You ride a roller coaster with a loop-the-loop.A) Compare the normal force that the seat exerts on you to the force that Earth exerts on you when you are passing the bottom of the loop. Express your answer in terms of R (radius of the loop), vb (speed at the bottom of the loop), and constant g.B) Compare the normal force that the seat exerts on you to the force that Earth exerts on you when you are passing the top of the loop. Express your answer in terms of R (radius of the loop), vt (speed at the top of the loop), and constant g.You ride a roller coaster with a loop-the-loop.A) Compare the normal force that the seat exerts on you to the force that Earth exerts on you when you are passing the bottom of the loop. Express your answer in terms of R (radius of the loop), vb (speed at the bottom of the loop), and constant g.Nbottommg =

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Answer 1

A) At bottom Normal force is minimum, so: [tex]Nbottom = mvb^2/R - mg[/tex] B) At top Normal force is maximum, so: [tex]Ntop = mvt^2/R + mg[/tex]

A) When you are passing the bottom of the loop, the normal force that the seat exerts on you can be compared to the force that Earth exerts on you. At the bottom of the loop, the net force on you is equal to the force of gravity, and it acts towards the center of the loop, providing the centripetal force required to keep you moving in a circular path.

The normal force, N, is the force exerted by the seat on you, perpendicular to the surface of the seat. The force of gravity, mg, acts vertically downwards. Therefore, we can write:

[tex]Nbottom + mg = Fnet = mvb^2/R[/tex]

where R : radius of the loop and vb : speed at the bottom of the loop.

At the bottom of the loop, the normal force is at a minimum, and it is equal to:

[tex]Nbottom = mvb^2/R - mg[/tex]

B) When you are passing the top of the loop, the normal force that the seat exerts on you can be compared to the force that Earth exerts on you. At the top of the loop, the net force on you is again equal to the force of gravity, but it acts downwards, providing the centripetal force required to keep you moving in a circular path.

The normal force, N, is still perpendicular to the surface of the seat. The force of gravity, mg, acts vertically downwards. Therefore, we can write:

[tex]Ntop + mg = Fnet = mvt^2/R[/tex]

where vt : speed at the top of the loop.

At the top of the loop, the normal force is at a maximum, and it is equal to:

[tex]Ntop = mvt^2/R + mg[/tex]

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Related Questions

Why the axis of the Earth is tilted?

Answers

The axis of the Earth is tilted because of the way it was formed and the forces acting upon it.

The most widely accepted theory is that the Earth was formed about 4.5 billion years ago from the solar nebula, a rotating disk of gas and dust that surrounded the young Sun. As the disk began to cool and contract, it flattened into a disk, and the Earth formed within it. The gravitational forces of the Sun and Moon acting on the Earth caused it to become slightly flattened at the poles and bulging at the equator, and this resulted in a tilting of the Earth's axis. The tilt of the Earth's axis has remained relatively constant over time, leading to the seasons we experience as the Earth orbits the Sun.

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What is created as a result of friction?
A. Bobbleheads
B. Gravity
C. Heat
D. Danger

Answers

C. Heat is the cause of friction.
It is C. Heat because of the friction is going on it starts to create this end of heat

What causes lightning?

Build up of electric charges in the clouds
Flow of electric charges among clouds
Light energy created in the clouds
Reflection of light by the clouds

Answers

Light energy created in the cloud

Listening occurs when your ears pick up sound waves being transmitted by a speaker. (True/False)

Answers

The given statement, listening occurs when your ears pick up sound waves being transmitted by a speaker. is true, beacuse the sound waves vibrate the eardrum, which in turn sends signals to the brain that are interpreted as sound.

Listening occurs when sound waves are transmitted by a speaker and picked up by the ears. Sound waves are mechanical waves that propagate through a medium, such as air, and cause pressure changes that the ear can detect. When the sound waves reach the ear, they cause the eardrum to vibrate, which then sets off a chain of events that ultimately lead to the generation of electrical signals in the auditory nerve.

These electrical signals are then transmitted to the brain, where they are interpreted as sound. Without the sound waves being transmitted by a speaker or some other sound source, there would be nothing for the ear to detect, and hence, no listening would occur.

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for object 1 to have a higher absolute temperature than object 2, object 1 must have a —

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For object 1 to have a higher absolute temperature than object 2, object 1 must have a greater amount of thermal energy. The temperature of an object is a measure of the average kinetic energy of its particles, meaning how fast its atoms and molecules are moving.

Temperature is a fundamental concept in physics that describes the degree of hotness or coldness of a body or a substance. It is a measure of the average kinetic energy of the molecules in a system.

In thermodynamics, the temperature is defined as the quantity that determines the direction of heat flow between two bodies in thermal contact. The temperature of a body is typically measured using a thermometer and is expressed in units of degrees Celsius, Fahrenheit, or Kelvin.

The Kelvin scale is the most commonly used scale in physics, as it is an absolute temperature scale that starts at absolute zero, the theoretical temperature at which all molecular motion stops. On the Kelvin scale, the freezing point of water is 273.15 K, and the boiling point is 373.15 K.

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PLEASE HURRY
two parallel plates of area 5.68*10^-3 m^2 have equal and opposite charges of 4.38*10^-11 C placed on them. what is the electric field between the plates?

Answers

The electric fields are generally produced by changing the magnetic fields or electric charges. The electric field between the plates of area 5.68 × 10⁻³ m² and opposite charges of 4.38 × 10⁻¹¹ C is 8.714 × 10⁻²⁶ N/C.

What is electric field?

The electric field can be defined as the electric force per unit charge. The electric field strength is usually measured in volt per meter. So its SI unit is V/m. The electric field is radially outwards from positive charge and radially in towards negative point charge.

The electric field between two parallel plates is:

E = Q / A × ε₀

Here  A = Area

Q = Charge

ε₀ = Permittivity of free space = 8.85 × 10⁻¹² C²/Nm²

Then,

E = 4.38 × 10⁻¹¹ C / 5.68 × 10⁻³ m² × 8.85 × 10⁻¹² C²/Nm²

= 8.714 × 10⁻²⁶ N/C

Thus the electric field between the plates is 8.714 × 10⁻²⁶ N/C.

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If a car is moving backward and has negative acceleration, what can be said about the speed of the car?

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If a car is moving backward and has negative acceleration, the speed of the car is slower.

Negative acceleration = slower speed or faster reverse.

What is the definition of Speed ​​?

Velocity defines the path of movement of a frame or object. Velocity is often a scalar quantity. Velocity is primarily the magnitude of the vector. Mile is the rate of change of distance. It is the responsibility of the trade of oppression.

What is acceleration?

Acceleration is defined as the change in object velocity over time. Acceleration is a vector term and requires both magnitude and direction to define it. Units of acceleration are m/sec², miles/sec², etc.

In a velocity versus time graph, acceleration is the slope of the curve.

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(49) If thelaborer in (48) climbed the ladder in 12.0 seconds, what was his power output?

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The power output of the laborer in (48) would be the work done (4,320 J) divided by the time taken (12.0 s) which is 360 W.

What is Power output?

Power output is the amount of power that a device, system, or organism is able to generate. It is typically measured in units of power such as watts, horsepower, or joules per second. Power output is a measure of how much energy a system is able to generate, and can be determined by dividing the work done by the system by the time it took to do it. Power output is important for understanding the capabilities of a particular device or system, as well as determining how much energy it will require to operate over a certain period of time.

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when you jump, you accelerate upward because the floor exerts an upward force on you. (True or False)

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This is an effective example of Newton's third law. Because of the upward push of the floor, you jump higher and faster. A force of 2,295.9 N is exerted on an airplane weighing 1,500 N while it is accelerated at 15 m/s2.

As we leap, the chemical energy in our muscles is transformed into kinetic energy, which exerts a force on the ground and, according to Newton's third law, causes a reaction that "pushes" us up—leading to the jump. Mass times leap distance equals the typical force that results. A person's center of mass may experience a force from their legs of 1200 N while moving 0.3 m upward during a jump. Gravity, which pulls everything down and causes the bungee jumper to fall, is the first force that the jumper encounters. Almost perfectly constant throughout the trip is the gravitational pull. The force of air resistance is another factor the bungee jumper encounters throughout the descent.

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a reaction has a rate constant of 1.25×10−4 s−1 at 28 ∘c and 0.230 s−1 at 78 ∘c .A. Determine the activation barrier for the reaction. B. What is the value of the rate constant at 16∘C ?

Answers

A. The activation barrier for the reaction is the difference between the rate constants at the two temperatures, which is 1.02×10−3 s−1.

What is the temperatures?

The temperature can vary greatly depending on the location. In general, temperatures can range from very hot to very cold. In tropical climates, temperatures can reach up to the mid-30s Celsius (mid-90s Fahrenheit). In colder climates, temperatures can dip down to below -30 Celsius (-22 Fahrenheit). Temperatures can also vary greatly depending on the season. In summer, temperatures can be much higher than in winter. In some areas, temperatures can also vary depending on altitude, with higher altitudes having cooler temperatures.

B. The value of the rate constant at 16∘C can be estimated using the Arrhenius equation, which is k = A e^(-Ea/RT), where A is the pre-exponential factor, Ea is the activation energy, R is the universal gas constant, and T is the temperature in Kelvin. Plugging in the values for the two known temperatures, we get A = 1.25×10−4 s−1 and Ea/R = (0.230-1.25×10−4)/(8.314*(78+273)) = 6806.4 K. We can then use the equation to compute the rate constant at 16∘C, which is 0.14×10−4 s−1.

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FILL IN THE BLANK. Because of the dangers associated with the open neutral (grounded conductor), nec 300. 13(b) does not permit the continuity of the ____ conductor to depend on a receptacle

Answers

The correct option is B. Because of the dangers associated with the open neutral (grounded conductor), NEC 300.13(B) does not permit the continuity of the grounded (neutral) conductor to depend on a receptacle.

In physics, a receptacle refers to a container or device that is used to collect, store, or contain a substance or energy. It can be a physical object such as a beaker, flask, or tank, or it can be an abstract concept such as a magnetic field that can store energy.

The properties and design of a receptacle depend on the nature of the substance or energy it contains. For example, a receptacle for storing a gas must be airtight, while a receptacle for storing a liquid must be watertight. In the case of energy, a receptacle may be designed to contain electromagnetic radiation or electric charge.

Receptacles play a crucial role in many areas of physics, from laboratory experiments to industrial processes. They enable scientists and engineers to safely collect and store substances and energy for further study or use. Without receptacles, much of modern physics research and technology would not be possible.

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Complete Question:

Because of the dangers associated with the open neutral (grounded conductor), NEC 300.13(B) does not permit the continuity of the ____ conductor to depend on a receptacle.

a. ungrounded

b. grounded (neutral)

c. both a and b

d. none of the above

what is the term for the amount of energy needed to raise the temperature of 1 kg of water by 1ºc?

Answers

A calorie is a term for the amount of energy needed to raise the temperature of 1 kg of water by 1ºc.

The calorie was originally defined as the amount of heat required at a pressure of 1 standard atmosphere to raise the temperature of 1 gram of water to 1° Celsius.

A calorie is a unit of heat energy, the International Table calorie originally defined it as 1/860 international watt-hour. It is used in engineering steam tables and is equal to 4.1868 joules.

For stating the heat content of the food the dietetics use kilocalories, i.e., the amount of heat energy that the food can yield as it passes through the body. The kilocalorie is simply called the calorie. The 15° calorie is mostly used in chemistry and physics; it is measured by maintaining 1-atmosphere pressure and heating a 1-gram water sample from 14.5°C to 15.5°C.

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An object is 6.0 cm in front of a converging lens with a focal length of 10 cm. Use ray tracing to determine the location of the image. Express your answer using two significant figures.

Answers

The rays tracing is used to determine the image location. And the location is found to be -15 cm.

The focal length is defined as the distance between one of the loci and the center of the lens. It is written by the expression as, [tex]\frac{1}{f}=\frac{1}{u}+\frac{1}{v}[/tex]. Here the distance of the image is denoted by v and distance of the object is denoted by u, and the focal length is denoted by f.

Given the distance of the object is 6 cm and the focal length is 10 cm. Then, the location of the image is calculated as follows,

[tex]\begin{aligned}\frac{1}{10}&=\frac{1}{6}+\frac{1}{v}\\\frac{1}{v}&=\frac{1}{10}-\frac{1}{6}\\v&=\frac{10 \times 6}{6-10}\\&=-15\end{aligned}[/tex]

The required answer is -15 cm and the image is upright and virtual.

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if you weigh 100 kg on earth, approximately how much would you weigh on the moon?

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From the given data, if you weigh 100 kg on earth, then you would weigh about 16.7 kg on the Moon.

The gravitational acceleration on the surface of the Moon is about 1/6th of the gravitational acceleration on the surface of Earth. Therefore, if you weigh 100 kg on Earth, you would weigh approximately 16.7 kg on the Moon.

This calculation can be done using the formula:

Weight on Moon = Weight on Earth x (Gravity on Moon / Gravity on Earth)

Weight on Moon = 100 kg x (1.62 m/s² / 9.81 m/s²)

Weight on Moon = 16.7 kg

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At the beginning of her fall does the skydiver have an acceleration? No, the skydiverfalls at a constant speed Yes and her acceleration is directed upward Yes and her acceleration is directed downward

Answers

No, the skydiver descends continuously. Absolutely, and she is accelerating higher. Absolutely, and she is accelerating downward.

What is Drag Force?

Whenever we look, there is the drag force. In a ball of fluids, we survive (air and water). Any time there is motion in a fluid, such as air, water, or another one, drag forces become present. Drag forces are resistive forces that are present when things move through fluids (a gas or a liquid). Always acting in opposition to fluid flow is the drag force. Aerodynamic drag is the motion of the body in the fluid-like air. Moreover, it is known as hydrodynamic drag if the fluid is water. Fast cars are made and constructed as sleek as possible to reduce the effect of drag force.

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jeff has night vision goggles and can see people and animals even if it is pitch black outside. what type of electromagnetic wave does jeff use to make his goggles work?

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Jeff’s night vision goggles use infrared (IR) radiation to allow him to see in the dark. Infrared is a form of light that is not visible to the human eye.

This allows Jeff to see people and animals even if it is pitch black outside. IR waves are also used for many other applications such as heat sensing, surveillance, and medical imaging. It is part of the electromagnetic spectrum, which is made up of different types of light. IR radiation is emitted by all objects with a temperature above absolute zero. Jeff’s night vision goggles have a special lens which captures the infrared radiation and sends it to a sensor. This sensor then converts the infrared radiation into an image and displays it on a monitor. The goggles also have an infrared illuminator, which emits a beam of IR radiation that can help to light up the scene for improved visibility.

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What is the conversion of 97.6 f to c ?

Answers

97.6 °F is equivalent to 36.44 °C (rounded to two decimal places).

To convert a temperature from Fahrenheit (°F) to Celsius (°C), we can use the following formula:

°C = (°F - 32) × 5/9

where °F is the temperature in Fahrenheit and

°C is the temperature in Celsius.

Substituting the given temperature, we have:

°C = (97.6 - 32) × 5/9

°C = 65.6 × 5/9

°C = 36.44

Temperature is a physical measure that quantifies our feelings of hotness and coolness.

A thermometer is used to measure temperature.

Thermometers are calibrated in a variety of temperature scales that have traditionally been defined by various reference points and thermometric substances.

The most prevalent scales are the Celsius scale (previously known as centigrade), the Fahrenheit scale (°F), and the Kelvin scale (K), with the latter being used mostly for scientific reasons.

The kelvin is one of the International System of Units' seven basic units (SI).

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The diagram below shows the orbit of a satellite around the Sun.
At which point does the satellite have the least gravitational potential energy?

A. Point C
B. Point A
C. Point B
D. Point D

Answers

The point C is the point where the satellite would have the least gravitational potential energy

What is meant by gravitational potential energy?

Gravitational potential energy is the energy that an object possesses by virtue of its position in a gravitational field. It is defined as the energy that an object has due to its height above a reference level in a gravitational field, such as the Earth's gravitational field.

The gravitational potential energy of an object is directly proportional to its mass, the acceleration due to gravity, and its height above the reference level. When an object is raised to a higher altitude, it gains potential energy, which can be converted into kinetic energy as it falls back down to a lower altitude. This potential energy is a form of stored energy that can be converted into other forms of energy, such as kinetic energy, thermal energy, or electrical energy, depending on the type of system in which the object is located.

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Questionis the measurement of the pull of gravity on an object.AMassBWeightCVolume

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Weight is the measurement of the pull of gravity on an object. Weight is a measure of the amount of force an object experiences due to gravity.

This force is measured in units such as Newtons (N) or kilograms (kg). A heavier object will experience a greater force of gravity than a lighter object. The force of gravity on an object is determined by its mass and the acceleration due to gravity, which is a constant. Therefore, the heavier an object is, the greater the force of gravity on it, and the heavier its weight. It is the force with which the Earth or any other gravitational field pulls objects towards itself. Weight is different from mass, which is the measure of the quantity of matter in an object.

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Which change will occur in a system with increasing entropy? A Thermal energy will increase B. Mechanical energy will increase C Elastic potential energy will decrease D Gravitational potential energy will decrease

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Option A Thermal energy will increase is a change that will occur in a system with increasing entropy.

Why does thermal energy increase in a system with increasing entropy?

Thermal energy increases in a system with increasing entropy because this energy is a measure f the movement of the particles which is directly associated with the chaotic state of the matter and therefore also with entropy, a measurement of the chaos in the universe.

Therefore, with this data, we can see that thermal energy increases in a system with increasing entropy due to chaos.

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what is the term for a beam of light containing waves that are aligned in the same direction?

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A beam of light containing waves that are aligned in the same direction is called polarized light.

Polarization of light is a property that applies to turning waves that shows the geometrical blooming of the oscillations. In a turning wave, the way of the oscillation is ninety degrees of the motion of the wave. Plane polarized light has the two waves in which the way of vibration is similar for all waves. In circular polarization, the electric vector turns about the way of straight light as the wave progresses. If you glow a beam of polarized moonlight that is chromated light (light of only the one frequency – in different words a similar color) through a solution of a metamorphic active substance,  the light that comes out,  its plane of polarization is seen to have rotating or turning around. The rotating body may be clockwise or anti-clockwise.

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the number of times the heart beats in a minute

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Adults typically have a resting heart rate between 60 and 100 beats per minute. A lower resting heart rate typically indicates improved cardiovascular fitness and more effective cardiac function.

What use does it serve to keep your heart rate between 60 and 100 beats per minute?

Depending on the individual, a typical resting heart rate ranges from 60 to 100 beats per minute. Your heart can pump more blood with each contraction when it is healthy and functioning at a lower resting heart rate since it doesn't have to work as hard to keep a regular beat.

What is the typical resting heart rate, and why does it drop significantly when you sleep?

Your heart rate changes throughout the day depending on your degree of activity and your mood. While sleep can lower heart rate, stress and activity can boost it. When sleeping, a typical heart rate is frequently between 40 and 50 beats per minute (bpm),

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a ceramic rod that is 10 cm long has a thermal expansion coefficient of 8 x 10-5 °c-1. what percent strain elongation does the rod undergo when it undergoes a temperature increase of 1000°c?

Answers

0.8 percent strain elongation does the rod undergo when it undergoes a temperature increase of 1000°c

As per given information;

Thermal expansion coefficient = [tex]8\times10^{-5}[/tex]°[tex]C^{-1}[/tex]

The original length of the rod = 10 cm

change in temperature =  1000°c

The change in length of the ceramic rod ΔL can be calculated using the formula:

ΔL = α * L * ΔT

where:

α = thermal expansion coefficient

L = original length of the rod

ΔT = change in temperature

By placing in the values given in the problem,

we get:

ΔL = ([tex]8\times10^{-5}[/tex]°[tex]C^{-1}[/tex]) * (10 cm) * (1000 °C)

ΔL = 0.08 cm

By using the formula we can calculate the percent strain elongation (ε) :

ε = (ΔL / L) * 100%

where:

ΔL denotes a change in the length of the rod

L denotes the original length of the rod

By plugging in the values, we get:

ε = (0.08 cm / 10 cm) * 100%

ε = 0.8%

Therefore, the ceramic rod undergoes a percent strain elongation of 0.8% when it undergoes a temperature increase of 1000°C.

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what are the four quantum numbers for each of the two electrons in a 4s orbital?

Answers

The n = 4, l = 0, m = 0 and s = +1/2 are the four quantum numbers for each of the two electrons in a 4s orbital.

What is quantum numbers?

The angular quantum number governs how the orbital is shaped (l). The best descriptions of orbital shapes are spherical (l = 0), polar (l = 1), or cloverleaf (l = 2). Much more complex geometries can be assumed as the angular quantum number increases.

What is electrons ?

The negatively charged atom's electrons are responsible for this. An atom's total negative charge, which is produced by all of its electrons, counteracts the positive charge of the protons in the atomic nucleus.

Therefore, n = 4, l = 0, m = 0 and s = +1/2 are the four quantum numbers for each of the two electrons in a 4s orbital.

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how to change in velocity to acceleration

Answers

Acceleration is the rate of change of velocity over time, and it is calculated by dividing the change in velocity by the time taken for the change to occur.

To change velocity to acceleration, the initial velocity and final velocity must be known, as well as the time taken for the change to occur.

The formula for acceleration is given by:

a = (v_f - v_i) / t

where a is acceleration, v_f is final velocity, v_i is initial velocity, and t is the time taken for the change in velocity to occur.

For example, if an object initially travels at 10 meters per second and then accelerates to a final velocity of 20 meters per second over a period of 5 seconds, the acceleration can be calculated as follows:

a = (20 - 10) / 5 = 2 meters per second squared

Therefore, the acceleration of the object is 2 meters per second squared.

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54. 7 of HCl gas is dissolved to make 1L of solution what is the molarity of the solution

Answers

The molarity of the solution is 1.496 M.

To find the molarity of a solution, you need to use the formula Molarity = moles of solute / liters of solution.

First, you need to find the moles of solute (HCl gas) in the solution. You can do this by using the formula moles = mass / molar mass.

The molar mass of HCl gas is 36.5 g/mol.

So, the moles of HCl gas in the solution is:

moles = 54.7 g / 36.5 g/mol = 1.496 mol

Next, you need to find the liters of solution. The question states that there is 1L of solution, so this is already given to you.

Finally, you can plug in the values you found for moles of solute and liters of solution into the formula for molarity:

Molarity = 1.496 mol / 1 L = 1.496 M

So, the molarity of the solution is 1.496 M.

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how do you find average velocity calculator?

Answers

The formula to calculate the average velocity is

average velocity = (change in displacement) / (change in time)

To use this formula, follow these steps:

Determine the starting and ending points of the motion for which you want to find the average velocity.

Calculate the displacement, which is the distance between the ending and starting points. If the motion is in a straight line, the displacement is simply the difference between the final and initial positions.

Measure the time interval during which the displacement occurred. This can be the difference between the ending and starting times. Substitute the values for the change in displacement and change in time into the formula and solve for the average velocity.

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Two 4.0cm×4.0cm metal electrodes are spaced 1.0 mmapart and connected by wires to the terminals of a 9.0 V battery.A.) What is the charge on each electrode? _pCB.) What is the potential difference between electrodes? _VC.) The wires are disconnected, and insulated handles are used to pull the plates apart to a new spacing of 2.0 mm .What is the charge on each electrode? _pCd.) What is the potential difference between electrodes? _V

Answers

Each electrode has a charge of 1.2672 x 10-9 C, and there is a potential difference of 9.0 V between the electrodes.

The wires are cut off, and the plates are pulled apart with insulated grips to a new spacing of 2.0 mm. How charged are the electrodes?

The charge is 6.336 x 10-9 C on each electrode when the plates are moved apart to a new separation of 2.0 mm.

What is the potential difference between electrodes?

The potential difference between the electrodes is 9.0 V when the plates are separated by a new 2.0 mm distance.

The charge on each electrode is 1.2672 x 10-9 C, and the potential difference between the electrodes is 9.0 V when the electrodes are initially spaced 1.0 mm apart and linked to a 9.0 V battery. The charge on each electrode remains constant, but the capacitance changes, creating a new potential difference of 9.0 V if the electrodes are then moved apart to a new spacing of 2.0 mm with the cables cut off. In this instance, each electrode has a charge of 6.336 x 10-9 C. Based on the link between charge, capacitance, and potential difference as well as the fundamentals of capacitance, these calculations.

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the amount of gravitational force that acts on a space vehicle while in earth orbit is

Answers

The amount of gravitational force that acts on a space vehicle while in earth orbit is almost zero but not absolute zero.

There is no ground force or opposing natural force to gravity.

Because the earth is not a perfect sphere, the value of "g" is lowest at the equator. At the equator, its radius is at its largest. Thus, the equator is the location where g will be smallest according to the equation

g = GM/R2.

All items in the planet's gravitational field will be lost in space if gravity abruptly vanishes. We would experience levity. Essentially, if gravity is equal to zero, then there will be no acceleration caused by gravity.

Astronauts can float within their spaceship or outside during a spacewalk in microgravity. Moving heavy stuff is simple. Astronauts, for instance, can merely use their fingertips to manipulate machinery weighing hundreds of pounds.

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To what extent is the flow of water analogous to the flow of charge? What is NOT a correct hydrodynamic analog? a. resistance - viscosity times function of geometry b. Capacitor - water storage tankc. pressure difference - voltage d. Pump - battery e. charge - volume flow rate

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b. Capacitor - water storage and d. Pump - battery are NOT hydrodynamic analog.

The flow of water is analogous to the flow of charge in that both involve a pressure difference. In both cases, a pressure difference causes the fluid or charge to move from an area of higher pressure to an area of lower pressure. The capacitor is not a correct hydrodynamic analog, as it is an electrical component that stores energy, whereas a water storage tank is a physical structure that holds a certain volume of water. The pump is also not a correct hydrodynamic analog, as a pump is a mechanical device that creates pressure at a certain rate, whereas a battery is an electrical device that produces an electric current.

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