A 55.0 kg person, having a density of
1010 kg/m3, is underwater. What is the
buoyant force acting on the person?
[?]N
Pwater = 1,000 kg/m3

Answers

Answer 1

Answer:

534.7

Explanation:

55/1010 = 0.0545m^3

1000(0.0545)(9.81) = 534.7 N (kept at 4 sig figs)


Related Questions

A geothermal power station has a power output of 300 000 W. Calculate how many kWh of energy the power station would generate in 2 days.

Answers

Answer:

The energy the power station would generate in 2 days is 14,400 kW·h

Explanation:

The given parameter for the geothermal plant are;

The power output of the geothermal plant = 300,000 W = 300 kW

The duration for which the energy produced is calculated = 2 days

Therefore, we have;

The number of seconds in 2 days = 2 days × 24 hours/day × 60 min/hr × 60 seconds/min = 172,000 seconds

The number of hours within 2 days = 2 days × 24 hours/day = 48 hours

The energy generated, E = Power × Time the power is utilized

Therefore, the energy the power station would generate in 2 days, [tex]E_{2 \ days}[/tex], is given as follows;

[tex]E_{2 \ days}[/tex] = 300 kW × 48 hours = 14,400 kW·h

Objects on Mars weigh about 38% what they do on Earth. While driving on Earth, a Mars rover moves at a speed of 30 mph. If the rover moves with the same speed on Mars, would it have more, less, or the same momentum as when on Earth

Answers

Answer:

The same momentum as when on Earth

Explanation:

From a background understanding of science, the mass of an object is constant irrespective of its location.

This implies that the rover has the same mass on the earth as on the moon.

Now, we shall determine the momentum of the rover on Earth and on the Mar.

For Earth:

Let the mass on Earth (Mₑ) = 1 kg

Velocity on Earth (Vₑ) = 30 mph = 30 × 0.447 = 13.41 m/s

Momentum on Earth (Mₒₑ) =?

Momentum = mass × velocity

Mₒₑ = Mₑ × Vₑ

Mₒₑ = 1 × 13.41

Mₒₑ = 13.41 Kgm/s

Thus the momentum of the rover on Earth is 13.41 Kgm/s

For Mar:

Mass on Mar (Mₘ) = Mass on Earth (Mₑ), since mass is constant.

Mass on Mar (Mₘ) = 1 kg

Velocity on Mar (Vₘ) = Velocity on Earth (Vₑ), since the rover move with the same velocity as described by the question.

Velocity on Mar (Vₘ) = 13.41 m/s

Momentum on Mar (Mₒₘ) =?

Momentum = mass × velocity

Mₒₘ = Mₘ × Vₘ

Mₒₘ = 1 × 13.41

Mₒₘ = 13.41 Kgm/s

Therefore, the momentum of the rover on Mar is 13.41 Kgm/s

Summary:

Momentum on Earth (Mₒₑ) = 13.41 Kgm/s

Momentum on Mar (Mₒₘ) = 13.41 Kgm/s

Thus, the rover will have the same momentum as when on earth

The momentum of the object on Mars will be the same as on Earth.

The given parameters;

speed of the object on Earth and Mars, v = 30 mph

Weight is a vector quantity because it changes when acceleration due to gravity on the object changes while mass is scalar quantity, with a constant value in all places in the universe.

The momentum of an object is calculated as;

P = mv (kgm/.s)

Since the speed and mass of the object will be the same on both planets, the momentum will also be the same.

Thus, the momentum of the object on Mars will be the same as on Earth.

Learn more here:https://brainly.com/question/20728229

An ice skater initially skating at a velocity of 3 m/s speeds up to a velocity of 5 m/s. The momentum
of the skater
A Remains the same
B Increases
C Becomes zero
D Decreases

Answers

Answer:

B. Increases

Explanation:

Momentum is given as [tex]p=mv[/tex]. Since [tex]m[/tex] is maintained, as the velocity decreases, the momentum decreases, and similarly, as the velocity increases, the momentum increases.

What is the thermal energy of an object?


the total kinetic energy of its particles


the total potential energy of its particles


its total temperature


the total kinetic and potential energies of its particles

Answers

Answer:

The total kinetic and potential energies of its particles

The thermal energy of an object is the:

D. the total kinetic and potential energies of its particles

What is thermal energy?

Thermal energy is the sum of the kinetic and potential energy of all the particles in an object.

Examples are Exothermic chemical reactions, such as oxidation, which convert the potential energy of the materials into thermal kinetic energy, thus increasing the resulting temperature.

Thus, option D is correct.

Find more information about Thermal energy here:

brainly.com/question/7541718

A 115 kg anvil is 85.0 m above the Coyote. How much gravitational
potential energy does it have?

Answers

Answer:

[tex]\boxed {\boxed {\sf 95,795 \ Joules}}[/tex]

Explanation:

Gravitational potential energy is found using the following formula.

[tex]E_p=m*g*h[/tex]

where m is the mass, g is the gravitational acceleration, and h is the height.

1. Define Variables

We know the anvil's mass is 115 kilograms and it's 85.0 meters above the coyote. Assuming this is on Earth, the acceleration due to gravity is 9.8 m/s²

[tex]m=115 \ kg \\h= 85.0 \ m \\g= 9.8 \ m.s^2[/tex]

2. Calculate Potential Energy

Substitute the values into the formula.

[tex]E_p=(115 \ kg)*(9.8 \ m/s^2)*(85.0 \ m)[/tex]

Multiply the first two numbers together.

[tex]E_p=1127 \ kg*m/s^2*(85.0 \ m)[/tex]

Multiply again.

[tex]E_p=95795 \ kg*m^2/s^2[/tex]

1 kilogram square meter per square second is equal to Joule. Therefore, our answer of 95795 kg*m²/s² is equal to 95795 J

[tex]E_p=95795 \ J[/tex]

The anvil has 95,795 Joules of gravitational potential energy.

How much work is done by a 120N force applied to a box that moves 5m?

Answers

Answer:

600J

Explanation:

w=f×s

=120×5

600J

therefore the work by a force applied to a box that moves 5m is 600J

A student claims that any object in motion must experience a force that keeps it in motion. Do you agree or disagree?Explain your reasoning.

Answers

I agree with the statement “ an object in motion must experience a force that keeps it in motion”

Answer:

i disagree because if you throw a ball in the air gravity will bring it down so only the force that moved it was needed.

Explanation:

A box of weight 200N is placed on a ground of 20m square . Find the pressure
exerted by the box.​

Answers

Answer:

10 Pascal

Explanation:

[tex]pressure =\frac{force}{area}[/tex]

[tex]pressure= \frac{200}{20}[/tex]

pressure = 10 Pa

Can anyone answer my questions that I've asked?

Answers

Answer:

76 N north-east

Explanation:

V = √(44²+62²) = 76 N

A 1.5 kg 8-Ball is traveling at 2.3 m/s to the right when it strikes and bounces off a 5.2 kg bowling ball which is at rest. After the collision, the 8-Ball moves to the left with a velocity of 1.1 m/s. What is the final velocity of the bowling ball?

_______________m/s (nearest hundredth)

Answers

Answer:

-0.34m/s

Explanation

According to the law of conservation of momentum

m1u1 +m2 u2 = (m1+m2)v

m1 and m2 are the masses

u1 and u2 are the initial velocities

v s the common velocity

Given

m1 = 1.5kg

m2 = 5.2kg

u1 = 2.3m/s

u2 = -1.1m/s (left direction)

Required

Final velocity v of the ball

Substitute into the formula

1.5(2.3)-5.2(1.1) = (1.5+5.2)v

3.46-5.72 = 6.7v

-2.26 = 6.7v

v = -2.26/6.7

v = -0.34m/s

Hence the final velocity of the bowling ball is 0.34m/s towards the left

Sound waves are:
O Longitudinal Waves
O Transverse Waves

Answers

Sound waves are Longitudinal Waves


A 70 kg astronaut throws a 5 kg ball with a velocity of 20 m/s east. What is the velocity of the astronaut?

Answers

Answer:

[tex]V_a =1.4285m/s[/tex]

Explanation:

From the question we are told that

70 kg astronaut

5 kg ball

A velocity of 20 m/s east

Generally with Law of conservation of momentum in place for a body in space

initial and final momentum must be equal

Therefore

[tex]M_b*V_b=M_a*V_a[/tex]

[tex]M_b=Mass of ball \\V_b=Ball velocity \\M_a= Mass of astronaut \\V_a= Astronaut velocity[/tex]

Mathematically solving for[tex]V_a[/tex]

[tex]V_a =\frac{5*20}{70}[/tex]

[tex]V_a =1.4285m/s[/tex]

Therefore the Astronauts velocity relative to his mass is given to be

[tex]V_a =1.4285m/s[/tex]

The velocity of the astronaut is 1.43 m/s.

From Newton's third law of motion,

To get the velocity of the astronaut, we use the formula below.

Formula:

MV = mv.................... Equation 1

Where:

M = mass of the astronautV = Velocity of the astronautm = mass of the ballv = velocity of the ball.

make V the subject of the equation

V = mv/M................. Equation 2

From the question,

Given:

m = 5 kgv = 20 m/sM = 70 kg

Substitute these values into equation 2.

V = 5(20)/70V = 1.43 m/s.

Hence, the velocity of the astronaut is 1.43 m/s.

Learn more about velocity here: https://brainly.com/question/6504879

What type of equipment do you need to play Petanque?
A broom and a stone
A metal ball and a wooden ball
Anet and a rattan ball
A rubber ball and a wooden bat​

Answers

A metal ball and a wooden ball

hope it helps

WILL MARK BRAINLIEST

How much heat is required to raise the temperature of 150 grams of water from 15
C to 20 C, give that the specific heat of water is 4.18 J/g/C?
- 7.18 J
- 125 J
- 179 J
- 3,140 J

Answers

Answer:

aww that's simple! its B can i get brainliest? i really need some points rn <3

Explanation:

Answer:

B

Explanation:

balance chemical equation NaNO3=>NaNO2+O2

Answers

what’s the question luv?

Where do coaster cars have the least amount of potential energy?

Answers

Answer:

Gravitational potential energy is greatest at the highest point of a roller coaster and least at the lowest point.

What is the change in momentum of a 50. kg
woman goes from running at 8.0 m/s to 0.0
m/s?

Answers

Answer:

400 kg-m/s

Explanation:

Given that,

Mass of the woman, m = 50 kg

Initial velocity, u = 8 m/s

Final velocity, v = 0 m/s

We need to find the change in momentum of the woman. It can be given by :

[tex]\Delta p=m(v-u)\\\\=50\times (8-0)\\\\=400\ kg-m/s[/tex]

So, the change in momentum is 400 kg-m/s.

How does friction affect energy

Answers

Answer:

Friction is a resistive force to motion. When two bodies move against each other some of the kinetic energy is converted to heat energy due to friction. This reduces the total kinetic energy in the system.

Explanation:

velocity is vector quantity but speed is scalor quantity . why ?​

Answers

speed speed scalar quantity is the rate of at which an object covers distance on the other hand velocity is a vector quantity it is direction aware.velocity is the rate at which the position changes.the average velocity is the displacement or position change Per time ratio.so velocity is a vector quantity but speed is a scalar quantity

i need help with this question, i’ll mark as Brainliest!!

Answers

Answer:

The given Device is a :

SOLENOID.

Since at the left corner, The MFL (Magnetic field lines) are entering the solenoid OR terminating at this end, This end turns out to be the SOUTH POLE.

According to the arrows, The current is always in the direction of the magnetic field. So, The current is leaving the Solenoid at the top right corner.

[tex]\rule[225]{225}{2}[/tex]

Hope this helped!

~AH1807

Answer:

The name of the device is Solenoid. Left end represents South Pole. The current ( I ) is leaving the wire coil at the top right corner.

Explanation:

Hope you understand....

Real world System of equations

Answers

WhG exactly are you asking question mark

the ... in an atom move about in the space surrounding the nucleus

what is the missing word- ...

Answers

electrons

the in an atom move about in the space surrounding the nucleus

Someone pls help mee

Answers

This claim isn’t true. This claim is trying to say that once force is being applied to Newton’s Cradle then it will forever stay in motion. However, from the excerpt we learn that this isn’t possible. As one of the balls are pushed, it is set into kinetic energy, and then that ball will hit another and send it into kinetic energy as well. However, not all of the kinetic energy is kept through this process, some of the energy is lost and converted into different forms such as sound energy. Therefore, it isn’t possible for Newton’s Cradle to stay in motion forever.

What energy transformation occurs when a coil of wire moves past a magnet? plz help :(

kinetic --> electric
electric --> kinetic
magnetic --> electric
kinetic --> potential

Answers

Answer:

kinetic energy to electrical energy.

An induced charge is when charged particles can be attracted to neutral objects.
True or false?

Answers

Answer:

the answer is true Induction charging is a method used to charge an object without actually touching the object to any other charged object.

Explanation:

Will someone please look at my other questions

Answers

Answer:

eeeeeeeeeeeeeeeeeeeeeeeeeeeee

Explanation:

What’s the meaning of Density

Answers

Answer:

d= m/v

density is mass per unit volume.

Density describes how tightly packed particles are so if something is more dense the particles are going to be packed closely together and if something is less dense they will be looser and not as tightly packed.

A football player kicks a ball with a mass of .55 kg. The average acceleration of the football was 14.9 m/s2. How much force did the kicker supply to the football?

A. 35.24 N

B. 8.2 N

C. 35.24 m/s^2

D. 8.2 m/s^2

Answers

Answer:8.2N

Explanation:I did the quiz on k12 and that’s the answer i got :)

Drag the tiles to the correct boxes to complete the pairs. Match each expression to its simplified form.

Answers

Answer:

3a^5 - (-a^5) = 3a^5 + a^5 = 4a^5

6a^7 - 2a^7 = 4a^7

-3a^5 - (-2a^5) = -3a^5 + 2a^5 = -a^5

7a^7 - 8a^7 = -a^7

Answer:

here ya go

Explanation:

The graph shows how the vertical velocity of a parachutist changes from the moment the parachutist jumps from the aircraft until landing on the ground. Using the idea of forces, explain why the parachutist reaches a terminal velocity and why opening the parachute reduces the terminal velocity.

Answers

Answer:

once the parachute is opened, the air resistance overwhelms the downward force of gravity. The net force and the acceleration on the falling skydiver is upward. ... The skydiver thus slows down. As the speed decreases, the amount of air resistance also decreases until once more the skydiver reaches a terminal velocity.

Explanation:

As the parachute is opened the air and due to the downward force of gravity the resource is upwards hence the skydiver falls slowly.

Who  is a parachutist?

A parachutist is one who uses a parachute when making a skydive. Once the parachute is opened the air offers some resistance and due to the downward force of gravity.

The net force and force of acceleration are on the skydiver and a, as a result, he falls slowly. As the speed gets decreased the amount of air resistance will also decrease.

Find out more information about the  parachutist

brainly.com/question/26067196

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