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Gravitation is one of the most fundamental subjects that physics students study. In this, you study the gravitational field and force, which is the foundation for many physics theories. Gravitation is a difficult subject to comprehend since it comprises complex mathematical formulae that you must understand to answer questions correctly. Besides, you must be familiar with the different gravitational force principles and properties, as well as how to apply them to do your homework. Sometimes it feels intimidating for students. If you are one of them, you don't need to worry. TutorBin is there for you with its gravitation homework help. We have a pool of experts who can tutor you and provide you with the best academic help on this subject.


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TutorBin: No.1 Gravitation Homework Help in the USA


TopicsBenefits
The universal law of gravitationTop-notch quality
Acceleration due to gravity0% plagiarism
Kepler's laws of planetary motionOn-time delivery
Escape velocityPocket-friendly prices
Orbital velocity of a satelliteFree revisions

Topics That Our Gravitation Tutors Cover!


In this section, we will mention important topics that our gravitation tutors cover while helping you with gravitation homework.

  • The universal law of gravitation
  • Acceleration due to gravity
  • Kepler's laws of planetary motion
  • Gravitational potential energy
  • Gravitational potential
  • Escape velocity
  • Orbital velocity of a satellite
  • Geostationary satellites

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FAQs Searched By Students!

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Homework help services are your one-stop shop if you need gravitation homework solutions. But before you hire a service to help you with gravitation homework, check if it has the following aspects:

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How much does TutorBin charge for gravitation homework help?


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Can I get plagiarism-free help with gravitation homework?


Our tutors understand that plagiarism in homework is an offense. They make the following efforts to avoid plagiarism while offering help with gravitation homework:

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Does TutorBin provide gravitation tutoring for free?


We have proficient gravitation experts with years of experience in assisting students. As a result, we charge for gravitation tutoring. We do not provide free gravitation homework help as we compensate them for their time and efforts. However, you can unwind knowing that the cost is reasonable.

How long will it take to get the gravitation solutions?


We encourage you to establish a deadline, and we will make sure that you receive gravitation solutions on time. But the complexity and deadline will determine the time taken to provide gravitation answers.

Recently Asked Gravitation Questions

Expert help when you need it
  • Q1: The Earth spins on its axis once every 24 hours. The radius of the Earth is 6,370,000m. Calculate the speed of an object that is at rest on the Earth's surface at a latitude of 20°.See Answer
  • Q2:LAB #6: SIMPLE PENDULUM STUDENT LEARNING OUTCOMES • Determine g, the acceleration due to gravity, using a pendulum. • Conduct a pendulum experiment using household items. After doing the experiment as it says in the lab and calculating all the data and answering all the questions please write a lab report. All the data and the tables should be in the report. Also, all the instructions in the lab report are clear. Please take pictures for your own experiment. Informal lab: Include a series of questions listed in the lab instructions, and images detailing your experiment tables, plots, or pictures). Questions are in bold and labeled with >Q#: You should write your an- answers so they work as standalone statements. For example: if the question asks "What is the force of tension?" your answer should read "The force of tension of a string with a 500 g weight hanging from it is 4.9 N "0.1 N," not "It is 5 N." One-word answers like "No" are not acceptable. LAB 3 REQUIRED FOR THIS IS ADDED IN REFERENCE SECTION. YOU NEED TO DO THE LAB FIRTS AND THEN MAKE A LAB REPORTSee Answer
  • Q3: The graph shows how the gravitational field strength g varies with distance r from the centre of the planet of radius 2.0 ×10'm. Use the graph to write down the value of g at a height of1.4 x 10' m above the surface. What is the mass of the planet? What is the gravitational field strength on the surface of the planet?See Answer
  • Q4: The gravitational field from a planet of mass M and radius R is given by the value g at the planet's surface. If a small satellite of mass m is at a distance of 4R away from the planet's centre, the gravitational field from the planet experienced by the small satellite is given by:(1 Point)* \frac{1}{m 16} g \frac{m}{16} g \frac{16}{m} g \frac{1}{16} gSee Answer
  • Q5: (a) Choose relationship between the gravitational potential energy, Ep and the gravitational potential, V for a body of mass m placed in a gravitational field. and the mass of the Earth = 5.98 × 1024 kg. Find the radius of orbit A and of B from the centre of the Earth. RA = - RB = (c) Calculate the centripetal acceleration of a satellite in orbitSee Answer
  • Q6: 4. (1 point) The work function of sodium has a value of3.776 x 10-19 I Calculate the energy (E) required in electron volts to remove an electron from the surface of sodium. Express you answer in terms of the standard SI units for the quantity.See Answer
  • Q7: What is the gravitational field strength at a height of 2 x107m above the surface of the Earth? The radius of the Earth is 6.4 x 106 m and the value of g on the Earth's surface is 9.8 ms-2.See Answer
  • Q8: What is the angular speed of a satellite in a geostationary orbit around the Earth? *(1 Point) 1.2 \times 10^{-5} \mathrm{rad} s^{-1} 4.2 \times 10^{-3} \mathrm{rad} s^{-1} 7.3 \times 10^{-5} \mathrm{rad} s^{-1} 2.6 \times 10^{-1} \mathrm{rad} s^{-1}See Answer
  • Q9: Let's recap what we've been learned from the previous tutorials: Use the information from the video to answer these questions: 1A) What is the period of a Cepheid star used to directly determine? 1B) How do the light spectra from far away stars compare to our expected spectra? 1C) Which is true about the red shift seen in the light from far away stars?See Answer
  • Q10: An oscillator is forced to oscillate at different frequencies. The graph of amplitude A against the driving frequency f for this oscillator is shown. The damping on the oscillator is now DECREASED. Which of the following statements is/arecorrect? 1. The amplitude of the oscillations at any frequency decreases. 2. The maximum amplitude occurs at a lower frequency. 3. The peak on the graph becomes thinner. * O Statement 1 is only correct O Statement 3 is only correct O All three statements are correct. Statement 2 is only correctSee Answer
  • Q11: Two ideal gases have the same mass density and the sameabsolute pressure. One of the gases is helium (He), and its tem-perature is 166 K. The other gas is neon (Ne). towhere the molar mass of helium and neon are given byMHe = 4.0026 kg mol- and MNeth= 20.179kgmol-1 What is the temperature of the neon?See Answer
  • Q12: How have scientists determined the age of the universe? Well, the redshift data helped. If you recall from an earlier tutorial, Hubble tweaked the redshift data to communicate the recessional velocity of the stars. In other words, he calculated, based on the redshift data, how quickly the stars seem to be moving away from us. He then plotted the recessional velocities on the y axis against distance from Earth on the x axis. The slope of the line produced from this data is referred to as the Hubble Constant, and is given the symbol Hg. This number is still under dispute, but is thought to be somewhere around 70km/s/Mpc (70 kilometers per second per megaparsec). This value provides the rate of expansion of the universe. The inverse of this constant offers on estimate of the age of the universe.Calculate it for yourself - what is the approximate age of the universe? See Answer
  • Q13: The acceleration due to gravity at the north pole of Jupiteris 25 ms-2. Jupiter has a mass 1.9 x 1027 kg and radius7.1 x 107 m. (a) What is the gravitational force on a 5 kg object placed atthe north pole of Jupiter? (b) If the apparent weight of this mass placed at the equator(ie the push of the ground on this mass) is 113 N, calculate thelength of Jupiter's day. Assume Jupiter is spherical. (c) Calculate a value for G.See Answer
  • Q14: 1. (1 point) Calculate the wavelength of an electron travellingwith speed 0.28 c where 6.63 × 10–34 h= 6.63 × 10-34 Js c = 3 × 10° ms-l mẹ = 9.1 × 10¬31 kgSee Answer
  • Q15: Which of the following are two explanations scientists use to explain the redshift seen in light from far away stars? Explanation 1 Explanation 2 See Answer
  • Q16: The temperature near the surface of the earth is 291 K. Anargon atom (atomic mass = 39.948 u) has a kinetic energy equalto the average translational energy and is moving straight up. Ifthe atom does not collide with any other atoms or molecules,how high up would it go before coming to rest? Assume that the acceleration due to gravity is constant throughout the ascent.h =.See Answer
  • Q17: A planet of mass M and radius R rotates so quickly that material at its equator only just remains on its surface. What is the period of rotation of the planet? 2 \pi \sqrt{\frac{R^{3}}{G M}} 2 \pi \sqrt{\frac{G M}{R}} 2 \pi \sqrt{\frac{R}{G M}} 2 \pi \sqrt{\frac{G M}{R^{3}}}See Answer
  • Q18: Consider an object that moves at a constant speed, v, in a perfect circle, of radius r. Which one of the following statements is correct * The resultant force on the object equals zero O The rate of change of velocity is negative O The object experiences a resultant force outwards None of these statements are correctSee Answer
  • Q19: The following are quantities associated with a body performing Simple Harmonic Motion: 1. The body's velocity 2. The accelerating force acting on the body 3. The acceleration of the body. Which of these quantities areexactly in phase with each other? All of these quantities O 1 and 2 only 1 and 3 only O 2 and 3 only O None of these quantitiesSee Answer
  • Q20: t) Where \begin{array}{l} h=6.63 \times 10^{-34} \mathrm{Js} \\ m_{e}=9.1 \times 10^{-31} \mathrm{~kg} \\ e=1.6 \times 10^{-19} \mathrm{C}^{2} \\ g_{0}=8.85 \times 10^{-12} \mathrm{C}^{2} \mathrm{~N}^{-1} \mathrm{~m}^{-2} \end{array} a) Calculate the radius, r, of the Bohr orbit for an electron in-the fifth energy level of the Helium ion (He+). Express you answer in terms of the standard SI units for the quantity. If you don't get this in 2 tries, you can get a hint.See Answer
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