Calculate the magnitude of gravitational force between two 1-kilogram masses separated center to center by 1 meter.

Answers

Answer 1

When two objects of equal mass are maintained at a distance of one meter apart, their gravitational pull is equal to 6.67*10^(-11).

The gravitational force (F) must be calculated using the equation shown below. All objects with mass are drawn toward one another by the gravitational attraction, whose strength is directly proportional to the masses of the two objects and inversely proportional to the square of their separation from one another.

As a result, the only remaining unit is newtons, or meters kilograms per second squared. Therefore, there is a 1.98 x 10^(-20) newton gravitational force between the Earth and the Moon.

Here r= 1, both masses m1=m2= 1

Magnitude F= 6.67*10^(-11)

[tex]F= Gmm/r^{2} \\G= 6.67*10^{-11}[/tex]

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Related Questions

a sample of blood is placed in a centrifuge of radius .15 m. the mass of a red corpuscle is 3.0 x 10-16 kg, and the magnitude of the force required to make it settle out of the plasma is 4.0 x 10-11 n. what does the angular speed need to be?

Answers

A red corpuscle mass 3.0 10-16 kg, and 4.0 10-11 N of force is necessary for it to pull away from the plasma. Angle of rotation = = /t.

What does it mean in mass?

In physics, mass is a statistical expression of inertia, a basic characteristic of all matter. It essentially refers to a body of matter's resistance to changing its speed or location in response to the administration of a force.

What do mass and an example mean?

The sum of matter that makes up every object or body is the greatest way to understand mass. Everything that we can see has mass. For instance, even air has mass, as does a table, a desk, your sofa, a game, a glass, etc.

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A 175 kg motorcycle has 6.8 x 10 *4 j of kinetic energy how fast is it going

Answers

Answer:

[tex]K.E. =1/2mv^2\\6.8*10^4=1/2*175*v^2\\777.14=v^2\\v=27.87 m/s[/tex]

Kinetic energy is the energy possessed by a body due to its motion.

Two pieces of clay collide and stick together moving in one dimension. Clay 1 has a mass of 2,100 grams, and a clay 2 has a mass of 2,500 grams. Clay 1 has an initial velocity of 20 m/s immediately before they have a perfectly inelastic collision.

What is the final velocity of the two pieces of clay immediately after the collision?
a. 3.7 m/s
b. -3.7 m/s
c. 15 m/s
d.-15 m/s

Answers

The common velocity of clay 1 and clay 2 is 15 m/s. Option C

What is an inelastic collision?

We know that a collision can be said to be inelastic when the momentum and the kinetic energy are not conserved. This implies that rather than having the objects move out in different directions, the objects would rather stick together and just move in the same direction.

In this case we would also need the law of the conservation of linear momentum. Recall that according to this law, the momentum before collision  would just be the same as the momentum after Collison.

Thus;

Momentum before collision = momentum after Collison

(2100 * 20) + (2500 * 0) = (2100 + 2500)v

Where v is the common velocity

v = 42000/4600

v =  15 m/s

Thus they would have the common velocity of 15 m/s

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A 3.0 nc charge at x-0 cm and a -1.o nc charge is at x-4 cm. At what point or points on the x-axis is the electric potential zero?

Answers

At -6cm from small charge on the x-axis is the electric potential zero.

What is electric potential?

Electric potential is the effort required to move a unit charge from one point to another while battling an electric field. Though any location outside the range of the electric field charge can be used, Earth is typically used as the reference point.

The diagram depicts the forces acting on a positive charge (q) that is situated between two plates (A and B) of an electric field (E). To move the charge from plate A to plate B, an equal and opposite force (F′ = qE) must be applied because the electric force F exerted by the field on the positive charge is F = qE. The work W required to move the positive charge over a distance d is W = F′d = qEd.

Two unlike charges are separated by a distance d two zero potentials points are obtained one between the charges(x)

and other out side nearer the small charge(y)

here  

x = d/((q2/q1)+1)  

And

d = 4cm,

q1 = 3,

q2 = -1

x=4/(1/3)+1=3cm

y=d(/q2/q1)-1)

then    

y = 4/(1/3)-1

  = -6cm from small charge

Thus, at -6cm from small charge on the x-axis is the electric potential zero.

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centripetal force a 200 g ball is moving in a horizontal circle at 5 m/s. the tension in the string is 5n. (don't forget: mass in kg a. which force is providing necessary centripetal force to keep stone moving in circular motion? b. how much is centripetal force? c. how long is the string? (fc

Answers

The force applied to an item in curvilinear motion that is pointed at the center of rotation or the center of curvature is known as a centripetal force. Mass* centripetal acceleration is used to determine

How can this problem be solved?

The provided ball weighs 0.35kg.

Given is a centripetal acceleration of 5 m/s2.

The centripetal force's magnitude must be determined.

Calculation

Centripetal force = mass*centripetal acceleration

                             = 0.35*5

                             =  1.75N

Hence , the centripetal force is 1.75N

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what phenomenon occurs when light passes through a glass plate with parallel, microscopic grooves on it?

Answers

Diffraction is the phenomenon occurs when light passes through a glass plate with parallel, microscopic grooves on it.

When light travels through a diffraction grating, which is made up of numerous parallel slits that are evenly spaced apart, an intriguing thing happens. A very similar interference pattern to that produced by a double slit is produced.

A diffraction grating is an optical component that separates (disperse) light made up of a variety of wavelengths (such as white light) into its individual wavelength components. The most basic kind of grating has a lot of parallel slits that are widely separated from one another.

Diffraction gratings are optical components that split polychromatic light into its underlying constituent wavelengths in instruments like spectrometers.

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A 5.0 kg dog sits on the floor of an elevator that is accelerating downward at 1.20 m/s2. What is the magnitude of the normal force by the elevator on the dog. Your answer will be in Newtons

Answers

The net force on the dog is given by:

fnet = fgravity + felevator

As the elevator is accelerating downward, the net force is equal to the gravitational force minus the force by the elevator. So:

felevator = m x a

where m is the mass of the dog (5.0 kg) and a is the acceleration of the elevator (1.20 m/s^2).

So, fnet = m x g - m x a

fnet = |m x g - m x a| = |5.0 kg * 9.8 m/s^2 - 5.0 kg * 1.20 m/s^2| = 49 N

So the magnitude of the normal force by the elevator on the dog is 49 N.

What happens to the person if elevator accelerates downward?

When the elevator accelerates downward the apparent weight of the man becomes zero. This is because of the reason that both the man and the lift are moving downwards with the same acceleration 'g' and so there is no force of action and reaction between them.

Define the term acceleration?

Acceleration is the rate at which velocity alters with time, in terms of speed and direction. A point or an object proceeding in a straight line is accelerated if it speeds up or slows down.

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A kangaroo can jump over an object 2.23 m high. a. Calculate its vertical speed when it leaves the ground.

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A kangaroo can jump over an object 2.23 m high, its vertical speed when it leaves the ground is about 6.7m/s.

What is vertical speed?

The rate at which an aeroplane rises or descends is known as its vertical airspeed. They both differ in terms of ground speed. Tracking the aircraft's rate of rise, or vertical airspeed, is done by monitoring the rate of descent, also known as the sink rate, which measures how quickly the aircraft is sinking. A projectile's vertical motion, which varies by 9.8 m/s2 every second, is independent of its horizontal motion.

If u is the starting velocity and v is the ending velocity, then

v² = u² + 2gs

0= u²-2(9.8) (2.23)

u²= 4.6(9.8)

u² = 45.08

u = 6.7m/s.

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net work w would accelerate an object of mass m to velocity v. what net work is needed to accelerate an object of mass 2m from rest to velocity v?

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Net work done 2w is needed to accelerate an object of mass 2m from rest to velocity v.

What is work done?

The force that is required to move a thing a specific distance is referred to as the work done. Essentially, it is a measurement of the amount of energy that is transmitted to or from an item so that it can be moved. The result of the displace and or the component of such force applied of the particle in the displacement direction is the definition of the work performed by a force. Work is accomplished when we remove a block with a few force; the body moves more quickly. Work completed is noted as.

as we know that work done = 1/2 mv^2

as we double the m then work done will aslo become double because work done is directly proportional to the mass .

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Calculate thc work that must be done on charges brought from infinity to charge & spherical shell of radius R" 0.1OO m to & total charge Q-125 mc 502 J B) 602 J C) 702 ] D) 802 J E) 902 J

Answers

The work that must be done on charges brought from infinity to a spherical shell of radius R = 0.100 m and total charge Q = 125 mc is 602J. Hence, option B is the correct answer to this question.

To calculate the work that must be done on charges brought from infinity to a spherical shell of radius R, we can use the formula for the electric potential energy, which is given by U = kq1q2/r

Where k is the Coulomb constant, q1 and q2 are the charges, and r is the distance between the charges.

In this case, the work done on a single charge of q = Q/n, where Q is the total charge on the shell and n is the number of charges, brought from infinity to a distance of r = R from the center of the spherical shell is given by:

W = qU = q(kq/R) = kq^2/R

Since the total charge on the spherical shell is Q = 125 mc and the radius of the shell is R = 0.100 m, the work done on each charge is:

W = kq^2/R = (8.99x10^9 N.m^2/C^2)(125x10^-6 C)^2/(0.100 m) = 602 J

Therefore, the work that must be done on charges brought from infinity to a spherical shell of radius R = 0.100 m and total charge Q = 125 mc is 602 J.

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Calculate the change in decibels ( Δβ2, Δβ4, and Δβ8) corresponding to m=2, m=4, and m=8. Give your answers, separated by commas, to the nearest integer--this will give an accuracy of 20%, which is good enough for sound.

Answers

The answer is 6, 8, 10, respectively, to the nearest integer.

What is integer?

An integer is a whole number (not a fraction) that can be positive, negative, or zero. Examples of integers include -5, 0, 2, 4, 7, 10, and 124. Integers are often used to count, label, or measure. Some programming languages use integers to represent different data types.

The change in decibels is calculated using the formula  Δβm = 10log10(m). Therefore, Δβ2 = 10log10(2) = 6.02 dB, Δβ4 = 10log10(4) = 8.04 dB, and Δβ8 = 10log10(8) = 10.06 dB. Therefore, the answer is 6, 8, 10, respectively, to the nearest integer.

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The change in decibels ( Δβ2, Δβ4, and Δβ8) corresponding to m=2, m=4, and m=8 is 3.0103 dB, 6.0206 dB, 9.03 dB respectively.

What is change is decibels?

A change in decibels (dB) is a measure of the relative change in sound or electrical power level. A change of 3 dB is considered a small change in level, while a change of 10 dB is considered a significant change. It is important to note that dB is a logarithmic unit, meaning that a change of 10 dB represents a ten-fold increase or decrease in power level. For example, an increase of 10 dB in sound level is equivalent to a ten-fold increase in the sound's power, while a decrease of 10 dB represents a ten-fold decrease in the sound's power.

To calculate the change in decibels (Δβ) corresponding to a change in the magnitude of the sound (m), we use the formula:

Δβ = 10 * log10(m)

where m is the ratio of the new sound pressure level to the original sound pressure level.

For m = 2:

Δβ2 = 10 * log10(2) = 3.0103 dB

For m = 4:

Δβ4 = 10 * log10(4) = 6.0206 dB

For m = 8:

Δβ8 = 10 * log10(8) = 9.03 dB

So the change in decibels corresponding to m=2, m=4, and m=8 is 3, 6, 9 dB respectively, rounded to the nearest integer.

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a 4.0 m long thin rod is pinned so that it spins about its center. the rod has a rotational inertia of 8.0 kg m2 about this center. the rod has two 3.0 kg masses attached at each end. what force f must be applied to one end to make the system rotate with an angular acceleration of 4.0 rad/s2 about its center? group of answer choices 64 n 18 n 48 n 32 n 27 n

Answers

The 48n force f must be applied to one end to make the system rotate with an angular acceleration of 4.0 rad/s2 about its center.

What is force ?

The pushing or pulling that modifies the velocity of a mass object is what is meant by the notion of force. An outside force has the ability to change a body's resting or moving status. It moves and has a size.

What is acceleration ?

Acceleration is the change in speed that occurs quickly. Generally speaking, but not always, acceleration denotes a shift in speed. Even while it travels in a circular motion, an object's velocity direction is changing, thus it keeps gaining speed.

Therefore, 48n force f must be applied to one end to make the system rotate with an angular acceleration of 4.0 rad/s2 about its center.

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The moon's mass is 7.4×1022kg and it orbits 3.8×108m from the earth with a period of 27.3 days.
What is the angular momentum of the moon around the earth?
Express your answer using two significant figures.

Answers

The angular momentum of the moon around the earth is 2.84 × 10³⁴ kgm²/sec, if the mass of the moon is 7.4 × 10²² kg.

Mass of the moon, M = 7.4 × 10²² kg

Radius of the orbital path, R = 3.8 × 10⁸ m

Time period of of one rotation, T = (27.3×86400) = 2.36 × 10⁶ seconds

Angular velocity, ω = 2π/T

ω = (2×3.14)/(2.36 × 10⁶) =  2.66 × 10⁻⁶ rad/sec

Moment of inertia of the moon around the earth, I = M×r²

I = 7.4 × 10²² × (3.8 × 10⁸)²

I = 1.068 × 10⁴⁰ kg-m²

Angular momentum of the moon, U = I × ω

= 1.068 × 10⁴⁰ × (2.66 × 10⁻⁶)

= 2.84 × 10³⁴ kg-m²/sec

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Burning fossil fuels does not substantially impact the amount of carbon in
the atmosphere over time.
O True
O False

Answers

Answer: False.

Explanation:

Over the last century, burning of fossil fuels like coal and oil has increased the concentration of atmospheric carbon dioxide (CO2). This increase happens because the coal or oil burning process combines carbon with oxygen in the air to make CO2.

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Identify the heat transfer method involved when wind is blowing heat from the fire towards a stand of thick brush.

Answers

The heat transfer method involved when the wind is blowing the heat from the fire towards the stand of the thick brush is called convection.

Convection transfers heat by moving liquids or gases. Wildfires typically produce rising columns of gas accompanied by sparks, embers, and burning twigs. These convection columns move downwind of the firefront and carry the embers that serve as the starting point for the fire. This movement of heat energy away from the ground by vertical air movement is called "free convection" or "natural convection." Hot air balloons rise because warm air/wind is less dense than cold air.

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A clear, colorless, crystalline solid is heated. A pale yellow-green gas is given off and a shiny, malleable metal was left behind.

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When a crystalline solid that is transparent, colorless, and heated. A chemical shift is seen when a light yellow-green gas is released and a glossy, malleable metal is left behind.

Chemical synthesis, or, alternatively, chemical breakdown into two or more separate molecules, occurs when one material reacts with another to create a new substance. These processes are referred to as chemical reactions, and they are often irreversible barring additional chemical reactions. Exothermic processes are those that generate heat; endothermic reactions, on the other hand, are those that may need heat in order to proceed. The science of chemistry places a lot of emphasis on comprehending chemical changes.

A clear, colorless, crystalline solid is heated. A pale yellow-green gas is given off and a shiny, malleable metal was left behind is an example of chemical change.

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An electron is projected with an initial speed into the uniform field between two parallel plates (Fig. E21.27). Assume that the field between the plates is uniform and directed vertically downward and that the field outside the plates is zero. The electron enters the field at a point midway between the plates. (a) If the electron just misses the upper plate as it emerges from the field, find the magnitude of the electric field. (b) Suppose that the electron in Fig. E21.27 is replaced by a proton with the same initial speed Would the proton hit one of the plates

Answers

The magnitude of the electric field is found to be 364N/c.

What does a consistent electric field look like between two parallel plates?

That's because the distance between the plates is assumed to be very small in comparison to their combined area, the electric field between parallel plates is uniform and nearly constant. Due to the interplay of the two plates' fields, the field is roughly zero outside of the plates. Equation E = V/d can be used to determine the magnitude of this type of homogeneous electric field because the field lines are parallel to one another.

y- direction = 0.005m

x direction t 2m distance => vo = 1.6 x 10^6m/s

Time of flight => t = 2m/1.6 x 10^6m/s

                 => 1.25 x 10^-8 s

y=voy t + 1/2 a t^2

0.005 = 1/2 a (1.25 x 10^-8 )^2

a=> 6.4 x 10^13m/s2

a = F/m = eE/mof electron

   => 9.1 x 10^-32 x 6.4 x 10^13 m/s2/ 1.6 x 10^-19C

 => 364N/c

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hree point charges are arranged on a line. charge and is at the origin. charge and is at charge is at what is (magnitude and sign) if the net force on is zero?

Answers

Q₁ (magnitude and sign) if the net force on q₃ is zero if the three point charges are arranged in a line. Charge q₃ = +5.00 nC and is at the origin. Charge q₂ = -3.50 nC and is at x = 5.00 cm. The charge q₁ is at x = 2.50 cm = 0.75 x 10⁻⁹ C (positive)

The electrostatic force between two charges:

F = k (q₁q₂) / r²

q₁ = x = 2.50 cm

q₂ = at position x = 5.00 cm (negative)

q₃ = at position x = 0 (positive)

By mandating that the vector sum of the two forces be zero, we can determine the charge's magnitude. Therefore:

F₁₃ + F₂₃ = 0

= {k (q₁q₂) / r²} + {k (q₁q₂) / r²} = 0

= Hence,

q₁ = - (-3 x 10⁻⁹) (2² / 4²)

= 0.75 x 10⁻⁹ C ⇒ positive

The question is incomplete, it should be:

Three point charges are arranged on a line. Charge q3 = +5.00 nC and is at the origin. Charge q2 = -3.50 nC and is at x = 5.00 cm . Charge q1 is at x = 2.50 cm . What is q1 (magnitude and sign) if the net force on q3 is zero?

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The truncated right circular cone below has a large base radius 8 cm and a small base radius of 4 cm. The height of the truncated cone is 6 cm. The volume of this solid is $n \pi$ cubic cm, where $n$ is an integer. What is $n$

Answers

According to the information, we can infer that the volume of this solid is 703.7 cm³.

How to calculate the volume of this solid?

To calculate the volume of this solid we have to use the following formula and know this data (both base radius and height). So, if we read the statement, we can find all the neccesary information to complete this task.

Information:

Large base radius: 8cmSmall base radius: 4cmHeight: 6 cm

To use the formula, we have to replace values of R and r (R represents large base radius and r represents small base radius).

Formula:

V = pi * ( height / 3 )  ( R²  + Rr  + r²)     V = 3.1416 * (6/3) (8² + 8*4 + 4²)V = Pi * (2) (64 + 32 + 16)V = 2Pi * 112V = 224 * Pi cm³V = 703.7 cm³

According to the above, the volume of this solid is 703.3 cm³.

Note: This question is incomplete because there is some information missing. Here is the complete information:

Attached image

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Two runners start at the same point and jog at a constant speed along a straight path. runner a starts at
time t = 0s, and runner b starts at time t = 2.5 s. the runners both reach a distance 64 m from the starting
point at time t = 25 s.
if the runners continue at the same speeds, how far from the starting point will each be at time t = 45 s?

options:
runner a's distance will be 115.2 m, and runner b's distance will be 120.7 m.
o runner a's distance will be 64 m, and runner b's distance will be 71 m.
o runner a's distance will be 115.2 m, and runner b's distance will be 133.65 m.
runner a's distance will be 64 m, and runner b's distance will be 133.65 m

Answers

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A) runner a's distance will be 115.2 m, and runner b's distance will be 120.7 m.

What is distance?

Distance is a numerical measurement of how far apart two objects or points are from one another. Distance can be measured in a variety of ways including miles, kilometers, feet, and meters.

To solve this problem, we need to use the equation d = rt, where d is the distance, r is the rate, and t is the time. Since both runners are running at a constant speed, we can assume the rate (r) is the same for both.
We can calculate the rate by using the information that both runners were 64 m away from the starting point after 25 s. We can plug this information into the equation to get:
64 m = r * 25 s
Solving for r, we get:
r = 2.56 m/s
Now that we have the rate, we can plug it into the equation to calculate the distances for both runners at time t = 45 s.
For runner a (who started at t = 0s), the distance will be:
d = 2.56 m/s * 45 s
d = 115.2 m
For runner b (who started at t = 2.5 s), the distance will be:
d = 2.56 m/s * 42.5 s
d = 120.7 m

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the air in an inflated balloon (defined as a system of government) is warmed over a toaster and absorbs 125 j id heat. as ir does 79 kj of work. what is the change in internal energy for the system

Answers

The change in internal energy of the air in the inflated balloon (defined as the governing system) is heated over a toaster and absorbs 125J of heat. As it expands, it does 78 kJ of work = - 78,875 J

Energy cannot be generated or destroyed; instead, it can only be transformed from one form to another, according to the basic law of thermodynamics.

The formula:

ΔE = q + w

ΔE = the internal energy (J)

q = heat added/taken away (J)

w = the system's or its own work (J)

The system absorbed heat since it was already warm, so:

q = positive.

It worked because the gas expanded, so:

w = negative.

ΔE = q + w

= 125 J + (-79 x 10³ J)

= - 78,875 J

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g objects and possessions can become viewed as part of the self when individuals are able to exercise power and control over them in much the same way as they control the actions of an arm or a leg describes what?

Answers

This describes the concept of self-extension. When individuals are able to exercise power and control over objects and possessions, they may begin to view these things as extensions of themselves.

What impact do possessions have on a person's sense of self?

We may understand and express our self-identity through our possessions. When opportunities for receiving external validation of self are scarce, as can be the case as a result of institutionalization, for the elderly, things serve as crucial archives of memories of one's self-identity in the past.

What type of self-concept considers possessions to be the natural extensions of the self?

William James claimed that the things, places, or even persons that carry the label "my" are what make up the material self. These things are seen as extensions of people's identities. For instance, your clothing, which you refer to as "my wardrobe," expresses certain facets of your personality.

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Which of the following is true about the electron configurations of the noble gases?1. The highest occupied s and p sublevels are completely filled.2. The highest occupied s and p sublevels are partially filled.3. The electrons which the highest energy are in a d sublevel.4. The electrons with the highest energy are in an f sublevel.

Answers

The noble gases have completely filled s and p sublevels and no electrons in d or f sublevels.

What is noble gases?

Noble gases are a group of elements in the periodic table located in group 18. They are also known as rare gases due to their low reactivity. The noble gases consist of helium, neon, argon, krypton, xenon, and radon. Helium is the lightest and most abundant noble gas in the atmosphere, while radon is the heaviest and least abundant. These gases are colorless, odorless, and tasteless. They are generally unreactive and do not form compounds with other elements. This is because their outermost electron shells are filled and therefore they do not gain or lose electrons easily. Noble gases are used in many everyday applications, such as fluorescent lighting, welding, and cooling systems. They are also used in the medical field as an anesthetic and in certain industrial processes.

1. The highest occupied s and p sublevels are completely filled. - TRUE
2. The highest occupied s and p sublevels are partially filled. - FALSE
3. The electrons which the highest energy are in a d sublevel. - FALSE
4. The electrons with the highest energy are in an f sublevel. - FALSE

The noble gases have completely filled s and p sublevels and no electrons in d or f sublevels.


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It is sometimes said that if infinitely many planets existed, then every possible planet would have to exist, including, for instance, a planet exactly like Earth, except with unicorns. Is this necessarily true

Answers

In a limitless cosmos, there would therefore be an endless number all galaxies and planets. However, in an infinite world, there could only be finite amount if there was an infinitesimal likelihood that something would occur.

Which planet is the most brilliant?

The biggest planet in own Solar System, Venus, can be viewed from Earth without the use of a telescope. Due to its constant and dazzling presence, Venus was granted the names "evening star" and "morning star."

The hottest planet is...

Venus is the warmest planet within our solar system, with global temps hot enough to melt lead, thanks to its thick atmosphere that traps heat and causes a runaway greenhouse effect. Venus is around 700 degrees Fahrenheit (390 degrees Celsius) warmer that it would be without the greenhouse effect.

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A sinusoidal wave of frequency 500 Hz has a speed of 350 m/s. (a How far apart are two points that differ in phase by pi/3 rad? (b) What is the phase difference between two displacements at a certain point at times 1.00 ms apart?

Answers

(a) To find the distance between two points that differ in phase by π/3 radians, we can use the wavelength of the wave, which is given by the speed of the wave divided by the frequency:

Wavelength = Speed of wave / Frequency

Given that the frequency is 500 Hz, the wavelength is:

Wavelength = 350 m/s / 500 Hz = 0.7 m

The phase difference between the two points is equal to the difference in the phase of the wave at these points. The phase difference in radians is given by the product of the wave number and the distance between the points.

The wave number is equal to 2pi/wavelength, so:

k = 2π / wavelength = 2*π / 0.7 m = 8.6 rad/m

The distance between the two points that differ in phase by pi/3 rad is given by:

Distance = π/3 / k = π/3 / 8.6 rad/m = 0.035 m

(b) To find the phase difference between two displacements at a certain point at times 1.00 ms apart, we can use the angular frequency of the wave, which is given by the product of 2π and the frequency:

ω = 2π * frequency = 2π * 500 Hz = 3141.59 rad/s

The phase difference between two displacements at a certain point at times 1.00 ms apart is given by the product of the angular frequency and the time interval.

Given that the time interval is 1.00 ms = 0.001 s, the phase difference is:

Δφ = ω * time interval = 3141.59 rad/s * 0.001 s = 3.14 rad

Therefore, the phase difference between two displacements at a certain point at times 1.00 ms apart is 3.14 rad.

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Disturbance that transfers energy from one place to another? A.waveB.energyC.vacuums

Answers

A disturbance that transfers energy from one place to another is known as a wave. Option A is the correct answer.

What is a wave?

This refers to a disturbance that transfers energy from one place to another. A wave can take the form of elastic deformation, a variation of pressure, electric or magnetic intensity, electric potential, or temperature. Waves are of different types namely:

sound waveswater wavesElectromagnetic waves.Mechanical wavesLongitudinal wavesTransverse waves

Properties of wave

The main properties of wave include:

Amplitude wavelength FrequencySpeedPeriod

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A birdbath is designed to overflow so that it will be self-cleaning. Water flows in at the rate of 20 milliliters per minute and drains at the rate of 18 milliliters per minute. One of these graphs shows the volume of water in the birdbath during the filling time and continuing into the overflow time. Which one is it

Answers

The correct graph is option A. This graph shows the volume of water in the birdbath over time, starting from the moment when water begins to flow in.


What is graph?

A graph is a visual representation of data or information, typically used to display patterns or relationships between different elements. It is made up of points, or nodes, which are connected by lines, arcs, or edges. Graphs can be used to represent mathematical relationships, physical distances, and other types of data such as networks, hierarchies, and geographical locations. Graphs are useful for visualizing complex information, and can help us gain insight into the data that would be difficult to understand from tables or spreadsheets alone.

The change in the water volume has a net gain of

20-18=2 mm/min

The birdbath's volume increases at a constant rate until it reaches its maximum and starts overflowing to keep a constant volume.

This is best represented by the graph A.

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Determine the terminal voltage of each battery in the figure. Part A Determine the terminal voltage of top battery. Express your answer to two significant figures and include the appropriate units. 1 of 1 Figure r = 2.0 22 M4 8 = 18 V Vierminal < R= 6.622 P = 1.092 Submit Recuest Answer &= 12v Part B Determine the terminal voltage of bottom battery Express your answer to two significant figures and include the appropriate units.

Answers

Terminal voltage of top battery and bottom battery are found to be 13.82V and 10.43V.

What are internal resistance and terminal voltage?

The terminal voltage of a cell is the potential difference between its electrodes when current is extracted from it. The internal resistance of the cell is the resistance provided to the flow of electric current through it by the electrolyte inside.

Terminal voltage of top battery:

current I = 18/(2+6.6)

   => 2.09A

Terminal voltage = E - Ir

                          => 18 - (2.09 x 2)

                        = 13.82V

Terminal voltage of bottom battery:

current I = 12-(1+6.6) = 1.57A

Terminal voltage = 12 - (1.57 x 1)

                  => 10.43V

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what mass flow (in kg/d) of ammonium-n passes by any point in the lake after these two sources have become mixed?

Answers

The mass flow of ammonium-n passed by any point in the lake after the two sources have become mixed depends on the combined rate of release from the sources.

What is the mass ?

The amount of matter that makes up a thing is measured by its mass.. It is typically measured in kilograms or grams and is an important quantity in physics and chemistry. Mass is different from weight, which is a measure of the force of gravity on an object. Mass is an intrinsic property of an object, meaning it is independent of the object's environment. Mass is conserved, meaning it cannot be created or destroyed, only changed through physical or chemical reactions.

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one hundred joules of heat is added to a gas, and the gas expands at constant pressure. is it possible that the internal energy increases by 200 j? account for your answer with the aid of the first law of thermodynamics.

Answers

When the vapors expanded, the work was always positive, hence the energy is even less than 100 jewels. Therefore, this scenario is not plausible.

How much energy is one joule?

What is 1 J worth? It is sufficient to raise the temperature of a kilogram of water by one degree Celsius. A cup of coffee may be heated from ambient temperature to 50°C in roughly 12,000 J. A joule is therefore not a large amount of energy.

What other way can you express a joule?

In addition, one joule is equal to one watts of electricity radiated or lost each second. A developed SI unit of power is the joule. In addition to one megawatt second, one joule is also equal to 107 aerobic workouts, 0.2390 calories, and 0.738 foot-pound. The emblem of

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