How does the mass of an astronaut change when she travels from earth to the moon? how does her weight change?

Answers

Answer 1
Her weight doesn't change but thats only simply because there is no gravity in space.
Answer 2

Answer:

Mass does not change

Weight redueces on the moon

Explanation:

The mass of an object never changes with respect to the astronomical body it is on. The mass of an object is the resistance it provides to a force which is applied.

A 1 kg object is an 1 kg object anywhere in the universe.

Weight is the affect of an astronomical object's gravity on it

[tex]W=mg[/tex]

where,

m = Mass of the object

g = Acceleration due to gravity

[tex]g_e[/tex]=Acceleration due to gravity on Earth = 9.81 m/s²

[tex]g_m[/tex]=Acceleration due to gravity on Moon = 1.62 m/s²

Weight on Earth

[tex]W_e=mg_e\\\Rightarrow W_e=9.81m[/tex]

Weight on Moon

[tex]W_m=mg_m\\\Rightarrow W_m=1.62m[/tex]

Dividing the equations we get

[tex]W_m=\frac{1.62}{9.81}W_e\\\Rightarrow W_m=0.165W_e[/tex]

The weight of the astronaut on the moon will be 0.165 times the weight on Earth.

So, the weight of the astronaut will be reduced on the moon


Related Questions

Does a light year measure time brightness or distance

Answers

Hello!

A light year is a unit of distance, therefore it measures distance and not time.

I hope my answer benefited you! c:
 A light-year is a unit of distance, not time.

6. How did a change in voltage affect the use of an electromagnet?

Answers

the voltage would affect how powerful the magnet is/ The more powerful it is the more you can lift with the magnet
 when voltage increases, current must also increase.

At what time of year is the intensity of solar radiation striking each of earth's hemispheres weakest?

Answers

During winter for a given hemisphere, solar radiation reaches the lowest period of its annual cycle due to the tilt of the earth on its axis. As the earth rotates around the sun, this tilt occludes a portion of the energy released by the sun as it diffuses in the atmosphere.

A fast-moving vw beetle traveling at 54 mph hit a mosquito hovering at rest above the road. which bug experienced the largest force? 1. the insect 2. the vw 3. unable to determine 4. they experienced the same magnitude of force

Answers

Answer: 4 they both experienced same magnitude of force.

Explanation:

According to Newton's 3rd law of motion,it implies that for every force exerted by an object on another object is the same magnitude directed back.

The force the VW beetle has when it hits the mosquito was the same force exerted on the mosquito on impact.

Therefore the magnitude of their forces are the same.

If a fast-moving vw beetle traveling at 54 mph hit a mosquito hovering at rest above the road , then they experienced the same magnitude of force, therefore the correct answer is option 4 .

What is Newton's second law ?

Newton's Second Law states that The resultant force acting on an object is proportional to the rate of change of momentum.

As given in the problem , if a  fast-moving vw beetle traveling at 54 mph hit a mosquito hovering at rest above the road, then we have to find  which bug experienced the largest force ,

Thus, the right response is option 4 , as both the fast-moving VW Beetle and the mosquito, which was resting above the road and traveling at 54 mph, would have suffered the same amount of force .

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How can the difference in the brightness of spectral lines be explained?

Answers

more lines = a lot of electrons returning back to ground state from same level

When dr. hewitt releases the two projectiles, which one hits the ground first?

Answers

they hit at the same time

What is a substance?

Answers

substance can be refer to as a compound or a element. and the meaning of a substance is the following >>>a particular kind of matter with uniform properties
A substance it some kind of matter (everything is matter) it is also know as a compound or an element it could be intoxicating (poisonous) or it could be original type of matter physical matter that a person is (solid) could be high quality (really important) there are many types of substances such as (compound and elements) sodium chloride, and water.


The source of the energy in UV light that can give you a sunburn is _____.
A. your skin
B. deep space
C. Earth's atmosphere
D. nuclear reactions in the Sun

Answers

A. Your skin 



Hope this helped

What is the difference between a data table and a graph?

Answers

look at the difference between tables andgraphs. Tables, with their columns and rows of information, interact primarily with our verbal system. Graphs, however, are perceived by our visual system. They give numbers shape and form.

Tables are also helpful when you have a lot of different units of measurement, which can be tough to do in a graph in an simpler to read way. In contrast, graphs interact with our visual system.

What is a graph?

A graph is a mathematical representation of a network that implies the interconnection between lines as well as points.

A graph is composed up of points with lines intersecting them. The length of the lines along with the position of the points are irrelevant. Each object in a graph is renowned to as a node.

Since they gives information quickly as well as easily, graphs and charts are also effective visual tools.

The data table is the most functional basic building block of business intelligence.

In its most basic form, it consists of a series of columns and rows that intersect in cells, plus a header row that states the names of the columns to make the table's content understandable to the end user.

Thus, this is the basic difference between the data table and a graph.

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Which properties make a metal a good material to use for electrical wires?

malleability and reactivity
conductivity and ductility
ductility and malleability
reactivity and conductivity

Answers

conductivity and ductility. The metal is a conductor because energy can pass through it with only 1 input of energy anywhere on the metal and the energy can be closed off by a different material that is mostly used in electrical wires.

So your answer is B.)Conductivity and Ductility
Ductility (so it's easy to stretch the metal and make wire with it) and conductivity (so it carries electric current with very little loss and you WANT to use it for wires).

Compare the advantages and disadvantages of buying compact fluorescent bulbs rather than filament bulbs (6 marks)

Answers

Advantages
-Fluorescent bulbs are more efficient than filament bulbs
-They are cheaper to use as they consume less electricity
-Lasts longer
-Since it consumes less electricity, less electricity needs to be produced, so less fossil fuels needs to be burnt so less harm to the environment.
Disadvantages
-More expensive to buy
-Shortened life span if turned off and on very frequently.
-Disposal a problem because of mercury vapour.

I hope this helps!
please mark brainliest❤️

if you close your eyes and feel as if you are not moving, you may be experiencing

Answers

sleep paralysis. because u cant move.
You're experiencing zero acceleration ... moving in a straight line at a constant speed.

Which change in an abiotic factor causes coral bleaching? a. increased salinity b. decreased salinity c. decreased turbidity d. increased temperature

Answers

The answer is "d. increased temperature".


At the point when corals are stressed by changes in conditions, for example, temperature, light, or supplements, they remove the symbiotic algae living in their tissues, making them turn totally white. Hotter water temperatures can result in coral bleaching. At the point when water is too warm, corals will oust the algae living in their tissues, making the coral turn totally white. This is known as coral bleaching.  

When a coral blanches, it isn't dead. Corals can endure a bleaching occasion, yet they are under more pressure and are liable to mortality.

Answer: d.increased temperature

Explanation:

The colony of coral polyp (coral reef) and algae lives in mutualistic association in oceanic waters. In this association the coral reef receives it's color and algae receives food and shelter. The increase in temperature is the abiotic factor responsible for the removal of the algal colony from the coral reef. The increase in temperature of oceanic water, causes the algal colony to swell and the algal colony get remove from the coral reef . The coral reef looks white due to the composition of calcium carbonate. This phenomena is called as coral bleaching.

By how much does the speed of a vehicle moving in a straight line change each second when it is accelerating at 2 km/h·s? At 4 km/h·s? At 10 km/h·s?

Please include ALL work, thanks! :)

Answers

acceleration (A) = change in velocity (v) / time
A = (v2-v1) / time, when A = 2:
(v2-v1) = A×time = (2km/h•s)×1s = 2 km/h

when A = 4:
(v2-v1) = A×time = (4km/h•s)×1s = 4 km/h

when A = 10:
(v2-v1) = A×time = (10km/h•s)×1s = 10 km/h

The change in speed of a vehicle moving in a straight line each second can be calculated using the formula:

change in speed = acceleration × time

acceleration is measured in km/h·stime is measured in seconds.

For an acceleration of 2 km/h·s:

change in speed = 2 km/h·s × 1 s = 2 km/h

For an acceleration of 4 km/h·s:

change in speed = 4 km/h·s × 1 s = 4 km/h

For an acceleration of 10 km/h·s:

change in speed = 10 km/h·s × 1 s = 10 km/h

________________________________________________________

A bat moving with speed of 3.25 m/s and emitting sound of 35.0 khz approaches a moth at rest on a tree trunk. (a) what frequency is heard by the moth? (b) if the speed of the bat is increased, is the frequency heard by the moth higher or lower? (c) calculate the frequency heard by the moth when the speed of the bat is 4.25 m/s

Answers

Use subscript 1 for the source (the bat), and 2 for the receiver (the moth).

Given:
v₁ = -3.25 m/s, velocity of the source (the bat moves toward the moth).
f₁ = 35.0 kHz, the frequency of the source
v₂ = 0, the velocity of the receiver (the moth)
c = 3 43 m/s, the speed of sound in air.

Let f₂ =  the frequency received by the moth
Due to Doppler shift,
[tex]f_{2} = f_{1} ( \frac{c+v_{2}}{c+v_{1}}) [/tex]

That is,
f₂ = (35.0 kHz)*(343/(343 - 3.25)
    = 35.34 kHz

When v₁ = 4.25 m/s
f₂ = (35.0 kHz)*(343/(343 - 4.25))
    = 35.44 kHz

Answers:
(a) 35.34 kHz
(b) As the speed of the bat increases, the frequency heard by the moth is higher.
(c) 35.44 kHz


Sources of natural gas include all of the following except: flyash oil wells biomass landfills

Answers

Answer: Flyash

Explanation:

Flyash is a waste produced after the combustion of the coal in a power plant. The ash is in the form of small dark flakes.

The natural gas is a fuel which is produced by the degradation and decomposition of the organic matter generated from plant and animal matter. The following are the sources of the natural gas: oils, wells, biomass and landfill as they are sources of deposited organic matter. But flyash contains very less organic content.

A child leaves her book bag on a slide. the bag, which is at the top of the slide, starts from rest and reaches the bottom in 1.47 s. the mass of the book bag is 2.45 kg, the length of the slide is 2.50 m and the angle of incline is 30.5°. (assume the +x-axis to be parallel to and down the slide. for all values, enter the magnitude only.)

Answers

From kinematic relation d = vi t + 1/2 at^2 , a = 2d/t^2 since it starts from rest . Acceleration does not depend on the mass. a = 2* 2.5 / (1.47)^2 = 2.3139 m/s^2.
Acceleration down the slide is due to the parallel component of gravity force. Friction opposes this force and acts up the inclined plane. mg sin theta - f = ma. Friction = f = (2.45 * 9.8) sin 30.5 - (2.45)(2.3139) = 6.5169 N. 
Normal force = mg cos 30.5 = (2.45*9.8)* cos 30.5 = 20.6877 N. Friction = uk N. coefficient of friction =   = friction / N = 6.5169 / 20.6877 = 0.32. 
When it reaches the bottom of the slide, vf = vi + at = 0 + ( 2.3139)(1.47) = 3.4014 m/s = velocity at the bottom

What are the formulas for Kinetic energy and Potential energy?

Answers

Answer:

E_kinetic=[tex]\frac{1}{2}[/tex]mν²

E_potential=mgh

Explanation:

m: mass of the body

ν: velocity of the body

g: gravity

h: height of the body

Answer:

[tex]\boxed{\bold { \large { \boxed {KE=\frac{1}{2} mv^2 \ , \ PE=mgh}}}}[/tex]

Explanation:

Kinetic energy formula

[tex]\displaystyle KE=\frac{1}{2} mv^2[/tex]

Potential energy formula

[tex]\displaystyle PE=mgh[/tex]

[tex]\displaystyle KE \Rightarrow \sf kinetic \ energy \ (J)[/tex]

[tex]\displaystyle PE \Rightarrow \sf potential \ energy \ (J)[/tex]

[tex]\displaystyle m \Rightarrow \sf mass \ (kg)[/tex]

[tex]\displaystyle v \Rightarrow \sf velocity \ (m/s)[/tex]

[tex]\displaystyle g \Rightarrow \sf acceleration \ of \ gravity\ (m/s^2)[/tex]

[tex]\displaystyle h \Rightarrow \sf height \ (m)[/tex]

what are the pioneer species that can break down rock during primary succession ?
A. Shrubs
B. Tress
C. Lichens
D. Grass

Answers

c is the answer! hope it helps

What is the linear velocity in miles per hour of the tip of a lawnmower blade spinning at 2600 revolutions per minute in a lawnmower that cuts a path that is 24 inches wide?

Answers

Answer: In 1 revolution the blade tip travels (22 x pi) = 69.124", divide that by 12 then multiply by 2300 = 13,248.77 ft/min. (5280/60) 88ft/min. per 1 mile. (13,248.77/88) = 150.55mph.

The linear velocity of the tip of a lawnmower blade is equal to 0.0515 miles per hour.

What is angular velocity?

Angular velocity can be described as the rate of change of angular displacement of an object and the axis about which the object is rotating. The amount of change in angular displacement at a given period of time is known as angular velocity.

Given, a lawnmower blade spinning at 2600 revolutions per minute in a lawnmower that cuts a path that is 24 inches wide.

The frequency of the blade is f = 2600 rpm

First of all convert minutes into hours,

The frequency of the blade becomes = 2600/60 = 43.3 revolutions per hour.

The angular velocity of the blade, ω = 2πf

ω = 2 ×3.14 × 43.3

ω = 272.13 rad/hr

The diameter of the circle centered at the midpoint of the blade is the width of the path.

Diameter of the circle = 24 inches

Radius of the circle, R = 24/2 =12 inches

Let's convert inches into miles:

12 inch = 12 × 1.578 e⁻⁵ mile

R = 12 inch = 0.0001893 mile

The linear velocity of the tip of a blade, v = ωR

v = 272.13 × 0.0001893

v = 0.0515 mile per hour

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An earth scientist who studies hydrosphere

Answers

oceanographer? I think that is what it is.

The force of friction on a sliding object is 10n. the applied force needed to maintain a constant velocity is:

Answers

According to Newton's third law is also 10 N but in the opposite direction

The mass of a basketball is three times greater than a softball. Compare the momentum’s of a softball and a basketball if they both are moving at the same velocity

Answers

The momentum of the basketball is three times that of the softball. Momentum equals mass times velocity. Therefore, if the basketball and softball are moving at the same velocity, and the basketball has three times the mass of the softball, the basketball has three times the momentum of the softball.

The momentum of the basketball is three times greater than the momentum of the softball, given that they both have the same velocity.

Momentum is defined as the product of an object's mass and its velocity. If the softball and the basketball are both moving at the same velocity, we can compare their momenta based on their respective masses.

The momentum of an object is given by the equation:

Momentum = mass × velocity

For softball:

Momentum_softball = m_softball × velocity

For the basketball:

Momentum_basketball = m_basketball × velocity

m_basketball = 3 × m_softball

Momentum_basketball = (3 × m_softball) × velocity

Comparing the momenta, The momentum of the basketball is three times greater than the momentum of the softball, given that they both have the same velocity.

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The movement of bones around a fixed angle without lateral displacement is called

Answers

The answer to the question being asked on what do you called when the movement of the bones around a fixed angle without lateral displacement is ROTATION. Rotation movement allows the bone to move in a single long axis without being displaced.

The measure of energy transferred between two points in an electric circuit is?

Answers

Final answer:

The measure of energy transferred in an electric circuit is electrical potential energy, measured in joules. Electric potential or voltage is the energy per unit charge, and power is the rate at which electrical energy is converted, measured in watts. Ohm's Law relates current to voltage and resistance.

Explanation:

The measure of energy transferred between two points in an electric circuit is known as the electrical potential energy, and it is typically measured in joules. The term related to the amount of energy per unit charge needed to move a charge between two points in a circuit is called electric potential or voltage (V). The rate at which electrical energy is converted in an electric circuit is known as power (P), and it is measured in watts. Furthermore, Ohm's Law states that the current (I) through a conductor, at constant temperature, is proportional to the voltage across the resistor.

For a resistor with a voltage of 5 V across it, to find the current, you can use Ohm's Law (I = V/R), where V is the voltage and R is the resistance. Assuming the resistance (R) is 10 ohms (which seems to be a typo for "a 10 ohm resistor"), the current through the resistor would be I = 5 V / 10 Ω = 0.5 A (amperes).

Which of the following are types of graphs? pictographs pie charts lettergraphs staticgraphs

Answers

pictographs and piecharts

Answer:

Pie charts

Explanation:

There are mainly four types of graphs:

1. Bar graphs- It used to represent data/numbers independent of each other.

2. Pie charts- used to show data as compared to the whole. The graph is circular and numbers represent the proportion.  

3. Line graphs- used to show trend as the numbers change over a time.

4. Cartesian graphs- used to show the dependence of numbers on one axis on the numbers represented on another axis.

A block of mass of 10kg is being pushed on a tabletop downwards by a force of 200N. There is no acceleration in the problem. Calculate the normal force being exerted on the block.

Answers

F = M*A 

200N*10KG is 2000 newtons

so 2000 newton's is the normal force that is being exerted on the block 

If the velocity of an object changes from 15 m/s during a time interval of 4s what is the acceleration of the object

Answers

The acceleration of an object is defined as change in velocity divided by change in time, that is,
Acceleration = change in velocity / change in time
In the question given above, 
Change in velocity = 15
Change in time = 4
Acceleration = 15 /4 = 3.75
Therefore, acceleration = 3.8 m/s^2.

80 foot-pounds of work is needed to move the sofa in Tyler's apartment. Which of the following statements is true?

a.) If Tyler moves the sofa himself, he will do more work than if he gets a friend to help.

b.) If Tyler and his roommate move the sofa together, they will do half the amount of work.

c.) If the sofa does not move, no work is done.

d.)All of the above.

Answers

D is the correct answer
hop it helped.

Answer:

C

Explanation:

Because getting a friend to help will not half the work, and if he does it alone it will not increase the work. Knowing A, and B are wrong, we know it can not be D for the first two options are wrong. Also proof of it being C: if an object moves no distance no work can be done. For example 80 x 0 = 0 The answer being amount of work being done.

What is the energy (in joules) of an ultraviolet photon with wavelength 150 nm what is its frequency?

Answers

We can calculate energy by using Planck's equation that is;

E =  h c / ʎ

where,

h is the Planck’s constant = 6.626 x 10⁻³⁴ m² kg / s

c is the speed of light = 3 x 10₈ m/s

ʎ is the wavelength of light = 150 nm = 150 x 10⁻⁹ m

Now pot the values in equation;

E = (6.626 x10⁻³⁴ m² kg / s) x (3 x 10⁸ m/s) / (150 x 10⁻⁹ m)

E = 1.325 x 10⁻¹⁸ J

Now by using the following equation we can calculate the frequency;

E = hf

f = E/h

f = 1.325 x 10⁻¹⁸ / 6.626 x 10⁻³⁴ 

f = 1.9997 x 10¹⁵ Hz

The energy of an ultraviolet photon with a wavelength of 150 nm is 1.33 × 10⁻¹⁸ J, and its frequency is 2 × 10¹⁵ Hz.

To determine the energy of an ultraviolet photon with a wavelength of 150 nm, we need to first find the photon’s frequency using the light equation:

c = λ × ν

c is the speed of light (3.00 × 10⁸ m/s)λ is the wavelength (150 nm or 150 × 10⁻⁹ m)ν is the frequency

Rearranging the equation to solve for frequency:

ν = c / λ

Substituting the values:

ν = (3.00 × 10⁸ m/s) / (150 × 10⁻⁹ m) = 2.00 × 10¹⁵ Hz

Next, we use Planck’s equation to find the energy of the photon:

E = h× ν

E is the energyh is Planck’s constant (6.626 × 10⁻³⁴ J·s)ν is the frequency (2 × 10¹⁵ Hz)

Substituting the values:

E = (6.626 × 10⁻³⁴ J·s) × (2.00 × 10¹⁵ Hz) = 1.33 × 10⁻¹⁸J

The energy of the ultraviolet photon with a wavelength of 150 nm is 1.33 × 10⁻¹⁸ Joules, and its frequency is 2 × 10¹⁵ Hz.

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