Why is a direct comparison of station pressures difficult?
1. Station pressures change abruptly over small horizontal distances even when there is no appreciable change in elevation.
2. Weather stations are often at different altitudes
3. Aneroid barometers are extremely inaccurate
4. All of the above

Answers

Answer 1

Even when there is no discernible change in elevation, station pressures quickly shift across short horizontal distances.

What are the benefits of pressure altitude?

Aircraft performance and flight levels are both based on pressure altitude, which is crucial for aircraft operating at or above 18,000 feet. Pressure altitude is adjusted for non-standard temperature to produce density altitude.

What distinguishes the altimeter setting from the station pressure?

The station pressure, which is the actual barometric pressure of a location, is the pressure that is measured at a particular elevation. The pressure indication that is most frequently heard in radio and television broadcasts is the altimeter setting. It is not the station's actual barometric pressure.

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Related Questions

Why are electric field lines perpendicular at a point on the equipotential surfaces?

Answers

Answer:

This is because if the electric field is not perpendicular to the equipotential surface there would have existed some nonzero component along the surface.

Which statement best compares the momentum of a stationary truck and a car in motion?

Answers

The statement that best compares the momentum of a stationary truck and a car in motion is as follows:

The moving car has some momentum, but the stationary truck has no momentum.

What is Momentum?

Momentum may be defined as the quantity of motion of the body. It represents the object which is under the condition of movement or motion.

It is calculated by “mass × velocity”, as momentum relies upon velocity, and it depends on the direction of the motion of the body as well. Momentum is a vector quantity since velocity is a vector while mass is scalar. Its SI unit is kg m /s.

The car is consistently moving so it has mass and velocity both. While on contrary, a stationary truck is not moving, so it has not any type of mass or velocity. Due to this, its momentum is zero.

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Your question seems incomplete. The most probably the complete question is as follows:

Which statement best compares the momentum of a stationary truck and a car in motion?

The moving car has less momentum than the stationary truck. The moving car and the stationary truck have the same momentum.The moving car has some momentum, but the stationary truck has none. The stationary truck has momentum, but it is less than that of the moving car.

The 200 kg lift rose to a height of 2 metres in 0.2 minutes. What work did the lift motor do? What is its power? ​

Answers

The power of the lift motor is 330 Watts.

How to determined the work done by the lift motor?

The work done by the lift motor can be calculated using the formula for work which is Work = Force x Distance,

where

Force is the lifting force Distance is the vertical distance moved

In this case, the lifting force can be calculated as the gravitational force acting on the lift, which is given by the formula Force = mass x acceleration due to gravity. The acceleration due to gravity is 9.8 m/s^2

So the work done by the lift motor is:

Work = (200 kg) x (9.8 m/s^2) x (2 m) = 3960 Joules

The power of the lift motor can be calculated as the work done per unit time. In this case, the time taken was 0.2 minutes, which is equivalent to 0.2 x 60 = 12 seconds.

So the power of the lift motor is:

Power = Work / Time = 3960 Joules / 12 seconds = 330 Watts.

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Which one of the following properties most fundamentally distinguishes mechanical waves from electromagnetic waves? A.Mechanical waves have crests and troughs. B.Mechanical waves require a medium for propagation. C.Mechanical waves have well-defined wavelengths. D.Mechanical waves move at a finite speed.

Answers

Option B. Mechanical waves require a medium for propagation, while electromagnetic waves do not.

Mechanical waves are waves that require a medium to travel through. Examples of mechanical waves include sound waves and water waves. In these waves, energy is transferred through the medium by the particles in the medium oscillating back and forth. Mechanical waves have properties such as amplitude, wavelength, frequency, and speed. They can also have crests and troughs, like ocean waves, but this is not the most fundamental property that distinguishes them from electromagnetic waves.

Electromagnetic waves, on the other hand, do not require a medium to travel through. They can travel through a vacuum, such as the vacuum of space. Examples of electromagnetic waves include radio waves, microwaves, infrared radiation, visible light, ultraviolet radiation, X-rays, and gamma rays. Electromagnetic waves have properties such as wavelength, frequency, and speed, but they do not have crests and troughs like mechanical waves.

Therefore, the property that most fundamentally distinguishes mechanical waves from electromagnetic waves is that mechanical waves require a medium for propagation.

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two solid spheres, both of radius 5 cm, carry identical total charges of 2 μc. sphere a is a good conductor. sphere b is an insulator, and its charge is distributed uniformly throughout its volume. How do the magnitudes of the electric fields they separately create at radius 4 cm compare?

Answers

The electric field created by sphere A will be much greater than the electric field created by sphere B because sphere A has a much higher surface charge density.

What is the electric field of the spheres?

The magnitudes of the electric fields created by the two spheres at a radius of 4 cm will be different because they have different charge distributions.

A good conductor, such as sphere A, will distribute its charge evenly over its surface, so the electric field it creates will be proportional to the surface charge density. On the other hand, an insulator, such as sphere B, will have a uniform charge distribution throughout its volume, so the electric field it creates will be proportional to the volume charge density.

The electric field created by a charged sphere at a point outside the sphere can be calculated using the formula:

E = [tex]\mathrm{k \times Q / r^2}[/tex]

where k is the Coulomb constant, Q is the charge on the sphere, and r is the distance from the center of the sphere to the point where the electric field is being calculated.

Using this formula, we can calculate the electric field created by each of the spheres at a radius of 4 cm:

For sphere A:

[tex]\mathrm{E = k \times Q / (r^2) = k \times (2 x 10^-6) / (4^2 x 10^-2)^2 = k \times 2 / 16}[/tex]

For sphere B:

[tex]\mathrm{E = k \times Q / (4r)^2 = k \times (2 x 10^-6) / (4 x 5 x 10^-2)^2 = k \times 2 / 100}[/tex]

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A 3. 0-m rod is pivoted about its left end. A force of 10 n is applied perpendicular to the rod at a distance of 1. 2 m from the pivot causing a ccw torque, and a force of 5. 2 n is applied at the end of the rod 3. 0 m from the pivot. The 5. 2-n force is at an angle of 30o to the rod and causes a cw torque. What is the net torque about the pivot? (take ccw as positive. ).

Answers

The net torque about the pivot is -0.6Nm

Torque is defined as the perpendicular component of force \times distance from pivot point.

#Tnet = £Ti where £Ti is the torques from different applied forces.

T1 = 6N × 1.2 = 7.2N  (+ve, counterclockwise)

T2= -5.2N sin 30° 3m (-ve, clockwise)

= -7.8Nm

Tnet = T1+ T2

= 7.2-7.8

= - 0.6Nm

Hence, the total torque is -0.6Nm

What is torque?

Torque is the spinning counterpart of force.Another name for it is the moment of force (also abbreviated to moment).It serves as an example of how a force can alter a body's rotational motion.Archimedes, who investigated the use of levers, is credited with creating the saying, "Give me a lever and a place to stand, and I shall move the Earth."Similar to how a linear force is either a push or a pull, a torque may be thought of as a twisting of an object about a specific axis.

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What energy conversion is taking place as protons move through ATP synthase?

Answers

he energy conversion taking place as protons move through ATP synthase is the conversion of proton motive force into chemical energy in the form of ATP.

When protons move through ATP synthase, they drive the rotation of a subunit called the rotor. This rotation is then transmitted to a subunit called the stator, which catalyzes the synthesis of ATP from ADP and inorganic phosphate. This process is known as oxidative phosphorylation and is a key step in cellular respiration.

The movement of protons through ATP synthase is driven by the electrochemical gradient established across the inner mitochondrial membrane. This gradient is created by the transfer of electrons through the electron transport chain, which ultimately leads to the production of ATP.

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? Someone help I’m genuinely confused and stuck

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A combining form for lungs is  "pneum/o".

What is combining form?

In medical terminology, a combining form is a word part that is added to the beginning or end of a root word to modify its meaning. The combining form "pneum/o" is used to refer to the lungs, air, or respiration.

Some common medical terms that use the combining form "pneum/o" include:

Pneumonia: An infection of the lungs that can cause inflammation, coughing, and difficulty breathing.

Pneumothorax: A condition in which air leaks into the space between the lung and chest wall, causing the lung to collapse.

Pneumonectomy: A surgical procedure in which one or more lobes of the lung are removed.

Pneumology: The study of the lungs and respiratory system.

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An automobile accelerates from zero to 24 m/s in 6 s. The wheels have a diameter of 2 m. What is the average angular acceleration of each wheel?.

Answers

To solve this problem we will use the concepts related to angular motion equations. Therefore we will have that the angular acceleration will be equivalent to the change in the angular velocity per unit of time.

What is an angular acceleration?

Angular acceleration is the rate of change of angular velocity over time. It is a vector quantity, with both magnitude and direction, and is usually measured in radians per second squared (rad/[tex]s^{2}[/tex]).

We will use the relationship between linear velocity, radius, and angular velocity to find said angular velocity and use it in the mathematical expression of angular acceleration.

The average angular acceleration

a = wf-wi/t

Here

a = Angular acceleration

Wf, Wi Initial, and final angular velocity

There is no initial angular velocity, then

a = Wf/t

We know that the relation between the tangential velocity with the angular velocity is given by,

v = rw

Here,

r = Radius

w = Angular velocity,

Rearranging to find the angular velocity

w = v/r

Remember that the radius is half the diameter.

Now replacing this expression in the first equation we have,

a= 30/ 0.20×6

a= 25 rad/s²

Therefore the average angular acceleration of each wheel is 25 rad/s²

What is velocity?It is also possible to refer to velocity as the instantaneous velocity to stress how it differs from the average velocity.Velocity is defined as the rate of change of location with respect to time.

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a car slows down from a speed of 72km/h to rest in 25 second.What is the acceleration of the car?
Given,formula,solution and answer pls​

Answers

Answer:The acceleration of the car is -0.8 m/s^2Explanation:Given:-

Initial speed, u = 72 km/h

Initial speed, u = 72 km/hFinal speed, v = 0 km/h (since the car comes to rest)

Initial speed, u = 72 km/hFinal speed, v = 0 km/h (since the car comes to rest)Time, t = 25 s

Formula:

Formula:The acceleration of an object can be calculated using the formula:

[tex]a = \frac{(v - u)}{t} [/tex]

Where a is the acceleration, v is the final velocity, u is the initial velocity, and t is the time taken.

Solution:

Converting the initial velocity to m/s:

u = 72 km/h = (72 × 1000) / (60 × 60) = 20 m/s

Converting the final velocity to m/s:

v = 0 km/h = (0 × 1000) / (60 × 60) = 0 m/s

Substituting the values in the formula:

a = (v - u) / t

a = (0 - 20) / 25

a = -0.8 m/s² (Note: the negative sign indicates that the car is decelerating)

[tex] PLEASE :\ MARK :\ ME :\ AS :\ BRAINLIEST [/tex]

A 0. 20 kg mass on a horizontal spring is pulled back 2. 0 cm and released. If, instead, a 0. 40 kg mass were used in this same experiment, the total energy of the system would.

Answers

The total energy of the system would be the same regardless of the mass of the object. This is because the energy stored in a spring is a function of the displacement of the spring, and not the mass of the object.

What is the energy ?

Energy is the capacity to do work. It is the ability to cause change and can take many forms, such as kinetic, potential, thermal, chemical, electrical, nuclear, and gravitational energy. It is essential for life and is found in all parts of nature. Energy is used to power machines, create materials, and to generate electricity. It is also used to heat and cool buildings, to light homes, and to power vehicles. As energy is used, it is converted into another form, such as heat, light, or sound. While energy can be used up, it is never destroyed. It is always transferred or transformed.

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what are the five points of architecture by le corbusier?

Answers

The five points of architecture by Le Corbusier are Pilotis, Free plan, Free facade, Ribbon windows and Roof terrace

The five points of architecture are:

Pilotis: These are reinforced concrete columns that elevate the structure off the ground. The use of pilotis allows for the ground floor to be free of structural elements, enabling flexible use of space and increased light and ventilation.

Free plan: The use of pilotis allows for the creation of an open, free plan that is unconstrained by load-bearing walls. This enables architects to design flexible interior spaces that can be easily reconfigured.

Free facade: The use of pilotis and a free plan allows for the creation of a free facade, which means that the exterior walls are not load-bearing and can be designed purely for aesthetic purposes. This enables architects to experiment with new materials and forms.

Ribbon windows: Continuous bands of windows along the facade, or ribbon windows, enable natural light to penetrate deep into the interior of the building. This allows for a more comfortable and healthy living environment.

Roof terrace: The fifth point of architecture is the inclusion of a roof terrace, which provides additional outdoor space and can be used for a variety of purposes, including gardening and recreation

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From the way that lunar eclipses happen, the Ancient Greeks were able to calculate the distance from the ____ to the ____.

Answers

From the way that lunar eclipses manifest, the ancient Greeks had been able to calculate the distance from the Earth to the Moon.

Lunar eclipses occur when the Earth's shadow falls on the Moon, blocking its light. During a total lunar eclipse, the Moon appears red, which is often referred to as a "blood moon". This is because the Earth's atmosphere refracts sunlight, filtering out blue light and casting the Moon in a red hue.

Lunar eclipses occur several times a year, but not all of them are total. Sometimes the Moon only passes through the partial shadow of the Earth, resulting in a partial lunar eclipse. These eclipses can be more difficult to see since the Moon doesn't become as dark or as red. Lunar eclipses have been observed and recorded by humans for thousands of years, and they continue to be a fascinating and awe-inspiring natural phenomenon.

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Mark all that apply! Thank you!

Answers

Answer: a c

Explanation:

Question: Copernicus Said That T He Rotation Of The Earth On Its Axis Caused The O A Daily Motions In The Heavens. B Phases Of The Moon. OC Retrograde Motion Of The Planets O D Eclipses Of The Moon. O E Motion Of The Sun Along The Ecliptic. In Comparison To The Copernican Theory, The Ptolemaic Theory Made Predictions That Were Of O A Much Higher Accuracy OB Much

Answers

The correct option is C, Copernicus Said That T He Rotation Of The Earth On Its Axis Caused the Retrograde Motion Of The Planets.

The correct option is B, In Comparison to the Copernican Theory, The Ptolemaic Theory Made Predictions that were of much less accuracy.

Retrograde motion is the apparent backward motion of a planet in its orbit, as viewed from Earth. This phenomenon occurs as a result of the relative positions of Earth and the planet in question, as both planets move in their orbits around the Sun. Retrograde motion is an illusion, as it is not actually caused by any change in the planet's direction or speed of travel. Instead, it is due to the difference in the length of time it takes for Earth and the other planet to complete their orbits around the Sun.

During retrograde motion, the planet appears to move backwards against the backdrop of the stars for a period of weeks or months. This phenomenon was first observed by ancient astronomers, who were puzzled by the strange behavior of the planets in the sky. Today, retrograde motion is well understood and can be predicted with a high degree of accuracy.

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Complete Question: -

Copernicus Said That T He Rotation Of The Earth On Its Axis Caused the

A. Daily Motions In The Heavens. B Phases Of The Moon. C. Retrograde Motion Of The Planets D. Eclipses Of The Moon. E. Motion Of The Sun Along The Ecliptic.

In Comparison To The Copernican Theory, The Ptolemaic Theory Made Predictions That Were Of

A. Much Higher Accuracy  B. much less accuracy C. about the same accuracy

28) Refraction results from differences in light's. A) frequency. B) incident angles. C) speed. D) all of the above. E) none of the above.

Answers

Refraction results from differences in light's speed. The correct answer is C) speed.

Refraction is the term for the bending of light as it passes through transparent materials (it also occurs with sound, water, and other waves). We are able to create lenses, magnifying glasses, prisms, and rainbows because to this bending caused by refraction.

Refraction occurs when light passes through different mediums and changes its speed. This change in speed causes the light to bend, creating the effect of refraction.

This is why objects appear to be in different positions when viewed through water or a lens. The frequency and incident angles of the light do not affect refraction, only the speed of the light does.

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What are the forces acting on a catapult?

Answers

A mechanical device known as a catapult launches a projectile using stored energy and the forces which works on it are gravity, air resistance, and friction are among the more significant forces.

Both internal and exterior forces can be used to describe the forces operating on a catapult. The catapult's structure, including the tension in the ropes or the compression in the springs, produces internal forces.

The external forces are those that exert external pressure on the catapult, such as the projectile's mass and the wind's force. The tension in the ropes, which supplies the energy needed to propel the projectile, is the most significant force operating on a catapult.

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activation energy is best defined as the energy that ____

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Activation energy is best defined as the energy that "must be supplied to a chemical reaction to initiate or start it".

It is the minimum amount of energy that reactant molecules must possess to overcome the energy barrier and reach the transition state, where new bonds can form and products can be generated. The magnitude of the activation energy determines the rate of the chemical reaction. Higher activation energy means that fewer reactant molecules possess the necessary energy to reach the transition state, leading to slower reaction rates. Lower activation energy allows more molecules to overcome the energy barrier, leading to faster reaction rates. Catalysts can lower the activation energy of a reaction by providing an alternative pathway with a lower energy barrier, increasing the rate of the reaction.

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Where would you least expect to find an ionization nebula? a. in the halo. b. in the disk c.in the spiral arms. d. None of the above.

Answers

The ionization nebula would expected in the halo. (option A)

However, there are some locations in a galaxy where ionization nebulae are less likely to be found.

Similarly, in the disk of a galaxy, ionization nebulae are more common but may be less frequent in some areas due to variations in the density of gas and the distribution of hot stars.

By taking into account the density of gas and dust, the temperature and luminosity of hot stars, and other factors, scientists can predict where ionization nebulae are most likely to be found and how their distribution may vary across different types of galaxies.

In summary, while ionization nebulae are most commonly found in regions of active star formation, there are some locations in a galaxy where they are less likely to be found, such as in the halo or in areas with lower levels of gas and dust.

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A closed cylindrical tank filled with water has an hemispherical dome and is connected to an inverted piping system as shown in the figure. The liquid on the top part of the piping system has a specific gravity of .8 and the remaining parts of the system are filled with water. If the pressure gage reading at A is 60kPa determine.
- The pressure in pipe B
- The pressure head at the top of the dome (Point C)

Answers

The proposed fluid mechanics problem requires more information to compute the pressure in pipe B and the pressure head at Point C.

We must use the hydrostatic equation, the continuity equation, and the information about the specific gravity and pressure gauge reading provided in order to calculate for the pressure in pipe B and the pressure head at the top of the dome (Point C).

It is impossible to offer a conclusive solution to this issue without more details. The size of the tank and piping system, the height difference between various places, and the precise location and orientation of the pressure gauge are all details that would be necessary for a thorough estimate.

For this reason, further information is needed in order to solve the issue and determine the values for the pressure in pipe B and the pressure head at Point C.

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full question

A closed cylindrical tank filled with water has an hemispherical dome and is connected to an inverted piping system as shown in the figure. The liquid on the top part of the piping system has a specific gravity of .8 and the remaining parts of the system are filled with water. If the pressure gage reading at A is 60kPa determine.
- The pressure in pipe B
- The pressure head at the top of the dome (Point C)

significant destruction of a forest habitat will increase which gas in the atmosphere?

Answers

Significant destruction of forest habitat will increase : carbon dioxide.

What will happen when significant destruction of a forest habitat takes place?

When forests are cut down, much of stored carbon is released into the atmosphere as carbon dioxide (CO₂) and this is how deforestation and forest degradation contribute to global warming.

Forests and trees store carbon  and when they are degraded or completely cleared (a process referred to as deforestation), this stored carbon has the potential to be released back into atmosphere as carbon dioxide  and thus contribute to climate change.

Burning fossil fuels, in combination with destruction of carbon sinks due to deforestation and other activities contributes to more and more carbon dioxide building up in the atmosphere.

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two children have identical spring-loaded catapults, which contain springs with spring constant k. If Samir compresses the spring in his catapult by a distance x and Mona compresses hers by a distance 2x, hovw does the work they have done to compress their catapults compare? A. Mona has done 2 times as much work as Samir. B. Samir has done 2 times as much work as Mona. C. They have done the same amount of work. D. Mona has done 4 times as much work as Samir.

Answers

The correct answer is Mona has done 2 times as much work done as Samir i.e. option A is correct.

The work done to compress a spring by a distance x is given by the formula:

W = (1/2) kx²

where k is the spring constant.

Therefore, the work done by Samir to compress his spring by a distance x is:

W1 = (1/2) kx²

The work done by Mona to compress her spring by a distance 2x is:

W2 = (1/2) k(2x)² = (1/2) k(4x²) = 2(1/2) kx² = kx²

Therefore, the ratio of the work done by Mona to the work done by Samir is:

W2/W1 = (kx²)/[(1/2) kx²] = 2

So, Mona has done 2 times as much work as Samir.

Therefore, the correct answer is A. Mona has done 2 times work as much as done by Samir.

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What is the best way to bond electrical wire?

Answers

In general, the most prevalent ways of electrical wire bonding are:

Soldering, Wire nuts, Crimping, Terminal blocks, Heat shrink tubing.

Soldering is the process of melting a metal alloy, such as tin or lead, onto wires to form a permanent, low-resistance link. Soldering is frequently used to join fragile or thin wires.

Wire nuts are twist-on connectors that are often used for connecting wires. They are available in a variety of sizes to accommodate various wire gauges and may be quickly removed if necessary.

Crimping is the process of pressing a metal connection onto a wire using a specific tool to produce a strong bond. This technique is frequently utilised in automotive and maritime applications.

Terminal blocks are used to join together many wires. They are made up of a metal strip and screws that keep the wires in place.

Heat shrink tubing is a form of plastic tubing that contracts when heated. It is useful for insulating and protecting splices and connectors.

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How much work must josh do to run up a 7 m high flight of stairs in 5.5 s? Assume that
she is 65 kg.
(Show work please)

Answers

The work done by Josh in running up a 7 m high flight of stairs in 5.5 s, given that she has a mass of 65 Kg is 4459 J

How do I determine the work done by Josh?

Work is defined by the following formula:

Work = Force × distance

Where gravity applies, the work is defined as:

Work (W) = Mass (m) × acceleration due to gravity (g) × height (h)

The following data were obtained from the question

Height (h) = 7 metersMass of Josh (m) = 65 KgAcceleration due to gravity (g) = 9.8 m/s²Work done (W) =?

Using the above formula, we can obtain the work done by Josh as follow:

Work done (W) = Mass (m) × acceleration due to gravity (g) × height (h)

Work done = 65 × 9.8 × 7

Work done = 4459 J

Thus, we can conclude that the work done by Josh is 4459 J

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What factors are the most critical in determining whether a fossil is preserved?
A. the age of the fossil and the age of sediments in which it is preserved
B. the temperature of the granite and how fast it cooled
C. whether the creature had hard parts and how fast it was buried
D. the color of the original organism compared to the color of the sediments in which it is found
E. whether the creature was a predator or was prey

Answers

C. whether the creature had hard parts and how fast it was buried.

Preservation of Fossils

The process of turning an organism's remains into rock or into imprints inside sedimentary rock is known as fossil preservation. A fossilised dinosaur bone is not actually a bone when you look at it. You are staring at a rock that resembles a bone. Other minerals have displaced the minerals found in the bones of the dinosaur. Over millions of years, sedimentary material filled the voids and the bone transformed into rock.

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What temperature is 96 F in Celsius?

Answers

The temperature of 96 F in Celsius is 35.56 C

The physical concept of temperature indicates in numerical form how hot or cold something is. A thermometer is used to determine temperature.

The temperature conversion from Fahrenheit to Celsius can be done using the following formula: C = (F - 32) * 5/9, where C is the temperature in Celsius and F is the temperature in Fahrenheit.

To find the temperature in Celsius when given the temperature in Fahrenheit, we can plug in the given value of F into the formula and solve for C.

In this case, F = 96.

C = (96 - 32) * 5/9
C = 64 * 5/9
C = 35.56

Therefore, the temperature of 96 F in Celsius is 35.56 C.

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Please help with my homework :)

Answers

Answer:

λ = V T        S is distance between wavefronts, T is period of emitter

λ  = 3.00E8 m/s * 1 / 2.40E10 = .0125 m    

λ emitted by speed gun = .0125 m

But gun moves Vg * T     between wavefronts

λ' = λ - Vg T where λ' is wavelength received by stationary observer

One can calculate T' from 3.00E8 m/s the period seen by observer, that is the period measured by the observer is the speed of light divided by the wavelength received by the observer

Now if the observer is moving the wavelength observed by the observer is λ'' = λ'  - Vo T' since the observer will move a distance Vo T' between receiving wavefronts (T' has been calculated)

That is, the waves received by the tennis ball are shortened because of the motion of the tennis ball.

The  speed of the wave measured is always 3.00E8 m/s

Each different signal in a 1H NMR spectrum represents a different__________of hydrogen atom. Hydrogen atoms that are_______________give the same signal.------------------------------------

Answers

Each different signal in a 1H NMR spectrum represents a different type of hydrogen atom. Hydrogen atoms that are equivalent give the same signal.

What is spectrum?

In physics, the term "spectrum" refers to the variation in light intensity with wavelength or frequency. A spectroscope is a device created for visual spectral observation, while a spectrograph is a device that captures or maps spectra. Spectra can be categorized based on their types of origin, such as emission or absorption. All the radiations that are emitted by atoms or molecules make up an emission spectrum, whereas, in an absorption spectrum, some wavelengths of a continuous spectrum (light that contains all wavelengths) are absent because they have been absorbed by the medium through which the light has passed; these absent wavelengths are visible as dark lines or gaps.

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Calculate the de Broglie wavelength of a bullet of mass 25g moving with a velocity of 100ms â1

Answers

The de Broglie wavelength of the bullet is 2.65 x 10^-34 m.

What is wavelength?

Wavelength is a measure of the distance between two consecutive points of a wave. It is a physical quantity that is related to the frequency of a wave, where the frequency is the number of waves passing a given point in a given time period, usually measured as cycles per second or hertz. Wavelength is usually measured in meters, centimeters, or nanometers.

The de Broglie wavelength of a particle with mass m and velocity v is given by the equation; λ = h/mv where h is Planck's constant.
To calculate the de Broglie wavelength of the bullet, we first need to convert the mass of 25g to kilograms. This can be done by multiplying the mass by 0.001.
Therefore, the mass of the bullet is 0.025 kg.
Using the equation above, we can calculate the de Broglie wavelength of the bullet by substituting the values in the equation.
λ = (6.626*10^-34 Js)/(0.025 kg * 100 m/s)
λ = 2.65 x 10^-34 m
Therefore, the de Broglie wavelength of the bullet is 2.65 x 10^-34 m.

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The de Broglie wavelength of the bullet is[tex]2.65 \times 10^{-34} m.[/tex]

What is wavelength?

Wavelength is a measure of the distance between two consecutive points of a wave. It is a physical quantity that is related to the frequency of a wave, where the frequency is the number of waves passing a given point in a given time period, usually measured as cycles per second or hertz. Wavelength is usually measured in meters, centimeters, or nanometers.

The de Broglie wavelength of a particle with mass m and velocity v is given by the equation; λ = h/mv where h is Planck's constant.

To calculate the de Broglie wavelength of the bullet, we first need to convert the mass of 25g to kilograms. This can be done by multiplying the mass by 0.001.

Therefore, the mass of the bullet is 0.025 kg.

Using the equation above, we can calculate the de Broglie wavelength of the bullet by substituting the values in the equation.

[tex]\lambda =\frac{ (6.626\times 10^{-34} Js)}{(0.025 kg \times 100 m/s)} \\\lambda = 2.65 \times 10^{-34} m[/tex]

Therefore, the de Broglie wavelength of the bullet is[tex]2.65 \times 10^{-34} m.[/tex]

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suppose an asteroid orbiting the sun had an orbital period of 7.5 years. what would its orbital radius be?

Answers

Suppose an asteroid orbiting the sun had an orbital period of 7.5 years. 2.72 AU would its orbital radius be

Calculating the problem:

T² = k × R³

T = 7.5 years = 7.5 x 365.25 days/year = 2737.125 days

T = 2737.125 days x 24 hours/day x 60 minutes/hour x 60 seconds/minute = 2.29 x 10⁷ seconds

1 AU is the average distance between the Earth and the Sun.

R³ = T² / k

R = (T² / k)¹/³

R = (2.29 x 10⁷ s)² / k)¹/³

k = 4π² / (6.67 x 10⁻¹¹ m³ kg⁻¹ s⁻² * 1.989 x 10³⁰ kg) = 0.01720209895 x 10¹⁹ m³/s²

R = ((2.29 x 10⁷ s)² / 0.01720209895 x 10¹⁹ m³/s²)¹/³ = 2.72 AU

The amount of time it takes for an astronomical object to complete one orbit around another object is known as the orbital period (also called the revolution period). It typically refers to planets or asteroids that orbit the Sun, moons that orbit planets, exoplanets that orbit other stars, and binary stars in astronomy.

What influences the orbital period?

The distance a planet is from the Sun changes the speed of its orbit. The speed at which a planet moves and the strength of the Sun's gravitational pull on it increase with increasing distance from the Sun. The Sun's gravitational pull is weaker and its orbit moves more slowly the further away it is from the Sun.

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