how many millibars are equal to 27.23 inches of mercury

Answers

Answer 1

926.06 millibars are equal to 27.23 inches of mercury.

Is mercury a metal or a non-metal?

Mercury (Hg) is a metal. It is a heavy, silvery-white metal that is a liquid at room temperature. Mercury is unique among the elements because it is the only metal that is a liquid at room temperature and standard pressure.

Is mercury toxic?

Mercury is highly toxic and can cause severe health problems if ingested. Because of this, mercury is no longer widely used in everyday items, such as thermometers and batteries, and its use is being phased out in many industrial applications as well.

To convert inches of mercury to millibars, you can use the conversion factor of 1 millibar = 0.02952998751 inches of mercury.

To convert 27.23 inches of mercury to millibars, divide 27.23 by 0.02952998751:

27.23 inches of mercury / 0.02952998751 inches of mercury/millibar = 926.06 millibars.

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Related Questions

a wheel rotates 3 times. what is its angular displacement? 8) if a 30 cm radius wheel rotates through 3 radians how far has it rolled? 9) what is the angular displacement of the minute hand on a clock during a 30 minute interval. 10) three hours pass by. what is the angular displacement of the hour hand on the clock during this interval?

Answers

The hour hand's angular displacement is 360 degrees in 12 hours, or 30 degrees each hour.

What is angular displacement example?

The angle made by the body from its point of rest at any point in the rotational motion is the angular displacement. For example- If a dancer dancing around a pole does one full rotation, his or her angular rotation will be 360°. On the other hand, he or she makes half a rotation; the displacement will be 180°.

What is displacement answer?

The word displacement implies that an object has moved, or has been displaced. Displacement is defined to be the change in position of an object.

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in this situation, how far from the positive charges (a finite distance from them) is the location where the net electric field is zero? m

Answers

The location where the net electric field is zero is not a finite distance from the positive charges in this situation. The electric field due to each positive charge points radially away from the charge and the electric field due to the negative charge points radially towards it.

The net electric field is the vector sum of the electric fields due to all the charges, and it will not be zero anywhere in space since the positive charges and negative charge are not symmetrically placed.

The electric field at any point in space is defined as the force per unit charge experienced by a test charge placed at that point. In the given situation, the electric field due to the four positive charges will point radially away from the charges and will have a magnitude that decreases with increasing distance from the charges. The electric field due to the negative charge will point radially towards it and will have a magnitude that also decreases with increasing distance from the charge.

When these electric fields are combined to form the net electric field, the resulting field will not be zero anywhere in space since the positive charges and negative charge are not symmetrically placed. This means that if a test charge were placed at any point in space, it would experience a net force due to the electric fields.

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The complete question is:

Set up a situation in which you have four positive charges placed on top of each other at one location, and then a single negative charge 1 m away from the positives.

a. In this situation, how far from the positive charges (a finite distance from them) is the location where the net electric field is zero? _______ m

How many degrees of freedom does a simple solid have?

Answers

There are three degrees of freedom in a basic solid. Only translational (DOFs) are supported by solids at each node.

What is the formula for degrees of freedom?

In statistics, df = N-1 is the equation that is most frequently used to calculate degrees of freedom. Use this number to find the equation's critical values in a mean value tables, which in turn establishes the results' statistical significance.

What does "degree of freedom" mean exactly?

The largest number of operationally independent variables is, values with the freedom to change—in the data sample is referred to as the degree of freedom. If there is a remaining requirement for the data sample, particular data specimen items must be picked after the degrees of freedom amount has been decided.

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there is evidence that elephants communicate via infrasound, generating rumbling vocalizations as low as 14 hz that can travel up to 10 km. the intensity level of these sounds can reach 100 db, measured a distance of 5.5 m from the source. determine the intensity level of the infrasound 10 km from the source, assuming the sound energy radiates uniformly in all directions.

Answers

The intensity level of the infrasound 10 km from the source is 62.41 dB.

Describe infrasound.

Low-status sound refers to sound waves having a frequency below the threshold of human audibility, also known as infrasound (generally 20 Hz). Hearing increasingly becomes less sensitive as frequency decreases, hence infrasound needs to have a powerful enough sound pressure for people to be able to hear it. Although many parts of the body may be able to detect infrasound vibrations at higher frequencies, the ear is the primary organ for hearing low-frequency sounds.

There are some uses for the term "infrasonics," which examines sound waves below 20 Hz and up to 0.1 Hz (and rarely to 0.001 Hz). Monitoring earthquakes and volcanoes, as well as mapping underground rock and petroleum deposits, are all done in this frequency range.

The intensity level of a sound decreases with the square of the distance from the source. So, the intensity of the infrasound 10 km from the source will be:

100 dB - 20 log (10 km / 5.5 m)

= 100 dB - 20 log (1818.1818)

= 100 dB - 37.59 dB

= 62.41 dB

So, the intensity level of the infrasound 10 km from the source is 62.41 dB.

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does putting batteries in the freezer recharge them?

Answers

Simply put, no. Try not to be hard on you if this is the first time you've heard it; in some cases, a belief was once accurate. A bulk of energy storage units kept in fridge are basic AA, AAA, C, & D batteries.

What three types of batteries are there?

There are three main battery kinds that may be used by consumers. They are lithium ion, nickel metal hydride, and alkaline. Each kind has benefits and drawbacks. Each of them has a unique position in the history of technology.

What kind of battery is ideal?

With the greatest energy density of just about any battery cell, lithium batteries are made of this very light metal. As a result, they have a higher energy capacity than battery systems or any other separate bat of a similar size. Additionally, they work admirably in the both cold and warm environments.

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GCSE Physics question

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The period of the sound wave is 0.00025 second.

What are acoustic waves?

An example of an energy type that propagates through a medium using adiabatic loading and unloading is acoustic waves. Acoustic pressure, particle velocity, particle displacement, and acoustic intensity are crucial parameters for defining acoustic waves.

Given parameters:

Frequency of sound wave is = 4.0 kHz

We know that for wave motion:

Time period of the wave = 1/frequency of the wave

Hence,  The period of the wave is = 1/Frequency

= 1/ (4 × 10³) second

= 0.00025 second.

So, the period of the wave is 0.00025 second.

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what is the primary form of useful energy output in the case of a car?

Answers

What is the form of useful energy output in the case of a car? Explanation) A car converts chemical energy from the burning of fuel into mechanical energy (rotation of wheels).

Hope this helps have an excellent day!

a baseball is hit at ground level. the ball is observed to reach its maximum height above ground level 3.0 seconds after being hit. and 2.5 seconds after reaching this maximum height, the ball is observed to barely clear a fence that is 320 ft. from where it was hit. how high is the fence? (the acceleration of gravity is -32.2 ft/s 2 .)

Answers

To find the height of the fence, we need to find the final height of the ball after it was hit and then subtract the height of the fence.The final height of the ball can be found using kinematic equations. Using the initial velocity, acceleration due to gravity, and time elapsed, we can find the final height of the ball:h = vi * t + 0.5 * a * t^2whereh = final height

vi = initial velocity (0, since it was hit from ground level)

t = time elapsed (3.0 s)

a = acceleration due to gravity (-32.2 ft/s^2)Substituting the values,h = 0 + 0.5 * -32.2 * (3.0)^2 = 45.3 ftNext, we need to find the height of the ball 2.5 seconds after it reached its maximum height.Using the same kinematic equation,h = vi * t + 0.5 * a * t^2whereh = final height

vi = initial velocity (0, since it was at its maximum height)

t = time elapsed (2.5 s)

a = acceleration due to gravity (-32.2 ft/s^2)Substituting the values,h = 0 + 0.5 * -32.2 * (2.5)^2 = 18.825 ftFinally, subtracting the final height of the ball from the height of the fence:fence height = 320 ft - 18.825 ft = 301.175 ftSo, the fence is 301.175 ft high

the height of the mercury column in a barometer reads 725 mm. a barometer is made of a glass tube sitting in an open container of mercury. the glass stem is partly filled with the mercury. how will the height of the mercury column change when the atmospheric pressure decreases?

Answers

The height of the mercury column in a barometer is directly proportional to the atmospheric pressure. As atmospheric pressure decreases, the height of the mercury column decreases. Conversely, as atmospheric pressure increases, the height of the mercury column increases.

This relationship between the height of the mercury column and atmospheric pressure is described by Pascal's law, which states that pressure applied to an enclosed fluid is transmitted equally in all directions throughout the fluid. In the case of a barometer, the mercury in the glass stem is an enclosed fluid, and the atmospheric pressure acts on it, causing it to rise or fall.

So, if the atmospheric pressure decreases, the mercury column's height will also decrease. The exact amount of change in the height of the mercury column will depend on the amount of decrease in atmospheric pressure and the specifics of the barometer setup.

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my flashlight normally gives off 100 units of light and i do not notice that it is getting dimmer until it gets to 95 units. what is the jnd?

Answers

Batteries are underpowered or dead. The power released by batteries decreases with time, causing most flashlights' illumination to gradually dim until turning out totally.

When you turn on the torch, why does it emit light?

The tungsten filaments or LED in the lamp starts to glow when electricity turns it on, emitting visible light. The lamp's reflector, which is positioned around it, reflects this light.

My rechargeable torch won't charge; why?

To be sure that no debris or grime is blocking the flashlight from charging, check the USB port. To test if a fresh battery will help, try using the flashlight. Use a fresh charging cable or adapter to.

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if two such generic humans each carried 1.0 c coulomb of excess charge, one positive and one negative, how far apart would they have to be for the electric attraction between them to equal their 650 n weight? express your answer in kilometers.

Answers

The required distance between the two charges is r ≈ 0.098 km.

How to use Coulomb law to find distance between charges?

The force of attraction between two point charges is given by Coulomb's law:

F = k * q1 * q2 / r^2

where

F is the force of attraction (in N)

k is the Coulomb constant (8.987551787 x 10^9 Nm^2/C^2)

q1 and q2 are the magnitudes of the charges (in C)

r is the separation between the charges (in meters)

Setting the force equal to the weight (650 N) and solving for r, we get:

According to question:

650 = k * 1.0 C * 1.0 C / r^2

r = [tex]\sqrt{\frac{k * 1.0 C * 1.0 C}{650N} }[/tex]

Converting r to kilometers:

r = √(k * 1.0 C * 1.0 C / 650 N) / 1000 m/km

r = √(8.987551787 x 10^9 Nm^2/C^2 * 1.0 C * 1.0 C / 650 N) / 1000 m/km

r ≈ 0.098 km

So the two charges would have to be approximately 0.098 km apart for the electric attraction between them to equal their 650 N weight.

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a ferris wheel with a radius of 10.0 m makes 1 revolution every 10 s. when a passenger is at the top, essentially a diameter above the ground, he releases a ball. how far from the point on the ground directly under the release point does the ball land?

Answers

The ball will land 12.3 meters away from the point on the ground directly under the release point. This can be expressed mathematically as:

The radius of the wheel is 10.0 m, so the diameter of the wheel will be 20.0 m. the circumference of the wheel can be calculated as follows.

[tex]C=2\pi r\ \\ =(2\pi )(10m)\\ =62.831m[/tex]

The speed of any point of the wheel can be determined as

[tex]v=C/t \\\=62.831m/10s\\=6.283m/s[/tex]

Now, the following formula can be used to determine how long it takes the ball to move vertically a distance equal to the wheel's diameter.

[tex]s=ut+1/2gt^{2} \\ where, u = initial speed = 0 \\So,\\(20.0m)=(0)t+1/2(9.8m/s^{2} )t^{2} \\t^{2} = (20m)(2)/(9.8m/s^{2} )\\t=2.01s\\[/tex]

The ball will now touch the ground at this moment. The following formula can be used to determine how far the point traveled during this period.

[tex]D=(6.283m/s)(4.081s)\\\\=12.287m\\=12.3m[/tex]

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if two adjacent frequencies of an organ pipe closed at one end are 550 hz and 650 hz, what is the length of the organ pipe? (vsound

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The length of an organ pipe can be calculated using the formula:

L = v / (2f)

where L is the length of the pipe, v is the speed of sound in air, and f is the frequency of the pipe. To find the length of the pipe, we can use the average of the two frequencies as the frequency of the pipe:

f = (550 Hz + 650 Hz ) / 2 = 600 Hz

Assuming the speed of sound in air is approximately 340 m/s:

L = v / (2f) = 340 / (2 * 600) = 0.057 m

So, the length of the organ pipe is approximately 0.057 meters.

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3. the coefficient of friction between a soccer ball and a court is 0.52, and its mass is 425 gm. how much horizontal force is required to make the shoe slide?

Answers

The horizontal force that is required to make the shoe slide is 2.1658N.

Horizontal force = static friction

Static friction = uMg

u is coefficient of friction

g = acceleration due to gravity

M is the mass of the body that is .0425 kg.

Force required = (0.52 x 0.425 x 9.8) N

= 2.1658N

A horizontal force is a force that operates in a direction parallel to the horizon. The cycle's speed tends to slow down due to an opposing force called air resistance force, which acts in the opposite direction. Both the applied force and the air resistance force are considered horizontal forces when the direction is taken into account. Jumps and horizontal medicine ball throws can help increase the horizontal force produced. The Standing Long Jump, Standing Triple Jump, and horizontal jumps over hurdles or boxes are some of these jumps.

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a lunar eclipse can occur only atgroup of answer choicesfirst quarter moon.third quarter moon.new moon.full moon.

Answers

An lunar eclipse can only happen at certain response options.New moon is the first quarter moon.

What three lunar eclipses are there?

A lunar eclipse happens when Earth passes in front of the Sun and Moon, preventing the Amount of solar radiation from striking the Moon directly.Only at full moons do lunar eclipses take place.Total, partial, & penumbral lunar eclipses are the three types that can occur.

Can the q3 moon create an eclipse?

The Moon's shadow, which it casts across the Earth whenever it is directly between the Sun and the planet, causes a solar eclipse.Solar eclipses can only happen with a new moon.

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What is the name of a change that occurs when one or more substances change into entirely new substances with different properties?

Answers

A chemical change is the transformation of one substance into another, the emergence of new compounds with distinct properties, or any combination of these. It happens when two compounds mix to create a new material (synthesis or either decomposes to form more substances).

What is substance and example?

A substance is defined as matter with a certain composition and particular qualities. Everything that is pure is a substance. A substance is every pure compound. Several chemicals are: Since iron is an element, it qualifies as a material. Methane is a substance since it is a compound.

What is a natural substance?

Naturally Occurring Substances: Substances that exist in the environment naturally yet nonetheless pose a risk to businesses in terms of environmental responsibility. Examples include radon, pyrite, asbestos, mercury, arsenic, and asbestos. The majority of these materials are found while being developed or built.

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What happens when a substance moves below its freezing point? And What happens when it moves above its boiling point???

Answers

When a substance moves below its freezing point, it undergoes a phase change from a liquid to a solid.

When a substance moves above its boiling point, it undergoes a phase change from a liquid to a gas.

What happens when a substance moves below its freezing point?

When a substance moves below its freezing point, it undergoes a phase change from a liquid to a solid. This happens because the temperature is low enough that the energy of the particles in the liquid is insufficient to overcome the forces of attraction between them. As a result, they slow down, come together, and form a solid.

On the other hand, when a substance moves above its boiling point, it undergoes a phase change from a liquid to a gas. This occurs because the temperature is high enough to provide enough energy to the particles in the liquid to overcome the forces of attraction between them. The particles then move apart, form into a gas, and eventually escape into the atmosphere as a vapor.

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you are snowboarding down a hill at 17 m/s when you start sliding across a frozen lake. the frictional force slowing you down is 22 n. if your mass is 75 kg, how far do you slide?

Answers

The statement "The normal Force on an item is equal towards its mass m 75" must appear on every page of this textbook if it is being redistributed in print.

What is a good illustration of physical force?

of destructive physical forces include those that are swift and catastrophic, including both catastrophic event and operator mistakes (such as seismic events, or rocking or falling an object), as well as those that are slower acting with a small but frequent chance for destruction (such like improper handling during studies and educational use).

What does the Force symbolize?

The Force is a symbolism for godhood, says Jennifer Porter, a professor of religious sciences at Memorial University in Newfoundland, "that connects and inspires [people] to have a deeper devotion to the godhood defined."

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one day while measuring acceleration with his pulse as a timing source, galileo became so excited that his pulse rate increased. his results for acceleration that day were probably

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Galileo once felt so thrilled as his pulse rate went up while he was using his pulses as a time source to measure acceleration. He probably had better acceleration results that day.

How does acceleration function? What is it?

Any procedure where the velocity varies is referred to as acceleration. There are just two ways to accelerate: changing your speed or changing your direction, or changing both. This is because velocity is both a rate and a direction.

Is acceleration accelerating or constant?

An object is considered to be moving faster or to have an acceleration if its velocity changes. An item can occasionally alter its speed by the same quantity every time or every second. Because the speed is changing by a fixed amount every second, this is therefore known as acceleration, which is constant.

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PLS HELP ME
a bullet is fired with a velocity of 150m/s at an angle of 15° to the horizontal.Calculate the range of the bullet (g=10m/s)​

Answers

The range of the bullet is 1,125 m.

What is the range of bullet?

The range of the bullet is the maximum horizontal distance travelled by a projectile and it can be calculated by applying the following formula.

R = ( u² sin ( 2θ ) / g

where;

u is the initial velocity of the bullet = 150 m/sθ is the angle of projection of the bullet =  15°g is the acceleration due to gravity = 10 m/s²

The range of the bullet is calculated as follows;

R = ( u² sin ( 2θ ) / g

R = ( 150² sin ( 2 x 15 ) / 10

R = 1,125 m

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to push a car down the street, a truck applies 20,400 j of work over 60 seconds. calculate the power to push the car.

Answers

340 W is the power to push the car if  a car down the street, a truck applies 20,400 j of work over 60 seconds.

Power is defined as the rate at which work is done. It is given by the equation:

P = W / t

where P is power, W is work, and t is time.

Given that the truck applies 20,400 J of work over 60 seconds, the power can be calculated as:

P = W / t = 20,400 J / 60 s = 340 W

So the power required to push the car down the street is 340 W.

The rate of work execution is referred to as power. The equation states it as follows: 340 W is the power to push the car if  a car down the street, a truck applies 20,400 j of work over 60 seconds.

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show answer no attempt 50% part (a) what type of wave is created through a battering ram when it hits a wall?

Answers

When a battering ram strikes a wall, it creates a type of mechanical wave known as a pressure wave or a shock wave.

Pressure waves are created by the transfer of energy through a medium, such as a wall or the air, as a result of a sudden change in pressure. The energy from the battering ram creates a compression wave that moves out from the point of impact and spreads throughout the medium. This type of wave is different from transverse waves, such as light or radio waves, which move perpendicular to the direction of the wave's motion, or longitudinal waves, such as sound waves, which move parallel to the direction of the wave's motion. The pressure wave created by the battering ram is an example of a longitudinal wave that moves through the medium, transmitting the energy from the ram to the wall.

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the quantity that has units is known as a multiple choice horsepower. joule. newton. watt.

Answers

Joule is a measure of quantity with units kgm²/s² (option 2)

A physical quantity is anything that can be measured in the physical world. A table's length, for instance, can be measured. In this case, length is a numerical value. Your body's mass can be measured because it is a physical quantity. Time is a physical quantity, thus you can quantify the amount of time you are spending reading this book.

The International System of Units uses the joule as its unit of energy. It is equivalent to the amount of work that is accomplished when a mass is displaced by a force of one newton over a distance of one meter in the direction of the force applied.

International system base unit is kgm²/s².

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a sperm whale can accelerate at about 0.110 m/s2 when swimming on the surface of the ocean. how far will a sperm whale travel if it starts at a speed of 0.900 m/s and accelerates to a speed of 2.18 m/s ? assume the whale travels in a straight line.

Answers

The distance traveled by the sperm whale at a speed of 0.9 m/s with an acceleration of 0.11 m/s² is 17.91 m

The initial speed of the sperm whale = 0.9 m/s

The acceleration of the sperm whale = 0.11 m/s²

The final speed of the sperm whale is 2.18 m/s

The distance traveled by the sperm whale can be found using the formula,

               v² = u² + 2as

where v is the final velocity

           u is the initial velocity

           a is the acceleration of the sperm whale

           d is the distance traveled by the sperm whale

Let's substitute the known values in the above equation we get

                2.18² = 0.9² + 2 x 0.11 x s

                 4.75 = 0.81 + 0.22 x s

       4.75 - 0.81 = 0.22 x s

           0.22 x s = 3.94

                       s = 3.94 / 0.22

                       s = 17.91 m

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is there any other position where the electric field magnitude is zero? if so, what is that location in terms of d ?

Answers

No, the electric field magnitude is zero only at the midpoint between the two charges, i.e. at a distance of d/2.

In order to determine the location of the electric field zero, we set the electric fields for each point charge to be equal to one another because that is the point at which they will cancel one another out. The electric potential does not necessarily equal zero just because the electric field is zero at a certain location. The situation of two similar charges that are spread apart is an excellent example. Even when the electric field is not zero at a given point, the electric potential can nonetheless be zero there. Because it is 0 at a point inside the solid body of the conductor, the electric field caused by induced charges at the sphere's center is zero.

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multiple choice question a point charge q is enclosed by a gaussian surface in the shape of a pyramid with sides of length l. what is the total electric flux through the pyramid?

Answers

A radius R Gaussian spherical surface encloses a charge Q. The electric flux will increase when the radius is doubled. either a) stay the same; or b) multiply by four.

An electric charge is what?

When retained in an electromagnetic field, stuff with an electric charge experiences a force according to its physical nature. The 2 types of electric charges—positive and negative—that protons and electrons most frequently carry are positive and negative. An object is considered neutral when its net charge is equal to zero.

What does charge in science mean?

Discover the meaning of charge in science. Charge often refers to electric charge in chemistry and physics, which is a conserved feature of some subatomic particles that governs their electromagnetic interaction. An electromagnetic field exerts a force on matter as a result of the physical attribute of charge.

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an astronaut has left the international space station to test a new space scooter. her partner measures the following velocity changes, each taking place in a 12 s interval. what is the average acceleration in each interval? assume that the positive direction is to the right.

Answers

The average acceleration in each interval is 0.922  [tex]\frac{m}{s^{2} }[/tex], 0.922  [tex]\frac{m}{s^{2} }[/tex]

and  2.922  [tex]\frac{m}{s^{2} }[/tex].

a) for the acceleration of astronaut

Acceleration is like the angry, fire-breathing dragon of motion variables in comparison to displacement and velocity. It can be dangerous, some people find it frightening, and if it's large, it makes you pay attention. You can feel yourself accelerating in scenarios like sitting in a plane during takeoff, slamming on the brakes in a car, or speeding around a corner in a go-kart.

acceleration of astronaut = change in velocity/time

acceleration of astronaut = [tex]\frac{5.5-15}{10.3}[/tex]

acceleration of astronaut = - 0.922 [tex]\frac{m}{s^{2} }[/tex]

acceleration of astronaut is 0.922  [tex]\frac{m}{s^{2} }[/tex]to left

b)acceleration of astronaut = change in velocity/time

acceleration of astronaut =[tex]\frac{-15-(-5.5)}{10.3}[/tex]

acceleration of astronaut = - 0.922  [tex]\frac{m}{s^{2} }[/tex]

acceleration of astronaut is0.922  [tex]\frac{m}{s^{2} }[/tex]o left

c)acceleration of astronaut = change in velocity/time

acceleration of astronaut =[tex]\frac{-15-15}{10.3}[/tex]

acceleration of astronaut = - 2.922  [tex]\frac{m}{s^{2} }[/tex]

acceleration of astronaut is 2.922  [tex]\frac{m}{s^{2} }[/tex] to left

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Walter Cannon criticized the James-Lange theory on multiple points. Which one of the following is one of those criticisms?

Answers

Explanation:

Walter Cannon challenged the James-Lange theory, criticizing it on several grounds. Which of the following is one of those criticisms? Cannon pointed out that bodily reactions are similar for many emotions, yet our subjective experience of various emotions is very different.

You have a system of a negatively charged object and a positively charged object separated by some arbitrary finite distance.1. What is the sign of their potential energy? (Remember that charges that are infinitely far from each other have zero potential energy.)2. What can you do to decrease this energy?3. Draw an energy bar chart for this process of decreasing the energy.

Answers

The sign of the potential energy of a system of two charged objects depends on the nature of the charges. In the case of a negatively charged object and a positively charged object separated by some finite distance, the potential energy is negative, meaning that energy is stored in the system.

What can you do to decrease this energy?

To decrease the potential energy of the system, you can bring the charged objects closer together, reducing the distance between them. This reduces the electric field strength and the potential energy stored in the system.

What happens when charges get closer?

As the charges get closer, the repulsive force between them increases, requiring more work to overcome. At some point, the charges will repel each other so strongly that it becomes difficult to bring them any closer together.

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for a scene in an action movie, a car drives at 25.0 m/s directly toward a wall. the car's horn is on continuously and produces a sound of frequency 415 hz . if the speed of sound is 340 m/s and the air is still, what is the frequency of the sound that the driver of the car hears reflected from the wall?

Answers

The frequency of the sound that the driver hears reflected from the wall is approximately 472.56 Hz.

To find the frequency of the sound that the driver of the car hears reflected from the wall, we need to consider the Doppler effect.

The frequency of the sound will change due to the relative velocity of the car and the sound wave.

Let f be the frequency the driver hears reflected from the wall.

Then, we can use the equation:

f = f0 * (v + vs) / (v + vr)

where f0 is the original frequency of the horn,

vs is the speed of sound, and

vr is the relative velocity of the car and the sound wave.

In this case, f0 = 415 Hz, vs = 340 m/s, and vr = 25 m/s (the car is moving toward the wall).

Plugging these values in, we get:

f = 415 * (340 + 25) / (340 - 25)

f = 415 * 365 / 315

f = 472.56 Hz

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