from the earliest known writings; however, for almost all of that time, there was no attempt to link such theories to the existence of a ""Solar System"", simply because almost no one knew or believed that the Solar System, in the sense we now understand it, existed. The first step towards a theory of Solar System formation was the general acceptance of heliocentrism, the model which placed the Sun at the centre of the system and the Earth in orbit around it. This conception had been gestating for thousands of years, but was only widely accepted by the end of the 17th century. The first recorded use of the term ""Solar System"" dates from 1704.