An astronaut has a mass of 80kg how much mass does he weigh in Mars

Answers

Answer 1
I think they would weigh 261.33 Newton’s.
Answer 2

Answer:

26.66kg

Explanation:

If a person has a mass of 80kg, then they will weigh 80kg x 9.8m/s^2 or 784 Newtons on the Earth. That same person would weigh 80kg x 9.8m/s^2/3 or 261.33 Newtons on Mars, which the person might think was 26.66 Kg (although he would be incorrect since his mass has not changed).


Related Questions

How is color a physical change

Answers

Answer:Physical changes involve states of matter and energy. No new substance is created during a physical change, although the matter takes a different form. The size, shape, and color of matter may change. Physical changes occur when substances are mixed but don't chemically react.

Explanation:

The density of a gas is 0.88 g/mL. What is the mass of 500.0 mL of this gas?

Answers

Answer:

The answer is 440 g

Explanation:

The mass of a substance when given the density and volume can be found by using the formula

mass = Density × volume

From the question

volume of gas = 500 mL

density = 0.88 g/mL

We have

mass = 0.88 × 500

We have the final answer as

440 g

Hope this helps you

How many grams of potassium sulfate should be weighed to prepare 100 ppm of potassium in 250mL of solution if the purity of the salt is 98.7%?

Answers

Answer:

R=0.0564g K2SO4

How many C atoms are there in a sample of C,H, that contains 6.59 x 1026 H atoms?
A. 1.98 x 1027 C atoms
B. 2.47 x 1026 C atoms
C. 4.94 x 1026 C atoms
D. 3.17 x 1024 C atoms

Answers

Answer:

bill gates

Explanation:

Unit for mass, volume and density

Answers

The mass of water is expressed in grams (g) or kilograms (kg), and the volume is measured in liters (L), cubic centimeters (cm3), or milliliters (mL). Density is calculated by the dividing the mass by the volume, so that density is measured as units of mass/volume, often g/mL.

Answer:

kg, m^3, kg/m^3

Explanation:

the SI units for these are:

mass: kilogram

volume: cubic meter

density: kilogram per cubic meter

write formulas: a) 3 nitrogen atoms, b) 2 phosphorus molecules // help please with these​

Answers

Explanation:

a)3 N

b)2 P4

hope it will help u

Which is NOT a reason why we use the scientific method?



To have something to share with other scientists


To minimize any mistakes and bias.


Because my teacher said so


To maintain good record keeping

Answers

Answer:

C. Because my teacher said so

Hope this helps :)

Answer:

Because my teacher said so

Explanation:

You good? lol

Solve for Density using D=M/V
10. A toy has a mass of 45g and Volume of 10 CM3.What is it's density?

Answers

Answer:

4.5 g/cm^3

Explanation:

use formula d=m/v

45/10

d= 4.5 g/cm^3

CALCULATE SCIENTIFIC NOTATION (Add and Subtract)

1) 9 × 103 + 2.3 × 104



2) 15 × 102 + 5.2 × 105





3) 10 × 104 + 2.8 × 106





4) 7.0 × 103 + 8.6 × 104





5) 3.0 × 104 + 14.5 × 105





6) 8 x 104 – 2.7 x 102





7) 5.0 x 103 – 8.9 x 104





8) 7.0 x 103 – 8.20 x 102

Answers

Answer:

1. 1166.2

2. 2076

3. 1336. 8

4. 733.04

5. 1834.5

6. 556.6

7. - 410.6

8. 836.4

Explanation:

1.9 x 103 =928

How can changing the shape of an object lower its overall density?

Answers

By adding more visual mass

who can do my chemistry homework for 20$?? First come

Answers

Answer:

WTH? That is WOW....-_-

Answer:

wow

Explanation:

wow

How many moles are in 1.93x1023 particles of Na3PO4?

Answers

Answer:

The answer is 0.32 moles

Explanation:

To find the number of moles given the number of entities we use the formula

[tex]n = \frac{N}{L} \\ [/tex]

where n is the number of moles

N is the number of entities

L is the Avogadro's constant which is

6.02 × 10²³ entities

From the question

N = 1.93 × 10²³ particles

We have

[tex]n = \frac{1.93 \times {10}^{23} }{6.02 \times {10}^{23 } } \\ = 0.320598006...[/tex]

We have the final answer as

0.32 moles

Hope this helps you

Answer :

No. of particles of Na₃PO₄ = 1.93×10²³

We have to find number of moles of the given compound[tex].[/tex]

Number of moles cam be found by using this formula :

[tex]\bigstar\:\boxed{\bf{\purple{n=\dfrac{N}{N_A}}}}[/tex]

n denotes number of molesN denotes number of particles[tex]\sf{N_A}[/tex]denotes avogadro's constant

We know that,

[tex]\bf{N_A}[/tex] = 6.022×10²³

Calculation :

➠ n = N/[tex]\sf{N_A}[/tex]

➠ n = (1.93×10²³)/(6.022×10²³)

n = 0.32 moles

Explore More :

n = weight / Molar massn = volume / 22.4

Hope It Helps!

Complete the Lewis Dot structure for the molecule H-C≡N and determine how many bonding and non-bonding electrons nitrogen has:

Answers

Answer:

I believe that in H-C≡N, Nitrogen has 4 bonding electrons and 2 non-bonding electrons.

(:

Explanation:

What type of energy transfer is taking place when someone plays a violin?

A. Potential energy to kinetic energy
B. Elastic energy to electromagnetic energy
C. Kinetic energy to sound energy
D. Sound energy to heat energy

Answers

Answer:

C.

Explanation:

The movement of the bow is Kinetic Energy.

Answer: C. Kinetic energy to sound energy

Explanation: The vibration of the string is kinetic energy that transforms into sound energy.

Which of the following describes a nonmetal
A:brittle shiny and solid at room temperature
B:brittle dull and low density
C:malleable shiny and able to conduct electricity
D:malleable dull and solid liquid or gas at room temperature

Answers

Answer:

b is the answer

Explanation:

non metals are not shiny, brittle, unmalleable, and are poor conductors of thermal energy and electrical current.

A nonmetal is brittle, dull, and low in density.  

Non-metals refer to the elements that produce negative ions by gaining or accepting electrons. The non-metals generally possess 4, 5, 6, or 7 electrons in their valence shell. The non-metals are those, which are devoid of all the metallic properties.  

• The non-metals in their solids-state are brittle, thus, they lack ductility and malleability exhibited by the metals.  

• The non-metals are not shiny like metals, they are dull in color.  

• The non-metals seem to possess low density, primarily as non-metals seem to prevail either in a liquid or solid-state. The non-metals lack the dense and closed packing in the lattice, which is seen in metals.  

Thus, non-metals are brittle, dull, and low in density.  

To know more about:

https://brainly.com/question/17811524

Why is Cobalt (Co) placed before Nickel (Ni) on the Periodic Table of the Elements even though it has a higher average atomic mass than nickel?



Nickel has fewer electrons.



Cobalt has a lower density.



Cobalt was discovered first.



Nickel has one more proton.

Answers

Answer: Nickel has one more proton.

Explanation:

The Periodic table orders elements based on their atomic number not by their atomic mass even though this order usually coincides with the atomic masses of the elements. Occasionally however, this is not the case as is proven by Cobalt and Nickel.

The atomic number of an element refers to the number of protons that the element has in its nucleus. Cobalt has 27 protons whilst Nickel has one more proton at 28 which is why it comes after Cobalt.

Answer:

lower density

Explanation:

What is the primary energy conversion that takes place in plants during photosynthesis? A. Electrical energy to heat energy B. Heat energy to chemical energy C. Light energy to chemical energy O D. Chemical energy to heat energy​

Answers

Answer:

Photosynthesis in plants converts solar energy into chemical energy using electrons and protons from water. ... In the energy-transduction reactions, solar energy is converted into chemical energy in the form of two energy-transporting molecules, ATP and NADPH.

Answer:

light energy to chemical energy :]

Explanation:

Aluminum metal reacts with chlorine gas to form aluminum chloride. The reaction can be represented by the following balanced chemical equation:


2 Al(s) + 3 Cl2(g) → 2 AlCl3(s).


If you were trying to react 52.9 grams of chlorine gas completely, how many grams of aluminum would you need?


_____________________ [grams of Aluminum] Do NOT enter the unit in your answer. Report your answer with 3 SFs.

Answers

Solution :-

Given to us is the Reaction of Aluminium metal with Chlorine gas . That is ,

[tex]\boxed{\red{\bf \underset{\blue{Aluminium}}{2Al(s)}+\underset{\blue{Chlorine}}{3Cl_2(g)}\longrightarrow \underset{\blue{Aluminium\: chloride}}{2AlCl_3}}}[/tex]

Now Mass of 1 mole aluminium = 27g . So mass of 2 moles of it would be 27×2 g = 54g .

Also , Mass of 1 mole of chlorine gas = 35.5 g . So mass of 2 Atoms will be 71g . And mass of 3 moles of atom will be 71 × 3g = 213g .

Now , use unitary method ;

213 g of Chlorine reacts with 54g of Aluminium.

1 g of Chlorine will react with [tex]\sf\dfrac{54g}{213g}[/tex] of Aluminium.

Hence 52.9 g of Chlorine will react with [tex]\sf \dfrac{54}{213}\times52.9g[/tex]=[tex]\bf 13.41g[/tex] of Aluminium.

What do you think makes an atom “neutral or ion”?


Plz help, i will give five stars and brainliest!

Answers

Answer: neutral

Explanation: An atom is made up of three major sub-atomic particles namely protons, electrons and neutrons. The electrons form a cloud around the nucleus and are bound to the nucleus by electromagnetic forces.

Questions and Problems 22 When water is heated, the temperature eventually reaches a constant value and forms a plateau on the graph. What does the plateau indicate? ​

Answers

Answer:

It indicates phase changes: melting then  later boiling.

Explanation:

On the heating curve of water, the plateau marks phase change transitions.The temperature remains constant during this period.The first phase change is melting of water.The second phase change is boiling of water to gas.

if you know the answer to any of these pls help out I'll give brainiest. also a lot of points​

Answers

Answer:

5. Divergent boundaries. Divergent boundaries can make underwater ocean trenches.

The appearance of the surface of a mineral when it reflects light is known as

Answers

Answer:

Explanation:

The appearance of the surface of a mineral when it reflects light is known as

Use the drop-down menus to complete each sentence.

A
is an organism that eats other organisms to gain energy; it is also called
.

A
is an organism that makes its own food; it is also called
.

A
is an organism that breaks down waste and dead organisms.

Answers

Answer:

A  consumer is an organism that eats other organisms to gain energy; it is also called  a heterotroph.

A  producer is an organism that makes its own food; it is also called  an autotroph.

A  decomposer is an organism that breaks down waste and dead organisms.

Explanation:

Green plants are examples of autotrophs that make their own food by photosynthesis - they don't rely on other organisms to provide them with energy.

In contrast, many organisms rely on other organisms as an energy source. These organisms are called consumers or heterotrophs. They consume producers and other consumers.

Decomposers such as some fungi, bacteria, and certain insects break down dead or decaying biological material and recycle the nutrients back into the soil.  

Answer:consumer a heterotroph producer an autotroph decomposer

Explanation:

How many different types of elements are there in acetone C3H6O?

Answers

Answer:

3

Explanation:

Answer:

10

Explanation:

What is the definition of the word: Property (the scientific definition A makes up matter; makes up the world around us B an object or diagram C something that can be observed about a substance D to change the position of something HEalPPPPPPpPP​

Answers

Answer:

i feel like the answer is A

What type of energy is elastic energy?
A. Kinetic energy
B. Chemical energy
C. Nuclear energy
D. Potential energy
ASAP

Answers

Answer:

D. potential energy

Explanation:

my guess its that it is potential engery! D

explanation: elastic energy comes from mechanical potential energy so my best guess is that you go to D! btw im also trying to get a brainiest, so if you can or want to please give me one :) thank you

Which is the correct order of scientists?
Group of answer choices

Bohr, Dalton, Rutherford, Thomson

Rutherford, Thomson, Dalton, Bohr

Dalton, Thomson, Rutherford, Bohr

Thomson, Dalton, Rutherford, Bohr

Answers

Dalton is 1st, he made the atomic theory.
JJ Thomson is 2nd, he made the plum pudding model of the atom.
Earnest Rutherford is 3rd, he disproved the plum pudding model with alpha particles being shot at gold.
Bohr is 4th, he also made another model after Rutherford

C is your answer. This is simple chemistry history, your teacher should have taught you this

How many moles of sucrose are dissolved in 500 ml of a 1.5 M sucrose solution?


A. 0.75 moles
B. 750 moles
C. 0.003 moles
D. 333 moles

Answers

A because it’s more moles

Which of the following excited state electron configurations of C would require the longest wavelength of light to produce?

Question 23 options:

1s22s22p13s1


1s22s22p2


1s22s22p24s1


1s22s22p13p1

Answers

Answer:

Explanation:

Well ik its not math for this but for the first one if u add

22+22+13+1 u get 58

then second one 1+22+22+2=47

1+22+22+24+1=70

1+22+22+13+1=59

U notice how that most or some are all going up to 50 except the third one

So that means its 1s22s22p24s1

The longest wavelength is required for the excited state, 1s22s22p13s1.

According to the Bohr model, an atom absorbs energy and moves from a lower energy level to a higher energy level. Also energy is emitted when an electron moves from a higher to a lower energy level.

The lowest energy state of an atom is called the ground state. The excited state is a higher energy level. The smaller the energy difference between the energy levels, the longer the wavelength required for the transition.

Hence, the longest wavelength is required for the excited state, 1s22s22p13s1.

Learn more: https://brainly.com/question/4048378

Which sample of matter can be separated into different substances by physical means

Answers

Answer:

a heterogeneous mixture

Explanation:

an example would be sand and water because it can be filtered which is a physical mean of separation.

Answer:

Heterogeneous mixtures

Explanation:

It is composed of two or more types of matter that can be present in varying amounts and can be separated by physical means. Heterogeneous mixtures vary in composition from point to point; homogeneous mixtures have the same composition from point to point.

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