the figure(figure 1) shows a particle of mass m at distance x along the axis of a very thin ring of mass m and radius r. calculate the gravitational potential energy of these two masses. use what you know about the relationship between force and potential energy to find the magnitude of the gravitational force on m when it is at position x>0 .

Answers

Answer 1

Gravitational potential energy of these two masses is -2GM ((√r²+x²)-x)

                                                                                               

What is gravitational potential energy?

Potential energy is accumulated as a result of the work required to displace a mass (m) from infinity to a position inside the gravitational field of a source mass (M) without accelerating it. These are referred to as gravitational potential energies. The sign Ug is used to denote it.

We are aware that a body's stored energy in a certain position is what is meant by the term potential energy of a body. The change in potential energy is equal to the amount of work done on the body by the applied external forces if the body's position changes as a result of the application of those forces.

Let's break the disc into small rings

dm− mass of the ring,

So. dm=2πrdr× M

​                          πr²

So, potential dP=   −Gdm      

​                                  √(x² +r²)

So, dP= G.2πxtanϕxsec 2 ϕdϕ

​                      (x√( 1+tan 2 ϕ )) πr²

⇒P=  −2GMx   ∫ tan  (R/x)  tanϕsecϕdϕ              

            r²        

⇒P= −2GMx      {1−        1                  }

            r²                cos(tan 2 (R/x))

 ⇒P=      -2GM((√r²+x²)-x)

                    r²

Hence, gravitational potential energy of these two masses is -2GM((√r²+x²)-x)

   r²

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Related Questions

If we were to characterize how good a material is as an insulator by its resistance to dissipating charge, which of the following two materials is the better insulator? Dry Soil: epsilon_r = 2.5, sigma = 10^-4 (S/m) Fresh Water: epsilon_r = 80, sigma = 10^-3 (S/m)

Answers

Fresh water is better material for insulation than dry soil.

The electrons in water are bound by chemical bonds and are therefore unable to take part in conduction. Materials that effectively conduct heat are known as excellent conductors, whereas those that do not are known as bad conductors or insulators. This makes water an insulator.

Given data,

Dry soil ε[tex]_r[/tex] = 2.5, σ =[tex]10^-^4[/tex] s/m

Fresh water ε[tex]_r[/tex] = 80, σ =[tex]10^-^3[/tex] s/m

To test which is a good insulator first we need to calculate the value of Relaxation time constant. Relaxation time constant is given by,

τ[tex]_r[/tex]=ε/σ

Relaxation time constant of Dry soil is:

τ[tex]_r[/tex]=ε/σ

=2.5/[tex]10^-^4[/tex]

=2.5x[tex]10^4[/tex]s

Relaxation time constant of Fresh water is:

τ[tex]_r[/tex]=ε/σ

=80/[tex]10^-^3[/tex]

=8x[tex]10^4[/tex]s

The relaxation time constant is high for Fresh water. Hence, it takes more time to dissipate the charge.

Fresh water is better material for insulation than dry soil.

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the force exerted by the road on each tire of an accelerating car question 4 options: is less than the combined force of all four tires on the road. equals the combined force of all four tires on the road. is more than the combined force of all four tires on the road. noneof the above.

Answers

The force exerted by the road on each tire of an accelerating car is less than the combined force of all four tires on the road.

In mechanics, a force is any action that has the potential to change, maintain, or deform a body's motion. The three principles of motion outlined by Isaac Newton in his Principia Mathematica are frequently used to illustrate the idea of force (1687). Newton's first law states that a body at rest or moving uniformly in a straight line will stay in that state until a force is applied to it. According to the second law, a body will accelerate (change in velocity) in the direction of any external force acting on it. The amount of acceleration is directly related to the amount of external force.

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Based on current evidence, decide whether each of the following statements apply to the concept of dark matter, dark energy, both, or neither. Drag each statement into the appropriate bin. Reset Help the universe contains more of this than it contains matter made from atoms "dark" because it emits only infrared has mass blocks light from stars behind it inferred to exist from the measured acceleration of the universe's expansion the proposed source of a universal repulsive force likely to consist of tiny, weakly interacting particles most common form of mass in the halo of the Milky Way Galaxy detected through its gravitational attraction we do not know what it is made of Dark Matter (only) Both Dark Matter and Dark Energy Dark Energy (only) Neither Dark Matter nor Dark Energy

Answers

The statements which apply to the concept of dark matter, dark energy, both, or neither is A)Reset help the universe contains more of this than it contains matter made from atoms "dark" because it emits only infrared.

Dark matter is a speculative type of issue remembered to represent roughly 85% of the matter in the universe. Dark matter is classified "dim" on the grounds that it doesn't seem to communicate with the electromagnetic field, and that implies it doesn't retain, reflect, or transmit electromagnetic radiation and is, in this manner, hard to recognize.

Different astrophysical perceptions - including gravitational impacts which can't be made sense of by right now acknowledged hypotheses of gravity except if more matter is available than should be visible - infer dull matter's presence. Consequently, most specialists imagine that dull matter is plentiful in the universe and has affected its construction and evolution.

The essential proof for dark matter comes from computations showing that numerous cosmic systems would act contrastingly on the off chance that they didn't contain a lot of concealed matter.

Hence, correct option is A.

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(Complete question) is:

Based on current evidence, decide whether each of the following statements apply to the concept of dark matter, dark energy, both, or neither. Drag each statement into the appropriate bin.

A) Reset Help the universe contains more of this than it contains matter made from atoms "dark" because it emits only infrared has mass blocks light from stars behind it inferred

B)to exist from the measured acceleration of the universe's expansion the proposed source of a universal repulsive force likely to consist of tiny.

C)weakly interacting particles most common form of mass in the halo of the Milky Way Galaxy detected through its gravitational attraction we do not know what it is made of Dark Matter (only)

A 60-kg person riding a bike puts all her weight on each pedal when climbing a hill. The pedals rotate in a circle of radius 16 cm. Part A What is the maximum torque she exerts? Express your answer to two significant figures. VO AEO ...] ? T= m.N

Answers

The maximum torque is 94.08 Nm and the rider can increase this by putting the leg on the edge of the paddle.  

Torque is defined as the force that causes the rotation of an object on an axis. It is measured in Nm.

Mass of the person = m = 60 Kg

Radius of the circle = r = 16 cm = 0.16 m

Force = F = mg

Torque = t =

= t = F X r X sinθ

= t = mg X r X sinθ

= t = 60 X 9.8 X 0.16

= t = 94.08 Nm

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A charged particle moves in a circular path in a uniform magnetic field.
Which of the following would increase the period of the particle's motion?
Check all that apply.
Increasing its charge
Increasing its mass
Increasing the field strength
Increasing its speed

Answers

A charged particle moves in a circular path in uniform magnetic field, then following would increase the period of the particle's motion: Increasing its charge and Increasing the field strength.

What would increase the period of the motion of particle?

For charged particle moving in circular path in uniform magnetic field, centripetal force is provided by magnetic force,

q v B = mv²/r

Here, q is  charge, v is velocity and B is magnetic field

m is mass, r is  radius of the orbit

The period of the motion is given as :

T= 2πr/v

Substituting value of T in previous equation.

Now, q v B= m Tv³/2π

Hence, T= 2πq B/mv²

Here, we can clearly see that the period is: directly proportional to the charge and the magnetic field but inversely proportional to mass and square of the speed.

Therefore, increasing its charge and the field strength will increase the period of the particle's motion.

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a 4.0 kg object moving at 6.0 m/s encounters a 20 n resistive force over a duration of 0.20s. the momentum change (magnitude only) experienced by this object is approximately ns.

Answers

The momentum change experienced by the given object is approximately is  4 N/s .

What is Momentum Change ?

The term momentum change is defined the change in the product of an object's mass and velocity.

A force is required for changing momentum of an object. This force applied can increase or decrease momentum and can even change the object's direction .

given that ;

mass of moving object is ⇒ 4 Kg ,

velocity of the moving object is ⇒ 6 m/s ,

the force = 20N .

time for which the force is applied is = 0.20 s .

Now , By Newton's Second Law ,

"the time rate of momentum change  is directly proportional to the force applied on the object ".

So , momentum change is = 20 × 0.20

= 4 Ns .

Therefore , the momentum change is 4Ns .

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Place the events involved in generation of an action potential in the correct order of occurrence from left to right : Hyperpolarization K+ channels close; Na+ channels close K+ channels open; Threshold stimulus Na channels open; Na influx Depolarization; K+ efflux Repolarization

Answers

4, 2, 1, 5, 3 ;Threshold stimulus, Na+ channels open, Na+ influx, depolarization, Na+ channels close, K+ channels open, K+ efflux, repolarization,. Hyperpolarization, K+ channels close.

The gated sodium ion channels on the neuron's membrane quickly open during the depolarization phase, letting sodium ions (Na+) from the outside flood inside the cell. The nerve's intrinsic charge shifts from -70 mV to -55 mV as the sodium ions enter the cell fast. Depolarization is when an internal change in a cell results in a shift in the distribution of electric charges, leaving the cell with a less negative charge than the surrounding area. Depolarization is essential for several cell processes, cell-cell communication, and general organism physiology. A rise in membrane potential is referred to as depolarization. In other words, as sodium ions enter the intracellular fluid due to the opening of voltage-gated sodium cations, the membrane potential increases.

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A particle a traveling along the positive x axis of frame S with speed 0.5c decays into two identical particles, a b b, both of which continue to travel on the x axis. (a) Given that ma = 2.5mb, find the speed of either b particle in the rest frame of particle a. (b) By making the necessary transformation on the result of part (a), find the velocities of the two b particles in the original frame S.

Answers

The speed of either b particle in the rest frame of particle by making the nevessory transformation is √1 - 4m²/M² C.

Average velocity is a measure of total displacement divided by total time. The total displacement is the distance between the start and endpoints. Since the car moves from point A at both the start and end points the total displacement is zero and the average velocity is also zero.

Calculation:-

Ub1 = √1 - 4m²/M² C

Ub2 = - √1 - 4m²/M² C

Velocity is the distance traveled per unit of time, the speed of movement. The speed of a car traveling on a smooth, flat section of a highway without traffic congestion is constant and not zero. Acceleration is the rate of change of velocity. The reason is simple. Velocity is the percentage of time an object moves along a path and Velocity is the speed and direction of an object's movement.

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the wind speed is 200 km/h air density is 1.3 kg/m^3 estimate the force of the wind on an adult standing facing the wind

Answers

The force of the wind on an adult standing facing the wind will be 518.4 Newtons if the wind speed is 200 km/h and the air density is 1.3 kg/m³.

To calculate the force of the wind on an adult standing facing the wind, you can employ the following formula:

Force (in Newtons) = 0.00256 × wind speed(in km/h)² × surface area(in m²) × air density(in kg/m³)

According to the given question, wind speed is 200 km/h, the air density is 1.3 kg/m³, and we'll assume the adult has a surface area of 1.8 m². Putting these values in the formula we get:

Force = 0.00256 × 200² × 1.8 × 1.3

= 0.00256 × 40000 × 1.8 × 1.3

= 256 × 1.8 × 1.3

= 518.4 Newtons

So, the force of the wind on an adult standing facing the wind will be 518.4 Newtons if the wind speed is 200 Km/h and the air density is 1.3 kg/m³.

This is a rough estimate, as the actual force of the wind on an adult will rely on varied aspects such as the shape of their body, the angle at which they are encountering the wind, and the kind of clothing they are wearing.

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part h find the capacitor charge when the current has half the value that you found in part e. express your answer with the appropriate units.

Answers

The capacitor charge when the current has half the value is 3.175 uc.

Describe the capacitor.

An electrical component known as a capacitor uses a battery to draw power and stores it. The terminals inside are connected to two metal plates that are spaced apart by a non-conducting material. A capacitor swiftly releases electricity after activation in a very little period of time.

At this point, the capacitor charge will be:

E= 1.739 x [tex]10^{-8}[/tex] J

Qc= [tex]\sqrt{2. 1.739. 10^{-8}. 290. 10^{-6} }[/tex]

Qc= 3.175 x [tex]10^{-6}[/tex]

=3.175 uC

Therefore, the capacitor charge when the current has half the value is 3.175 uc.

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Complete question:

An L-C circuit consists of_ 60.0 mH inductor and 250 pF capacitor The initial charge on the capacitor is 6.00 pC and the initial current in the inductor is 0.600 mA.

Part H Find the capacitor charge when the current has half the value that you found in part E_ Express your answer with the appropriate units.


(a) Stone A leaves the player's hand with a velocity of 2.90 m/s.
The mass of stone A is 17 kg.
(i) State the formula linking momentum, mass and velocity.

(ii) Show that the momentum of stone A is approximately 50 kg m/s.
(1)
(2)

Answers

Answer:

(a)(i) momentum(kg m/s) = mass x velocity
p=mv

(a)(ii) 17 x 2.90 = 49.3

49.3 is approximately 50 kg m/s

Explanation: mass of stone A is 17 kg and the velocity of stone A is 2.90 m/s. To find momentum is to times mass and velocity.

Using the concepts of impulse and momentum, describe how to win a water balloon contest by not breaking the balloon.
Requirements:
o Focus on the catch.
o You must mention how momentum, impulse, force and impact time play a part in the catch.
o You may use diagrams to support your reasoning.
o Remember the equation: ∆p = m∆v = F∆t

Answers

Answer:

Below

Explanation:

To win a water balloon contest without breaking the balloon, you must focus on the catch. Momentum, impulse, force, and impact time all play a crucial role in the success of the catch.

The key to catching a water balloon without breaking it is to minimize the impact force on the balloon. The impact force is determined by the momentum of the balloon, the impulse applied to the balloon, and the impact time.

Momentum is the product of an object's mass and velocity. In this case, the water balloon has a certain mass and velocity as it is thrown towards you. The greater the momentum of the balloon, the harder it will be to catch it without breaking it.

Impulse is the product of the force applied to an object and the time over which that force is applied. When catching a water balloon, you must apply an impulse to the balloon in order to stop it. The greater the impulse, the more effectively you will be able to stop the balloon.

The key to catching a water balloon without breaking it is to apply a large impulse to the balloon over a short period of time. This will minimize the impact force on the balloon and prevent it from breaking.

To do this, you must pay careful attention to the movement of the balloon as it is thrown towards you. As the balloon approaches, you must quickly move your hand to intercept it and apply an impulse to stop it. This can be done by cupping your hand and applying a gentle but firm push to the balloon as it hits your hand.

By applying the right amount of impulse over a short period of time, you can effectively stop the balloon and prevent it from breaking. This will allow you to win the water balloon contest without breaking the balloon.

In summary, to win a water balloon contest without breaking the balloon, you must focus on the catch. Pay attention to the movement of the balloon and apply an impulse to stop it over a short period of time. This will minimize the impact force on the balloon and prevent it from breaking.

a) calculate i) the gain (vout/vin) of the op-amp (without c1), and ii) the gain (vout/vin) of the op-amp with c1 paralleled with r2. include your calculation in the report.

Answers

The negative sine is because current flows from input to output, but as in current flows from output to input is - 10 V/V.

Calculation:-

1. V in - 0 / 10 = - 10v/V

Therefore Vout / V in = - 10 V/V

2. V in - 0 / 10 = - 10v/V + 0 - V out / 20 sn

therefore V out / V in = - 1/ 0.1 + 200 ns.

Note that for practical signal scaling, an inverting amplifier can have a gain of less than 1, while a non-inverting amplifier must have a gain of at least 1. you'll need to power the op-amp with V+ and V- to have enough range to comfortably accommodate the expected signal output.

The formula for the output voltage Vout also shows that the circuit is linear for the fixed gain of the amplifier since Vout = Vin x gain. This property is very useful for converting small sensor signals into larger voltages.

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what average net force is required to accelerate an 8kg bicycle to a speed of 6.2m/s in 5s?

Answers

The  average net force required to accelerate an 8kg bicycle to a speed of 6.2m/s in 5s is 9.92 Newton.

What is force?

The definition of force in physics is: The push or pull on a massed object changes its velocity.

An external force is an agent that has the power to alter the resting or moving condition of a body. It has a direction and a magnitude.

Given that:  mass of the bicycle: m = 8 kg.

Final speed : v = 6.2 m/s.

Time interval: t = 5 s.

Hence, average net force applied on it = change in momentum/time interval

= 8 kg × 6.2 m/s/5 s

= 9.92 Newton.

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when discussing gravitational force, do we look at the distance between the edges of objects, or the distance between their centers

Answers

The distance between two masses is measured between their edges, from their centers, or from one mass's edge to its center.

What do mean by gravitational?

This moon's gravitational pull causes water tides to fluctuate over time. strong movement or propensity towards something or someone, whether inherent or external: The reasons why they are drawn to destructive behavior have been the subject of extensive inquiry.

What is gravitational and example?

This term force of gravity refers to the force that the earth exerts on a body. Such examples include the downward motion of water in a river, its downward motion of a ball thrown into the air, and also the downward motion of the fruits and leaves that fall from a tree towards the ground.

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an object with height 0.85 cm is placed a distance 19.75 cm in front of a convex mirror with focal length -6.25 cm,removedde6d0d485ec413711a4e98afe87284678ac0bba70217810ba692cdd66aafdf8cremoved 2m68-57-20-4f-a59d-29897 20% part (a) calculate and enter a value for the magnitude of the distance between the image and the mirror given the values in problem statement. |di||di|

Answers

The distance between the image and the mirror is -4.63 cm.

The mirror equation is given by,

1/u + 1/v = 1/f

where, u is the distance to the object = 17.95 cm

v is the distance to the image

f is the focal length = -6.25 cm

Placing the values in the equation, we have

1/17.95 + 1/v = -1/6.25

1/v = -1/6.25 - 1/17.95

1/v = - 0.16 - 0.056

1/v = - 0.216

v = -4.63 cm ( minus sign indicates that the image is behind the mirror and it is virtual)

Thus, the image distance is -4.63 cm.

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The electric potential, which is a scalar field, may be represented graphically by equipotential curves. The lines of electric field may be obtained from those equipotentials.
Several points have been indicated with black dots on the diagram below. Consider the direction of the electric field at each of those points, and drag the best-choice arrow label, or the E=0, if appropriate, to the corresponding bucket.

Answers

While the region with the lowest electric potential (20 V) will have the highest electric field, the region with the highest electric potential (80 V and 70 V) will also have the highest electric field.

Equipotential curves: what are they?

Relationship between electric potential and electric field

E = V/d

where;

V is electric potential (V)

E is electric field (V/m)

d is the distance (m)

A two-dimensional curve where a function's value is constant. Isarithm, isopleth, and contour line are other names that are equivalent.

A location with a high electric potential (80 V or 70 V) will have a high electric field, whereas a region with a low electric potential (20 V) will have a low electric field since electric field and electric potential are directly proportional.

Describe the electric field.

The field that surrounds electrically charged particles and pulls on all other charged particles in the field is known as the electric field.

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-The Kepler Conjecture: this quantity is maximized for HCP and FCC crystals
-Reciprocal: specific volume
-It is the ratio between kinematic and dynamic velocity
-Melting point line has a negative slope when this is greater for liquids than for solids

Answers

According to the Kepler Conjecture, this amount is maximal for crystals of HCP and FCC. This is the reciprocal of a certain volume, and it represents density as the ratio of kinematic to dynamic velocity.

The Kepler conjecture is a mathematical theory involving sphere packing in three-dimensional Euclidean space, and it is named after the 17th-century mathematician and astronomer Johannes Kepler. A planet's orbits around the sun are accurately described by Kepler's third law in terms of their period and distance. According to Kepler's Laws of Planetary Motion, planets move in elliptical orbits with the Sun as their point of focus, cover the same amount of space in the same amount of time regardless of where they are in their orbit, and have orbital periods that are proportional to their distance from the Sun.

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PLS HELP URGENT A moon orbits a planet as shown above.
The moon has a mass 0.66 x 1022 kg and the gravitational field strength at distance R is 0.0012 N/kg. What is the magnitude of the gravitational force exerted by the planet onto the moon while it is in orbit of radius R?
Type your answer in scientific notation with two decimal places. Example: 1.23*10^4

Answers

The "magnitude of the gravitational force exerted by the planet onto the moon" (whew!) is just the moon's weight.

Weight = m•g ...... We know both of these

(0.66 x 10^22 kg) • (0.0012 N/kg) =

7.92 x 10^18 Newtons

discovery of mineral perchlorate on mars by the phoenix lander was significant because group of answer choices

Answers

The lander discovered falling snow and soil chemistry that has important implications for life. The largest finding of perchlorate, a substance on Earth that may be poisonous to certain organisms while providing nourishment for others.

What is the real name of Earth?

Contrary to popular belief, Earth is not known by a recognized international name. "A common misinterpretation of the civilization's scientific name is "Terra." Earth is the planet's commonly used name in English, especially in science.

What are the specifics of Earth?

Soil, air, liquid, and life are the components of Earth. There are flat areas, valleys, and mountains on the earth. The air is made up of many gases, mostly nitrogen and oxygen. Rain, snow, ice, rivers, lakes, seas, and streams are all forms of water.

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consider a string of length 1.0 meter, fixed at both ends, with mass 100 grams and tension 100 newtons.

Answers

Mass is an intrinsic property of a body. It turned into traditionally believed to be related to the quantity of being counted in a physical body until the discovery of the atom and particle physics.

‘The wavelength of the wave shape on the string is,

1”

31.6 ms

‘95 Hz

If one antinode is formed on the string, then the duration of the string is,

=0.3328 m

2

If two antinodes are formed, then the length of the string is,

“4

allow 7 to be the number of antinodes shaped.

io)

a

_2(1.0m)

© 0.3328 m

Normally, nodes form at both ends of the string. as a result, the range of nodes formed is

Usually extra than one this is the number of nodes fashioned is 6+1=7.

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The specific heat capacities of F2(g), Cl2(g), Br2 (g), and I2 (g) are 0.824, 0.478, 0.225, and 0.145 JK^-1 g^-1, respectively. Compute the molar heat capacities of these elements and identify any periodic trend. If there is a trend, use it to predict the molar heat capacity of astatine, At2(g).

Answers

F2(g)  = 31.2296, Cl2(g) = 16.9212, Br2 (g) = 35.955, I2 (g) = 18.4005.  There is a trend the molar heat capacity of astatine, At2(g) is 167.8 J/molk

Molar heat capacity = At. wt. × specific heat.

Molar heat capacity

F2(g) = 0.824 × 37.9 = 31.2296

Cl2(g = 0.478 × 35.4 = 16.9212

Br2 (g) = 0.225 × 159.8 = 35.955

I2 (g) = 0.145 × 126.90 = 18.4005

There is a trend the molar heat capacity of astatine, At2(g) is 167.8 J/mol.k
A substance's molar heat capacity is the amount of heat needed to elevate a single mole of it by one degree Kelvin. [2] While measuring per mole rather than per gram of substance, molar heat capacity is quite comparable to specific heat capacity. Molar heat capacity (which doesn't change depending on how much substance is there) is an intense property. Joule per mole per Kelvin is the molar heat capacity SI unit. Heat capacity is the amount of energy needed to raise the temperature of a given quantity of material by one degree Celsius. One gram of a substance's heat capacity is referred to as its specific heat capacity (or specific heat), whereas one mole of a substance's heat capacity is referred to as its molar heat capacity.

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suppose a cylindrical solenoid of radius r and turns per length n has a clockwise current that decreases according to the function i

Answers

Due to the unit current being passed through the first coil, mutual inductance is FLUX induced in the second coil.

Let me represent the larger coil's current. the magnetic field (B) there in

B = μ₀n i where n is the number of turns per unit length.

B = μ₀ (N / L) i

Magnetic flux associated with small coil placed near its axis

Flux(Ф)= B X πR² X N

Flux(Ф) =μ₀ (N / L) i X πR² X N

Flux(Ф)== μ₀ (N² / L) i X πR²

Flux(Ф) induced by unit current

M = μ₀ (N² / L)  X πR²

The questions is incomplete I answered it in general way.

A solenoid has length L, radius R, and number of turns N. A second smaller solenoid of length L, radius R and number of turns N is placed at the center of the first solenoid, such that their axes coincide. What is the mutual inductance of the pair of solenoids

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A circular saw is powered by a motor. When the saw is used to cut wood, the wood exerts a torque of 0.80N on the saw blade. If the blade rotates with a constant angular velocity of 20 rad/s the work done on the blade by the motor in 1.0 minis:
A. 0
B. 480 J
C. 960 J
D. 1400 J
J E. 1800 J

Answers

The amount of work performed on the blade by the motor in one minute is 960 J if the blade rotates at a constant angular velocity of 20 rad/s.

A force that generates rotation is known as a torque. demonstrates how well a force can rotate or twist an object.

We are know that,

Torque = F = 0.80N

Angular velocity = ω = 20rad/s

To calculate the value of work done we can use the equation,

work = torque x angular displacement

θ = ωt

θ = 20rad/s x 60s

θ  = 1200rad

Then , from the above value we can calculate,

work = 0.80N x 1200rad

W = 960J

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___ is experimental coefficient of kinetic friction the slope of the line of best fit between kinetic frction and normal force

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Answer is Force, The kinetic fiction force, also known as sliding friction, only affects moving objects (thus the term "kinetic"). Pushing a box across floorboards is an example of this force opposing sliding motion.

This sort of friction has a particular coefficient of friction (such as rolling friction). The materials used to create the contacting surfaces are particular to this coefficient. The coefficient will be higher on a rougher surface. This is the equation that will assist you in determining the coefficient of kinetic friction: The force holding the items together, or the force perpendicular to the surfaces in contact, is known as the normal force.

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a unit load of not less than _volt-amperes per square foot be included for storage spaces in other than dwelling units

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A unit load of not less than 1/4 volt-amperes per square foot is included for storage spaces other than dwelling units.

What is unit load?

The unit load can be described as the size of an assemblage into which a number of items are combined for ease of storage and handling, for example, a pallet load expresses a unit load that can be moved easily with a pallet jack, or a container load expresses a unit for shipping purposes.

A unit load can pack tightly into a warehouse rack, truck, or intermodal container, yet can be broken apart at a distribution point, generally a distribution center, or wholesaler, for sale to consumers or for use.

A unit load can be defined as the basic storage and transport unit arranged on modular support or in packaging to ensure efficient handling.

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the student designs an experiment to study the period of oscillation for an object on a spring. the student measures the mass of a sphere as m

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A spring's spring constant is quadrupled by the oscillation period of an item on it.

Oscillation is defined as what?

The pendulum's periodic to-and-fro motion is referred to as the Simple pendulum's oscillatory motion. One oscillation of a pendulum is defined as the motion of a bob as it moves from one end to the other and returns to the starting point.

How do motion and oscillation vary from one another?

When an item goes back and forth frequently, this is referred to as an oscillatory motion. Periodic motion, on the other hand, describes a motion in which an item repeats a route after a set amount of time. However, not all periodic movements are oscillatory; only oscillatory motions are all periodic.

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A ball is thrown upwards at time t = 0. The graph shows the variation with
time of the height of the ball. The ball returns to the initial height at time
T.

What is the height h at time t ?

Answers

The height at which the half time is provide as the equation in a. Here, the time t is not half of the total time of flight. Thus, the correct equation is option D.

What is horizontal flight?

When an object flies to a height t, with a speed and its height depends on the time of travel. There is linear relation with the time of fly and height upto a point in the horizontal flight and after that, the height reduces with time.

Here, height at the exact middle of the plot that is at the half of the time the equation corresponding to the height is

h = 1/2 gt²

But the time given here is not the half of total time and the time can be taken as T-t. Therefore, the equation corresponding to the  height of the ball is

1/2 g t (T- t).

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Describe the trends in the U.S. energy demands and the amount of this energy generated from nuclear power since 1970. Include in your answer any relationships that may exist between them. Consider data provided above and possibly extra research. As you make your claim ALWAYS use evidence to support your response.

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The overall energy consumption in the United States has nearly tripled since 1970, and electricity consumption has grown even faster.

How is the energy consumption?

The U.S. economy is heavily dependent on energy for everything from manufacturing and transportation to agriculture and housing. Power sources and uses are constantly changing.

A total of 98 quadrillion BTUs of energy were consumed in the United States in 2010, according to estimates. This is a little less than its peak in 2007, but nearly three times higher than its level in 1950 (34.6 quadrillion BTUs).

The average American uses 2.5 gallons of oil, 8.86 pounds of coal, and 246 cubic feet of natural gas per day. Each person in a household uses 12 kilowatt-hours (kWh) of electricity per day. The overall U.S. energy consumption dropped 3.1% from peak levels in 2019 in 2021.

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which moment corresponds to the minimum kinetic energy of the system? view available hint(s)for part b which moment corresponds to the minimum kinetic energy of the system? a b c d

Answers

Option A correlates to the system's least kinetic energy, according to the supplied statement.

Simply put, what is kinetic energy?

Kinetic energy is the strength a thing possesses as a product of motion. To drive an object, a charge must be supplied to it.  Energy is transmitted to the object once the work is accomplished, at which point it goes at a new, consistent rate.

What are some instances of kinetic energy?

Kinetic energy, which may be seen in the motion of an object, particles, or group of particles, is the fuel of motion. Any moving object, such as a woman walking, a baseball being thrown, or a piece of food falling from a table, uses kinetic energy.

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