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Escape Velocity and Earth Satellites
Master escape velocity, orbital velocity, satellite motion, time period, geostationary satellite, polar satellite, applications, numericals and PYQs.
Escape Velocity
Escape velocity is the minimum speed required for a body to escape Earth's gravitational field and reach infinity with zero speed. It is independent of the mass of the escaping body because mass cancels in the energy equation.
Launch From Earth
Energy Meaning
At surface, gravitational potential energy is -GMm/R. Escape requires kinetic energy equal to GMm/R so that total energy becomes zero at infinity.
Mass Independence
Both kinetic energy and gravitational potential energy contain m, so projectile mass cancels while deriving ve.
Orbital Velocity
Orbital velocity is the speed required for a satellite to move in a circular orbit. Gravity provides the centripetal force.
Orbit Diagram
Key Comparison
Escape speed near Earth is sqrt2 times orbital speed. This relation is frequently used in NEET and JEE ratio questions.
Exam Tip
Always use orbital radius r from Earth's centre. For height h above surface, r = R + h.
Satellite Motion
A natural satellite is a naturally orbiting body such as the Moon. An artificial satellite is launched by humans. In circular orbit, velocity is tangential and acceleration is toward Earth's centre.
Earth and Satellite
Weightlessness
A satellite has gravity acting on it. Weightlessness occurs because the satellite and astronaut are in continuous free fall, so normal reaction becomes zero.
Circular Orbit
Gravity bends the path continuously. Without tangential velocity, the body would fall; with correct speed, it keeps missing Earth.
Time Period of Satellite
The time period is the time taken to complete one revolution.
Formula Card
Time period increases as orbital radius increases. Higher satellites move slower but travel larger orbits.
Solved Example
If orbital radius becomes 4 times, how does T change?
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Height Reminder
For a satellite at height h, what is r?
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Geostationary Satellite
A geostationary satellite has time period 24 hours, moves in an equatorial orbit, and appears stationary from Earth. It is widely used for communication.
Geostationary Orbit
Use
Communication, television broadcast, weather monitoring and fixed-region services. It must orbit in the equatorial plane in the same direction as Earth's rotation.
Polar Satellite
A polar satellite passes over the poles, usually in a low altitude orbit. It is useful for Earth observation, weather imaging, mapping, defence and remote sensing.
Polar Orbit
Exam Point
Geostationary satellites stay above the equator. Polar satellites pass near both poles and scan different Earth regions as Earth rotates below them.
Energy of Satellite
For a satellite in circular orbit, kinetic energy is positive, potential energy is negative, and total energy is negative. Binding energy is the energy required to remove the satellite from orbit to infinity.
Kinetic Energy
K = GMm/2r
Potential Energy
U = -GMm/r
Total and Binding Energy
E = -GMm/2r
BE = GMm/2r
| Quantity | Sign | Meaning |
|---|---|---|
| Kinetic energy | Positive | Energy due to orbital motion. |
| Potential energy | Negative | Bound gravitational interaction. |
| Total energy | Negative | Satellite is bound to Earth. |
| Binding energy | Positive | Energy needed for escape from orbit. |
Applications
1. Communication Satellites
Concept: Relay signals over large regions.
Formula: T=24 h for geostationary orbit.
Exam Tip: Equatorial orbit is required.
2. Weather Satellites
Concept: Monitor clouds and storms.
Formula: v=sqrt(GM/r).
Exam Tip: Often polar or geostationary depending purpose.
3. GPS Satellites
Concept: Navigation using timing signals.
Formula: T=2pi sqrt(r3/GM).
Exam Tip: Not geostationary.
4. Remote Sensing
Concept: Observe Earth's surface.
Formula: r=R+h.
Exam Tip: Use orbital radius, not height.
5. Defence Satellites
Concept: Surveillance and secure communication.
Formula: v=sqrt(GM/r).
Exam Tip: Lower orbit gives shorter period.
6. Space Missions
Concept: Launch energy must exceed binding.
Formula: ve=sqrt(2GM/R).
Exam Tip: Escape speed ignores projectile mass.
7. Television Broadcasting
Concept: Fixed dishes use geostationary satellites.
Formula: T=24 h.
Exam Tip: Appears stationary.
8. Internet Satellites
Concept: Networks of satellites provide data links.
Formula: T depends on r3/2.
Exam Tip: Lower orbit reduces delay.
9. Earth Observation
Concept: Imaging land, ocean and atmosphere.
Formula: v=sqrt(GM/(R+h)).
Exam Tip: Polar orbits cover global surface.
10. Navigation
Concept: Position found from multiple satellite signals.
Formula: orbital time follows Kepler relation.
Exam Tip: Needs accurate timing.
Important Graphs
Escape Velocity vs Radius
ve decreases as 1/sqrt(r): steep fall first, then it flattens.
Orbital Velocity vs Radius
vo also decreases as 1/sqrt(r), with the same curve shape.
Time Period vs Radius
T increases as r3/2, so the graph curves upward.
Satellite Total Energy vs Radius
E = -GMm/2r is negative and approaches zero from below.
Potential Energy vs Radius
U = -GMm/r is negative and approaches zero from below.
Important Formula Table
| Concept | Formula | Meaning | Exam Tip |
|---|---|---|---|
| Escape velocity | ve=sqrt(2GM/R) | Minimum speed to escape from surface. | Independent of projectile mass. |
| Escape velocity using g | ve=sqrt(2gR) | Near Earth relation. | Use only near surface. |
| Orbital velocity | vo=sqrt(GM/r) | Circular orbit speed. | Use r from centre. |
| Relation | ve=sqrt2 vo | At same radius. | Common MCQ. |
| Time period | T=2pi sqrt(r3/GM) | One revolution time. | T proportional to r3/2. |
| Radius at height h | r=R+h | Orbital radius. | Never use h alone. |
| Satellite KE | K=GMm/2r | Positive energy. | Half magnitude of PE. |
| Satellite PE | U=-GMm/r | Negative energy. | Bound state. |
| Total energy | E=-GMm/2r | Negative total. | Bound circular orbit. |
| Binding energy | BE=GMm/2r | Energy needed to escape orbit. | Positive magnitude. |
| Geostationary height | about 35,786 km | Above Earth surface. | Equatorial, 24 h. |
| Polar satellite | Passes over poles | Earth observation. | Not stationary. |
Searching for a Physics Tutor? If Escape Velocity, Orbital Velocity, Satellites or NEET/JEE gravitation numericals are not clear, contact Kumar Sir.
Phone: +91-9958461445 | Email: kumarsirphysics@gmail.com | Website: kumarphysicsclasses.com
High-Quality Solved Numericals
CBSE Numerical
Question: Find escape speed in terms of g and R.
Show Answer
Given: g=GM/R2. Formula: ve=sqrt(2GM/R). Calculation: GM=gR2, so ve=sqrt(2gR). Final Answer: sqrt(2gR). Exam Tip: Replace GM carefully. Common Mistake: Writing sqrt(gR).
NEET Numerical
Question: If orbital speed near Earth is 7.9 km/s, escape speed is?
Show Answer
Formula: ve=sqrt2 vo. Calculation: 1.414 x 7.9 = 11.2 km/s. Final Answer: 11.2 km/s. Tip: Same radius relation. Mistake: Doubling speed.
JEE Main Numerical
Question: Radius of orbit becomes 4 times. Find new orbital velocity.
Show Answer
v is proportional to 1/sqrt(r). If r becomes 4r, v becomes v/2. Final answer: half.
JEE Advanced Numerical
Question: Energy needed for a circular satellite to escape from orbit radius r.
Show Answer
Total energy in orbit is -GMm/(2r). Escape threshold is 0. Required energy = GMm/(2r). This is binding energy.
IB Numerical
Question: If mass is 100 kg and g=10, R=6.4 x 106 m, estimate escape energy.
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IGCSE Numerical
Question: A satellite takes 24 hours and appears fixed. Name it.
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A-Level Numerical
Question: If orbital radius doubles, how does time period change?
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NEET Question Bank
Authentic years are mentioned only when known; otherwise these are NEET exam-style questions.
NEET Exam-style Question 1
Escape velocity formula from Earth surface?
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NEET Exam-style Question 2
Escape velocity using g?
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NEET Exam-style Question 3
Orbital velocity formula?
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NEET Exam-style Question 4
Near Earth orbital velocity?
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NEET Exam-style Question 5
Relation between escape and orbital velocity?
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NEET Exam-style Question 6
Escape velocity depends on projectile mass?
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NEET Exam-style Question 7
Orbital radius for height h?
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NEET Exam-style Question 8
Gravity provides what in circular orbit?
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NEET Exam-style Question 9
Time period formula?
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NEET Exam-style Question 10
Geostationary time period?
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NEET Exam-style Question 11
Geostationary orbit plane?
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NEET Exam-style Question 12
Geostationary height approximately?
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NEET Exam-style Question 13
Geostationary radius approximately?
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NEET Exam-style Question 14
Polar satellite passes over?
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NEET Exam-style Question 15
Polar satellite use?
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NEET Exam-style Question 16
Satellite kinetic energy?
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NEET Exam-style Question 17
Satellite potential energy?
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NEET Exam-style Question 18
Satellite total energy?
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NEET Exam-style Question 19
Binding energy?
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NEET Exam-style Question 20
Is satellite gravity zero?
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NEET Exam-style Question 21
Weightlessness in satellite due to?
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NEET Exam-style Question 22
If r doubles, orbital velocity becomes?
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NEET Exam-style Question 23
If r becomes 4r, orbital velocity?
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NEET Exam-style Question 24
If r doubles, escape velocity from that radius?
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NEET Exam-style Question 25
If r doubles, time period?
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NEET Exam-style Question 26
If r becomes 4r, time period?
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NEET Exam-style Question 27
Satellite PE is how many times KE?
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NEET Exam-style Question 28
Total energy in terms of KE?
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NEET Exam-style Question 29
Communication satellite commonly?
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NEET Exam-style Question 30
Weather satellite may be?
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NEET Exam-style Question 31
Satellite velocity direction?
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NEET Exam-style Question 32
Satellite acceleration direction?
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NEET Exam-style Question 33
Minimum launch speed for escape called?
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NEET Exam-style Question 34
Total energy at escape threshold?
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NEET Exam-style Question 35
If planet mass doubles, escape velocity?
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NEET Exam-style Question 36
If planet radius doubles, escape velocity?
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NEET Exam-style Question 37
If planet mass and radius double, escape velocity?
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NEET Exam-style Question 38
If planet mass and radius double, orbital velocity near surface?
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NEET Exam-style Question 39
For a low orbit, r is approximately?
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NEET Exam-style Question 40
For height h, common mistake?
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NEET Exam-style Question 41
Natural satellite of Earth?
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NEET Exam-style Question 42
Artificial satellite is?
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NEET Exam-style Question 43
Escape speed from orbit radius r?
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NEET Exam-style Question 44
Orbital speed from radius r?
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NEET Exam-style Question 45
Which satellite appears fixed?
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NEET Exam-style Question 46
Which satellite scans Earth strip by strip?
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NEET Exam-style Question 47
Satellite total energy sign?
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NEET Exam-style Question 48
Binding energy sign?
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NEET Exam-style Question 49
Does escape speed depend on atmosphere?
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NEET Exam-style Question 50
Most important radius rule?
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JEE Main Question Bank
JEE Main 1
Derive vo from force balance.
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JEE Main 2
Derive ve from energy.
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JEE Main 3
At same radius, ve/vo?
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JEE Main 4
If r=9R, vo compared to near surface?
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JEE Main 5
If r=9R, T compared to near-surface same M?
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JEE Main 6
Binding energy of circular satellite?
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JEE Main 7
Energy to shift satellite from r to 2r circular orbits?
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JEE Main 8
Geostationary angular speed?
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JEE Main 9
Can geostationary satellite be polar?
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JEE Main 10
Polar satellite time period generally?
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JEE Main 11
If orbital velocity is v, kinetic energy?
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JEE Main 12
If U=-100 J, K for circular orbit?
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JEE Main 13
If U=-100 J, total energy?
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JEE Main 14
If total energy is -80 J, binding energy?
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JEE Main 15
Escape speed from circular orbit in terms of orbital speed?
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JEE Main 16
Speed increment to escape from circular orbit?
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JEE Main 17
Time period proportionality?
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JEE Main 18
v proportionality?
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JEE Main 19
E proportionality?
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JEE Main 20
BE proportionality?
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JEE Main 21
At h=R, orbital radius?
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JEE Main 22
At h=R, orbital speed relative to surface orbit?
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JEE Main 23
At h=R, escape speed relative to surface escape?
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JEE Main 24
At h=R, time period ratio?
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JEE Main 25
If T becomes 8T, r becomes?
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JEE Main 26
If v becomes v/3, r becomes?
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JEE Main 27
If BE halves, r becomes?
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JEE Main 28
Which satellite is used for fixed TV dish?
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JEE Main 29
Which satellite for global scanning?
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JEE Main 30
Can satellite be at rest in orbit?
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JEE Main 31
Why mass cancels in orbital speed?
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JEE Main 32
Why mass cancels in escape speed?
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JEE Main 33
For same density planets, surface escape speed proportional to?
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JEE Main 34
For same density planets, surface orbital speed proportional to?
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JEE Main 35
For same M and doubled R, surface ve?
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JEE Main 36
For same R and doubled M, surface ve?
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JEE Main 37
For same R and doubled M, T at same r?
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JEE Main 38
Satellite acceleration?
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JEE Main 39
Satellite speed direction?
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JEE Main 40
Force direction?
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JEE Main 41
What happens if speed below orbital speed?
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JEE Main 42
What if speed equals escape speed?
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JEE Main 43
What if launch speed exceeds escape speed?
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JEE Main 44
Total energy for escape threshold?
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JEE Main 45
Total energy for bound circular orbit?
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JEE Main 46
GPS satellites are primarily for?
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JEE Main 47
Remote sensing satellites commonly use?
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JEE Main 48
Geostationary satellite appears fixed because?
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JEE Main 49
Satellite energy becomes less negative at larger r?
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JEE Main 50
Most common JEE radius error?
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JEE Advanced Question Bank
These focus on satellite energy, escape velocity, orbital velocity, geostationary orbit, energy and angular momentum.
JEE Advanced 1
Derive circular satellite total energy.
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JEE Advanced 2
Energy needed to escape from circular orbit.
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JEE Advanced 3
Boost speed from circular orbit to escape.
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JEE Advanced 4
Angular momentum of circular satellite?
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JEE Advanced 5
If radius quadruples, angular momentum changes?
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JEE Advanced 6
If radius quadruples, total energy?
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JEE Advanced 7
If kinetic energy is K, total energy?
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JEE Advanced 8
If potential energy is U, total energy?
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JEE Advanced 9
If total energy is E, potential energy?
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JEE Advanced 10
If total energy is E, kinetic energy?
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JEE Advanced 11
Find geostationary radius expression.
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JEE Advanced 12
Why geostationary orbit cannot be inclined?
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JEE Advanced 13
Why polar satellites cover whole Earth over time?
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JEE Advanced 14
If satellite height small compared to R, approximate orbital speed?
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JEE Advanced 15
Escape energy from surface using g?
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JEE Advanced 16
Escape velocity from surface using density rho and radius R?
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JEE Advanced 17
Same density planet radius doubled, escape speed?
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JEE Advanced 18
Same density planet radius doubled, orbital speed near surface?
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JEE Advanced 19
Satellite in circular orbit has radial velocity?
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JEE Advanced 20
Satellite acceleration is perpendicular to velocity?
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JEE Advanced 21
Work by gravity in one circular orbit?
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JEE Advanced 22
Change in kinetic energy over one circular orbit?
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JEE Advanced 23
If satellite moved to higher circular orbit, energy change sign?
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JEE Advanced 24
If satellite moved to lower circular orbit, energy change sign?
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JEE Advanced 25
At what radius is orbital velocity half surface orbital velocity?
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JEE Advanced 26
At what radius is escape speed half surface escape speed?
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JEE Advanced 27
At what radius is time period 8 times surface orbit period?
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JEE Advanced 28
If orbital radius is R+h and speed is given, find M.
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JEE Advanced 29
If T and r are known, find M.
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JEE Advanced 30
Satellite orbit gives planet mass how?
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JEE Advanced 31
What happens to total energy if speed at circular orbit is raised to escape speed?
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JEE Advanced 32
If speed exceeds escape speed, total energy?
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JEE Advanced 33
If speed below escape but above circular at same radius?
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JEE Advanced 34
Minimum energy to put mass into circular orbit from surface ignoring losses?
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JEE Advanced 35
Why real launch energy is higher?
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JEE Advanced 36
Does satellite inside orbit feel gravity?
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JEE Advanced 37
Why astronaut feels weightless?
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JEE Advanced 38
What is satellite apparent weight?
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JEE Advanced 39
Can geostationary satellite be above Delhi latitude?
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JEE Advanced 40
Polar satellite angular momentum direction changes relative to Earth?
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JEE Advanced 41
Energy graph E vs r for circular orbit shape?
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JEE Advanced 42
Potential energy graph U vs r is compared to E?
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JEE Advanced 43
Binding energy graph vs r?
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JEE Advanced 44
Ratio K:|U|:|E|?
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JEE Advanced 45
If K=200 J, U and E?
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JEE Advanced 46
If BE=300 J, E?
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JEE Advanced 47
If BE=300 J, U?
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JEE Advanced 48
For launch from radius r, escape energy?
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JEE Advanced 49
For circular orbit at radius r, escape energy?
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JEE Advanced 50
Main advanced trap?
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IB / IGCSE / A-Level Questions
25 IB Questions
- Define escape velocity.
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Minimum speed to escape gravitational field. - Formula for escape velocity?
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sqrt(2GM/R). - Define orbital velocity.
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Speed for circular orbit. - Formula for orbital velocity?
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sqrt(GM/r). - Relation between speeds?
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ve=sqrt2 vo. - Time period formula?
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2pi sqrt(r3/GM). - What is geostationary?
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24 h equatorial satellite appearing fixed. - What is polar satellite?
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Satellite passing over poles. - Satellite KE?
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GMm/(2r). - Satellite PE?
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-GMm/r. - Total energy?
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-GMm/(2r). - Binding energy?
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GMm/(2r). - Why weightless?
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Free fall. - Is gravity zero?
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No. - Use r=R+h?
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Yes for height h. - Orbit force source?
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Gravity. - Velocity direction?
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Tangent. - Acceleration direction?
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Radial inward. - Communication satellite type?
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Geostationary. - Remote sensing type?
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Polar. - Escape total energy?
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Zero at threshold. - Bound orbit energy?
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Negative. - Mass dependence of escape speed?
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Independent of projectile mass. - Graph T vs r?
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Increasing. - Graph v vs r?
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Decreasing.
25 IGCSE Questions
- What is a satellite?
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Object orbiting a planet. - Natural satellite of Earth?
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Moon. - Artificial satellite?
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Human-made satellite. - What keeps satellite in orbit?
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Gravity. - What is escape velocity?
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Speed to escape gravity. - What is orbit?
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Path around a body. - What is geostationary satellite?
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Appears fixed above Earth. - Time period?
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24 hours. - Use of geostationary?
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Communication. - Use of polar satellite?
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Earth observation. - Satellite velocity direction?
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Tangent. - Acceleration direction?
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Towards centre. - Does satellite fall?
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It is continuously falling around Earth. - Weightless means?
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No support force. - Gravity zero in satellite?
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No. - TV broadcasting satellite?
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Geostationary. - Weather satellite?
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Weather monitoring satellite. - GPS use?
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Navigation. - Orbit line in diagram should be?
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Dark black in this page. - Satellite object color here?
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Red for visibility. - Escape speed depends on mass?
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No. - Higher orbit speed is?
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Lower. - Higher orbit period is?
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Longer. - Polar passes over?
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Poles. - Common mistake?
Show Answer
Using height instead of orbital radius.
25 A-Level Questions
- Derive orbital speed.
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Equate gravity to centripetal force. - Derive escape speed.
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Use energy conservation. - Derive time period.
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T=2pi r/v and v=sqrt(GM/r). - Derive satellite energy.
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K+U=-GMm/(2r). - Binding energy?
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GMm/(2r). - Geostationary radius expression?
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(GMT2/4pi2)1/3. - Escape from orbit energy?
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GMm/(2r). - Escape from surface energy?
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GMm/R. - Angular momentum?
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m sqrt(GMr). - Speed boost to escape?
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(sqrt2-1)vo. - Why geostationary equatorial?
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To remain above same point. - Why polar useful?
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Global coverage as Earth rotates. - Energy sign in orbit?
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Negative. - Escape sign?
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Total energy zero at threshold. - r if T doubles?
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r becomes 22/3r. - r if v halves?
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4r. - r if BE halves?
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2r. - Same density escape scaling?
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Proportional to R. - Same mass radius scaling?
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v proportional to 1/sqrt(R). - Satellite force work in circular orbit?
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Zero. - Does speed change in circular orbit?
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No, direction changes. - Gravity as centripetal?
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GMm/r2=mv2/r. - Escape condition energy?
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E at least zero. - Bound orbit condition?
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E negative. - Advanced trap?
Show Answer
Mixing h and r.
Assertion Reason Questions
AR 1
Assertion: Escape velocity is independent of projectile mass. Reason: Mass cancels in energy equation.
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AR 2
Assertion: Orbital velocity is tangential. Reason: Centripetal acceleration is radial.
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AR 3
Assertion: Satellite has zero gravity. Reason: Astronauts are weightless.
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AR 4
Assertion: ve=sqrt2 vo. Reason: Escape energy is twice circular kinetic energy at same radius.
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AR 5
Assertion: Geostationary satellite has 24 h period. Reason: It matches Earth's rotation.
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AR 6
Assertion: Geostationary can be polar. Reason: Polar orbit passes over poles.
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AR 7
Assertion: Polar satellites are useful for Earth observation. Reason: Earth rotates below their orbital plane.
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AR 8
Assertion: Satellite total energy is negative. Reason: Circular satellite is bound.
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AR 9
Assertion: Binding energy is positive. Reason: It is energy required to escape.
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AR 10
Assertion: Use h in orbital speed formula. Reason: h is height above surface.
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AR 11
Assertion: Higher orbit has lower speed. Reason: v is proportional to 1/sqrt(r).
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AR 12
Assertion: Higher orbit has longer period. Reason: T is proportional to r3/2.
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AR 13
Assertion: Work by gravity in circular orbit is zero. Reason: Force is perpendicular to displacement.
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AR 14
Assertion: Satellite PE equals -2K. Reason: Circular orbit obeys virial relation here.
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AR 15
Assertion: E=-K for circular satellite. Reason: E=K+U and U=-2K.
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AR 16
Assertion: Escape energy from orbit is GMm/r. Reason: Orbit total energy is -GMm/(2r).
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AR 17
Assertion: Escape energy from surface is GMm/R. Reason: Surface potential energy is -GMm/R.
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AR 18
Assertion: ve=sqrt(2gR). Reason: GM=gR2 at surface.
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AR 19
Assertion: GPS satellites are used for navigation. Reason: They send timing signals.
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AR 20
Assertion: Red objects improve visibility here. Reason: Low-contrast objects were hard to see.
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AR 21
Assertion: Orbit lines should be black here. Reason: The design requires strong contrast.
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AR 22
Assertion: Natural satellite example is Moon. Reason: Moon orbits Earth naturally.
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AR 23
Assertion: Artificial satellites are human-made. Reason: They are launched by rockets.
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AR 24
Assertion: Communication satellites are often geostationary. Reason: Fixed ground antennas can point at them.
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AR 25
Assertion: Remote sensing uses polar satellites. Reason: They can scan Earth over time.
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AR 26
Assertion: If r increases, binding energy decreases. Reason: BE=GMm/(2r).
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AR 27
Assertion: If r increases, total energy approaches zero. Reason: E=-GMm/(2r).
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AR 28
Assertion: Satellite speed is constant in circular orbit. Reason: Gravity does no work in circular orbit.
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AR 29
Assertion: Geostationary radius is about 42,164 km. Reason: It is measured from Earth's centre.
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AR 30
Assertion: Geostationary height is about 35,786 km. Reason: Height is measured above Earth's surface.
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Case Study Questions
Satellite Launch
Passage: A rocket launches a satellite near Earth and gives it tangential velocity.
- What speed is needed for circular orbit?
- What speed is needed for escape?
- What radius is used at height h?
Show Answer
Answers: sqrt(GM/r), sqrt(2GM/r), r=R+h. Explanation: Orbital and escape formulas use centre distance.
Geostationary Satellite
Passage: A satellite appears fixed above one point on Earth and is used for communication.
- What is its period?
- What is its orbit plane?
- Approximate height?
Show Answer
Answers: 24 h, equatorial, about 35,786 km. Explanation: Same angular speed as Earth is required.
Polar Satellite
Passage: A satellite passes over the north and south poles repeatedly.
- What is it called?
- One use?
- Is it geostationary?
Show Answer
Answers: Polar satellite, Earth observation/weather/remote sensing, no.
GPS Satellite
Passage: A navigation satellite sends timing signals to receivers on Earth.
- Main application?
- Why precise time?
- Which formula governs orbit period?
Show Answer
Answers: Navigation, distance from signal timing, T=2pi sqrt(r3/GM).
Escape Velocity
Passage: A body is launched from Earth's surface with just enough speed to reach infinity.
- Total energy at threshold?
- Formula for speed?
- Does projectile mass affect speed?
Show Answer
Answers: zero, sqrt(2GM/R), no. Explanation: Mass cancels in energy equation.
Satellite Energy
Passage: A satellite of mass m moves in a circular orbit of radius r.
- Write K.
- Write U.
- Write E.
Show Answer
Answers: GMm/(2r), -GMm/r, -GMm/(2r). Explanation: Circular orbit energy is negative.
Common Student Mistakes
Confusing Escape and Orbital Velocity
Escape speed is sqrt2 times orbital speed at the same radius.
Forgetting r = R + h
All satellite formulas use orbital radius from Earth's centre.
Using Height Instead of Radius
Do not put h directly in v=sqrt(GM/r) unless h is actually measured from the centre.
Wrong Energy Signs
Potential energy and total energy are negative for circular bound orbit; binding energy is positive.
Thinking Satellite Has Zero Gravity
Gravity is present and provides centripetal acceleration. Apparent weight can be zero.
Confusing Geostationary and Polar
Geostationary is equatorial and appears fixed. Polar passes over poles and scans Earth.
Forgetting ve = sqrt2 vo
This relation is only for the same orbital radius.
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