in what direction relative to a magnetic field does a moving charged particle experience maximum deflecting force? minimum deflecting force?

Answers

Answer 1

Charged particles will experience a maximum force when traveling perpendicular to the magnetic field.

Which way does the magnetic field deflect charge?

In accordance with this law, an electron or other charged particle traveling in a magnetic field will be deflected by the field at a right angle to both the field's direction and the direction of the particle. (As you apply that rule, keep in mind that the cathode ray electrons are moving in the opposite direction to that of regular current.)

How do you tell which way the deflection is going?

A positive charge that is traversing a magnetic field perpendicularly at the top is deflected. The positive charge will be deflected in the direction that is predicted by the right-hand rule, the bottom. Positive charges will be deflected according to a related left-hand rule.

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Related Questions

Compared with the mass of a uranium nucleus before splitting, the split fragments have: Group answer choicesthe same mass. more mass. less mass.

Answers

In nuclear fission reaction, the mass of the fragments after splitting will have less mass compared to the mass of uranium before splitting.

What is nuclear fission?

The nuclear fission is the chemical reaction in which the nucleus splits into two or more smaller nuclei with the release of large amount of energy in the form of heat and light along with gamma photons in few cases. This happens by the neutrons crashing into the nuclei forcing it to break into smaller nuclei with lesser mass.

In nuclear fission reaction, uranium-235 nucleus splits into Krypton-92 and barium-141 nuclei along with a large amount of energy. Here the uranium has mass number 235 whereas, krypton has 92 and barium has 141.

Therefore, in nuclear fission reaction the uranium-235 nucleus splits into smaller nuclei with less mass.

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an electron and a proton are separated by a distance of 1.0 m. what happens to the magnitude of the force on the first electron if a second electron is placed next to the proton?

Answers

If a second electron is placed close to a proton, the force that would be exerted on the first electron It doubles.

What does the scientific term "force" mean?

A clear connotation is attached to the term "force." The terms "push" and "pull" are perfectly acceptable at this level to describe forces. Another item applies a force to the first. Both living things and non-living objects can be considered to be parts of a force.

What kind of power is that?

The terms "contact forces" and "non-forces" refer to different kinds of forces. Forces include, among others, nuclear force, gravitational force, frictional force, magnetic force, electrostatic force, and spring force.

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one of the reasons for negative transfer is the initial cognitive confusion that occurs when a person must make a different movement in a familiar environmental context.

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More bilateral transfer occurs from the preferred limb to the non-preferred limb than the opposite occurs.

initials and names interchangeably

Your given name, which is also known as the first name, is the name your parents gave you when you were born. Typically, middle names are given as initials rather than full names, and this is true for the initial as well.

What does initial in a document mean?

On the last page, there is a mark that reads "I." Pen and ink are used for physical documentation. The initial is unique to the person using it, not unlike a signature in that it is not a generic symbol. To show that you have read the page and accepted its terms, please add a small personalization.

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If a reaction in one direction releases more energy than it absorbs, that same reaction in the opposite direction would.

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The opposing reaction absorbs energy from a process that releases energy in one direction.

What is a reaction ?

A chemical reaction happens when one or more chemicals are changed into one or more other chemicals.

Every chemical reaction involves the transfer of energy in some way.

Exothermic reactions and endothermic reactions are the two different categories of chemical reactions.

An endothermic reaction requires an energy input to continue, whereas an exothermic reaction releases heat (i.e., energy).

In conclusion, if a reaction in releases energy, a reaction in opposite direction absorb energy

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Develop an equation (with a proportionality constant) that describes the relationship between the gravitational force (fgrav), the mass of the moon (mmoon), the mass of the planet (mplanet), and the distance (d) of separation between the planet and the moon. Then support the claim (i. E. , the equation) with evidence and reasoning.

Answers

According to newton's law of gravitation, the gravitational force(F)  is directly proportional to the product mass of the moon(Mm) and the mass of the planet (Mp) and it is inversely proportional to the square of the separation between them.

Fg ∝ (Mp)(Mm) →(1)

Fg ∝ 1/d²→(2)

Combining equation (1) and (2),

Fg ∝ (Mp)(Mm)/d²

Fg =  G(Mp)(Mm)/d²

This is an equation that describes the relation between mass of moon (Mm) and mass of planet (Mp) and separation(d) between them.

To support the claim in favuor of this equation we use this equation to obtain the value of acceleration due to gravity on earth.

Let m be the mass of an object on earth then Fg between earth (Mp) and mass of an object is obtained by:

Fg =  G(Mp)(m)/R², where R= Radius of earth

This force is equal to the weight of an object i.e.,

g= G(Mp)/R²

Putting the values of G, Mp and R , we get, g=9.81 m/s²

which is the value we obtained on earth for acceleration due to gravity.

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northeasters northeasters often bring heavy snowfall. are associated with anticyclones. are associated with warm winds. are rarest in winter and early spring.

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Northeasters often bring heavy snowfall.

A Nor’easter is a hurricane alongside the East Coast of North America, so known due to the fact the winds over the coastal vicinity are usually from the northeast. these storms may occur at any time of yr but are most frequent and most violent between September and April. some widely recognized Nor’easters consist of the notorious snowfall of 1888, the “Ash Wednesday” hurricane of March 1962, the new England blizzard of February 1978, the March 1993 “Superstorm” and the current Boston snowstorms of January and February 2015.

Those storms progress commonly northeastward and typically achieve maximum intensity near New England and the Maritime Provinces of Canada. They nearly always convey precipitation in the form of heavy rain or snow, as well as winds of gale pressure, rough seas, and, every now and then, coastal flooding to the affected regions.

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a 2200 pfpf capacitor is charged to 130 vv and then quickly connected to an inductor. the frequency of oscillation is observed to be 10 khzkhz . part a determine the inductance. express your answer using two significant figures. ll

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A 2200 pF capacitor is charged to 130 V and then quickly connected to an inductor. The frequency of oscillation is observed to be 10 kHz. The inductance produced is 4.54 H.

The angular frequency of the oscillations in the LC circuit is given by:

        ω  = 1/[tex]\sqrt{LC}[/tex]

where,  ω= angular frequency

             L=inductance

             C=capacitance

Given,

C=2200 pF

= [tex]2.2 \times 10^{-9}[/tex] F

ω =10 kHz

= [tex]10 \times 10^{3}[/tex] Hz

= [tex]10^{4}[/tex] Hz

We have to find L(inductance).

Using the above equation, we get L=1/C × ω^2

Now putting the given values we get,

L=1/[tex]2.2 \times 10^{-9} \times 10^{4} \times 10^{4}[/tex]

 =1/[tex]2.2 \times 10^{-1}[/tex]

 =4.54 H(henry) [SI unit of inductance is henry]

So for given values the inductance in the circuit is 4.54 H(henry).

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which one of the following is to use big o notion to measure the runtime of an algorithm that tests whether any element of an array is duplicated elsewhere in the array

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The phrase "the running time rises at most this much, although it could expand more slowly" in the form of asymptotic notation would be useful. For just these situations, we employ big-O" notation.

For asymptotic upper bounds, we employ big-O notation because, for sufficiently large input sizes, it constrains the development of the running time from above. Now that we have a method, we can describe how long binary search takes to perform in every scenario. We can state that binary search runs continuously.

Different hardware and processor speeds have an impact on the algorithm's overall run-time. Therefore, rather of directly discussing run time, we utilise Big O to discuss how quickly the run time increases as the amount of data (read: input) supplied to our algorithm increases.

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what is the magnitude, approximately, of the most probable energy loss by a fast charged particle in a single collision with an atomic electron? (b) are the most probable and the average energy losses comparable in magnitude? explain

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(a) The most probable energy loss is on the order of 20 eV. N.B., energy loss spectra for fast charged particles are very similar in the range of 10 - 70 eV.

(b) Two types of energy loss predominate in fluid flow through a pipe network; major losses, and minor losses.  Major losses are associated with frictional energy loss that is caused by the viscous effects of the medium and roughness of the pipe wall.  Minor losses, on the other hand, are due to pipe fittings, changes in the flow direction, and changes in the flow area.  Due to the complexity of the piping system and the number of fittings that are used, the head loss coefficient (K) is empirically derived as a quick means of calculating the minor head losses.

The term "minor losses", used in many textbooks for head loss across fittings, can be misleading since these losses can be a large fraction of the total loss in a pipe system. In fact, in a pipe system with many fittings and valves, the minor losses can be greater than the major (friction) losses.

Thus, an accurate K value for all fittings and valves in a pipe system is necessary to predict the actual head loss across the pipe system. K values assist engineers in totaling all of the minor losses by multiplying the sum of the K values by the velocity head to quickly determine the total head loss due to all fittings.  

Knowing the K value for each fitting enables engineers to use the proper fitting when designing an efficient piping system that can minimize the head loss and maximize the flow rate.

Therefore, the loss of flow in the piping system occurs due to the fitting done by engineers.

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Tom and his little sister are enjoying an afternoon at the ice rink. They playfully place their hands together and push against each other. Tom's mass is 76 kg and his little sister's mass is 15 kg.
(a) Which of the following statements is correct?
They both experience the same force.The force experienced by Tom is less than the force experienced by his sister. The force experienced by the sister is less than the force experienced by Tom.
(b) Which of the following statements is correct?
Tom's acceleration is more than the sister's acceleration.Tom's acceleration is less than the sister's acceleration. They both have the same acceleration.
(c) If the sister's acceleration is 2.3 m/s2 in magnitude, what is the magnitude of Tom's acceleration?
m/s2

Answers

Answer:

Tom and his sister experience a net force of the same magnitude.

The acceleration of Tom is less than that of his sister.

The magnitude of the acceleration of Tom will be approximately [tex]0.45\; {\rm m\cdot s^{-2}}[/tex].

Explanation:

Assume that friction is negligible and that the ice rink is level. The only unbalanced force on Tom will be the force from his sister.

By Newton's Laws of Motion, Tom's sister will experience a reaction force from Tom. This reaction force will be equal in magnitude to the force on Tom, but opposite in the direction.

If friction is negligible and the rink is level, the net force on Tom will be equal to that on his sister. However, acceleration is inversely proportional to mass: if the net force on an object is [tex]F(\text{net})[/tex] and the mass of the object is [tex]m[/tex], the acceleration [tex]a[/tex] of that object will be [tex]a = (F(\text{net})) / m[/tex].

Since Tom's mass is greater than that of his sister and the magnitude of net force on them is the same, the acceleration of Tom's sister will be greater.

Using the equation [tex]F(\text{net}) = m\, a[/tex], find the magnitude of the net force on Tom's sister:

[tex]\begin{aligned}F(\text{net, sister}) &= m(\text{sister})\, a(\text{sister}) \\ &= (15\; {\rm kg}) \, (2.3\; {\rm m\cdot s^{-2}})\\ &= 34.5\; {\rm N}\end{aligned}[/tex].

Since the net force on Tom is the same as that on his sister, the magnitude of the net force on Tom will also be [tex]34.5\; {\rm N}[/tex]. Since the mass of Tom is [tex]m = 76\; {\rm kg}[/tex], the acceleration of Tom will be:

[tex]\begin{aligned}a(\text{Tom}) &= \frac{F(\text{net, Tom})}{m(\text{Tom})} \\ &= \frac{34.5\; {\rm N}}{76\; {\rm kg}} \\ &\approx 0.45\; {\rm m\cdot s^{-2}}\end{aligned}[/tex].

a(n) ground receptacle separates the supply grounding conductor from other grounded devices and materials.

Answers

An isolated ground receptacle separates the supply grounding conductor from other grounded devices and materials.

How to use isolated ground receptacles?

An isolаted ground receptаcle hаs а grounding terminаl thаt hаs no contаct with the receptаcle mounting strаp or yoke. When instаlled аgаinst а grounded metаl box, the receptаcle mounting strаp is grounded. The receptаcle’s isolаted ground terminаl is then connected to аn аdditionаl insulаted grounding conductor thаt is instаlled аs а sepаrаte grounding pаth for the reduction of electricаl noise on the sensitive electronic equipment plugged into the receptаcle.

The isolаted ground receptаcle in the pаtient cаre spаce but outside the pаtient cаre vicinity (left) must be supplied by а metаl rаcewаy or cаble system thаt quаlifies аs аn equipment grounding conductor. The box must be grounded by а green insulаted wire type equipment ground аnd the isolаted ground receptаcle terminаl requires а green insulаted equipment grounding conductor with one or more yellow stripes.

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a gas is in a cylinder, as shown. predict what will happen to the density of the gas if the piston is moved upward, and draw in the results you would expect. provide an explanation of what happens at the molecular level to allow this to happen.

Answers

The density of the gas will decrease, since the total mass of particles is constant but the volume is increased.

Why would the density decrease ?

The gas will disperse to completely fill the cylinder. They will spread out more and be distributed evenly. This is due to the particles' random movement and tendency to occupy all accessible space. Verify that there are the same number of equally distributed particles in the student figure as there were at the beginning.

When a substance is heated, the molecules move faster and slightly farther apart, taking up more space and causing the density to decrease. When something is cooled, the molecules slow down and get a little closer together, taking up less space and becoming denser.

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nov-21. at the equator, where the magnetic field of the earth points to the north, an electron travels to the south. what would be the direction of the magnetic force on this electron?

Answers

The magnetic force on the electron would be directed to the east.

What is magnetic force?
One of four basic forces of nature, the electromagnetic force, results in the magnetic force, which is brought about by the motion of charges. When two charge-containing objects move in the same direction, a magnetic attraction pulls them together. Similar to this, there is a repulsive force between charged objects moving in opposite directions.

We discovered how moving charge envelops itself with a magnetic field in our article on magnetic fields. The magnetic force in this context is a force that results from interacting magnetic fields.

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escribe the difference in the location of the bright spots for the color represented by wavelength equal to 1 compared to the location of the spots for the color represented by wavelength equal to 4. do they occur in the same location on the screen (at the top edge of the simulation)

Answers

Increasing the wavelength of the light increases the spacing between different fringes since the spacing between different fringes is wavelength dependent.

The spacings among different fringes decreases as the space between the slits increases because it is dependent on L. Growing the wavelength of the light will increase the spacing among unique fringes for the reason that spacing between exclusive fringes is wavelength based.

The distinction in distance traveled through the 2 waves is one complete wavelength, that is, the direction distinction is 1 λ. when the path difference is one complete wavelength, a crest meets a crest and optimistic interference happens.

They unfold aside the intense spots spread aside. So in different words, if I had been to transport these distances and the slits nearer together, you will see these vibrant spots get farther and farther faraway from each other on the screen.

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gases expand to fill the volume and shape of their container, because the rapidly moving particles experience negligible attractive forces for each other. group startstrue or false true, unselected false, unselected

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The quickly moving particles experience insignificant attraction forces for one another, therefore gases do indeed expand to fill the volume and form of their container.

The attraction forces is an attraction that draws the body to it. In nature, there are many alluring forces at work. Among these are gravitational force, magnetic force, electric force, and electrostatic force. When a gases is heated, the particles' kinetic energy rises, which causes the gases to expand. When a gas is heated, the container's volume needs to be raised in order to maintain the pressure.

Because the quickly moving particles encounter low attraction forces for one another, gases expand to fill the volume and shape of their container.

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Tamsin strikes a golf ball so that it flies off with a speed of 60 m/s. The golf ball has a mass of 45 g. Calculate the kinetic energy of the golf ball.

Answers

81 joule is the kinetic energy of the golf ball.

K.E= mv²/2

K.E=0.045×60×60÷2

K.E=81 joule

Kinetic energy is a particular kind of power that is present in moving particles or objects. An object gains kinetic energy when work, which involves the transfer of energy, is done on it by exerting a net force. Kinetic energy is a property of motion that depends on the mass and speed of an object or particle. Motion is any combination of vibration, axis rotation, translation, and movement (along a path from one location to another). A body's translational kinetic energy, which is determined by multiplying its mass, m, by the square of its speed, v, is equal to 1/2mv2.

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Two trains leave a city at the same time. One train goes west at a constant rate of 80 mph. The other goes east at a rate of 60 mph. How long will it take the trains to be 1,050 miles apart?.

Answers

7.5 hr time will it take the trains to be 1,050 miles distance apart

f(x) = 80x

g(x) = 60x

h(x) = 140x

1,050  = 140x

x=1,050/ 140 = 7.5 hr

Distance is the length between two points or things, and it is directionless. Since distance is a scalar property, it only takes into account the total magnitude and ignores the start and finish locations. Being a scalar attribute, distance can only be positive or zero; it cannot be the opposite.

Although kilometers (km) and centimeters (cm) or millimeters (mm) can also be used to express shorter distances, the meter (m) is the most common unit of measurement for distance (mm). When calculating distance, the letter D is frequently used to denote the distance traveled.

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The equipment releases a balloon from a point that is a small distance above the surface of the planet. The atmosphere at the surface of this planet has a density of

Make an appropriate calculation and then predict and explain the direction of any motion of the balloon. Show your working.

The inflated balloon has a mass of 80 g and a volume of 0.3m ^ 3 .

0.35kg / (m ^ 3)

Answers

The balloon will go upward with acceleration of 3.1 m/s².

What is  buoyant force?

The upward force applied to an object that is fully or partially submerged in a fluid is known as the buoyant force. Upthrust is another name for this upward thrust. A body submerged partially or completely in a fluid appears to lose weight, or to be lighter, due to the buoyant force.

Given that

Mass of the balloon = 80 g = 0.080 kg.

Volume of the balloon = 0.3 m³.

So, weight of the balloon =  0.080 × 9.8 N = 0.784 N.

Buoyant force acting on the balloon = 0.3 × 0.35 × 9.8 N = 1.029 N.

Hence, net upward force acting on the balloon is =   1.029 N -  0.784 N =  0.248 N.

So, upward acceleration of the balloon = 0.248/0.080 m/s² = 3.1 m/s².

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A 4.2 kg block and a 2.8 kg block with a compressed spring between them are held together by a string. The spring has a spring constant of 120 N/m and is compressed by a distance of 0.1 m. The blocks are sitting at rest on a frictionless surface, then the string breaks.
a) Use conservation of momentum to determine a relationship between the new velocities of the two blocks.
b) Use conservation of energy to determine the new velocities of the two blocks, and their kinetic energies.

Answers

The spring between the two blocks will put pressure on the two blocks and this will create force. These forces will be using up energy of the block and spring.

Given,

Weight of block 1 = 4.2 kg

Weight of block 2 = 2.8 kg

Spring constant = 120 /m

Blocks are at rest and then string breaks, so

initial velocity of both blocks = 0

a) Initially both are at rest

u₁ = 0

u₂ = 0

M₁ = 4.2 kg

M₂ = 2.8 kg

Let final velocities be v₁ and v₂

Using conservation of momentum

P(initial) = P(final)

M₁u₁ + M₂u₂ = M₁v₁ + M₂v₂

(4.2 x 0) + (2.8 x 0) = 4.2 v₁ + 2.8 v₂

v₁/v₂ = 2.8/4.2

=) 1.5 v₁ = v₂

Speed of 2.8 kg block is 1.5 times the speed of 4.2 kg.

(b) Initial energy of the system

E₁ = (kx²/2) + (m₁v₁²/2) + (m₂v₂²/2)

E₁ = 120(0.1)²/2 + 0

E₁ = 0.6 J

Final energy of the system

E₂ = (k(0)²/2) + (m₁v₁²/2) + (m₂v₂²/2)

E₂ = 0 + [4.2v₁²/2] + [2.8*(1.5v₁)²/2]

E₂ = 5.25 v₁²

Using conservation of energy

E₁ = E

0.6 = 5.25 v₁²

v₁ = √0.6/5.25 = 0.34 m/s

v₂ = 1.5 x 0.34 = 0.51 m/s

Kinetic energies:

For 4.2 kg block = [4.2 x (0.34)²]/2 = 0.24 J

For 2.8 kg block = [2.8 x (0.51)²]/2 = 0.36 J

Therefore, the conservation of momentum and energy is used to determine the relation between two velocities (1.5 v₁ = v₂) and the kinetic energy of blocks, respectively.

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calculate by direct integration the moment of inertia for a thin rod of mass m and length l about an axis located distance d from one end. express your answer in terms of some, all, or none of the variables m , l , and d .

Answers

By direct integration, the moment of inertia for a thin rod of mass M and length L about an axis located distance d from one end, is ML²/3 and at the centre ML²/12.

Given that, mass of the rod is M

Length is L

Rotating around an axis perpendicular to its length and passing at a distance d from one end.

Consider a very small strip of length dx and having a mass dm.

Moment of inertia is given by I = ∫ x² dm

So, mass per unit length λ = M/L

The length of the small strip dx can be written as

dm = λ dx = M/L dx

From the above two equations, we get, I = ∫ M/L x² dx

The limits of the integral are from -d to L, the value of I is M/3 (L²-3Ld+3d²)

For calculating moment of inertia on the end substitute d = 0, we get I = ML²/3

For calculating moment of inertia at the centre substitute d =L/2 , we get I = ML²/12.

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The diagram shows thee forces acting on an object what is the value of the resultant force acting on the object
A. 2N
B. 10N
C. 14N
D. 16N​

Answers

Answer:

C.

Explanation:

if she makes 2.0 rotations in 1.9 s when in the tuck position, what is her angular speed ( rev/s ) when in the straight position?

Answers

The angular speed when in the straight position is 6.61rad/sec

We know that angular speed is defined as change of angular displacement in per unit time

Angular speed have proper relation with linear speed.

If she is making rotation around any circular track of radius R, then the total distance travelled by her will be 4πR.

In 1 rotation she travelled =perimeter of circle=2πR

Therefore, in 2 rotations =2×2πR=4πR

Means,4πR distance is travelled in 1.9sec

Threfore,2πR distance is travelled in =(1.9×2πR)/4πR=1.9/2=0.95sec

Now, total angular displacement in straight position is=2π  

So, applying the formula, we get angular speed(ω)=2π/0.95

=>ω=(2×3.14)/0.95

=>ω=6.28/0.95

=>ω=6.61rad/sec.

Hence, angular speed is 6.61rad/sec..

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what can we learn about a star from a life track on an h-r diagram? question 3 options: when it will die where it is located what surface temperature and luminosity it will have at each stage of its life how long ago it was born all of the above

Answers

We learn about a star from a life track on an h-r diagram, when it will die where it is located, what surface temperature and luminosity it will have at each stage of its life, how long ago it was born.

What is HR Diagram ?

The Hertzsprung–Russell diagram, abbreviated as H–R diagram, HR diagram or HRD, is a scatter plot of stars showing the relationship between the stars' absolute magnitudes or luminosities versus their stellar classifications or effective temperatures. The diagram was created independently in 1911 by Ejnar Hertzsprung and by Henry Norris Russell in 1913, and represented a major step towards an understanding of stellar evolution.

There are several forms of the Hertzsprung–Russell diagram, and the nomenclature is not very well defined. All forms share the same general layout: stars of greater luminosity are toward the top of the diagram, and stars with higher surface temperature are toward the left side of the diagram.

The original diagram displayed the spectral type of stars on the horizontal axis and the absolute visual magnitude on the vertical axis. The spectral type is not a numerical quantity, but the sequence of spectral types is a monotonic series that reflects the stellar surface temperature.

Modern observational versions of the chart replace spectral type by a color index (in diagrams made in the middle of the 20th Century, most often the B-V color) of the stars. This type of diagram is what is often called an observational Hertzsprung–Russell diagram, or specifically a color–magnitude diagram (CMD), and it is often used by observers.

In cases where the stars are known to be at identical distances such as within a star cluster, a color–magnitude diagram is often used to describe the stars of the cluster with a plot in which the vertical axis is the apparent magnitude of the stars. For cluster members, by assumption there is a single additive constant difference between their apparent and absolute magnitudes, called the distance modulus, for all of that cluster of stars.

Early studies of nearby open clusters (like the Hyades and Pleiades) by Hertzsprung and Rosenberg produced the first CMDs, a few years before Russell's influential synthesis of the diagram collecting data for all stars for which absolute magnitudes could be determined.

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f our sun is 4.6 billion years old, how many times has it orbited the galaxy? you must show your work to receive credit.

Answers

Answer:

20 times.

Explanation:

Let's figure this out:

How many times has our Sun orbited the Milky Way?

Well, as the famous “Monty Python and the Meaning of Life” song says (this is from memory so I may have some words slightly wrong):

“Just remember that we’re standing on a planet that’s evolving, and revolving at 900 miles an hour,

That’s orbiting at 19 miles a second, so it’s reckoned, the Sun that is the source of all our power.

The Sun and you and me and all the stars that we can see are moving at a million miles a day in the outer spiral arm at 40 thousand miles an hour of the galaxy we call the Milky Way.

Our galaxy itself contains a million billion stars, it’s 200 thousand light years side to side.

It bulges in the middle 15 thousand light years thick, but by us it’s just three thousand light years wide.

we’re 50 thousand light years from galactic central point, we go round every 200 million years

and our galaxy itself is one of millions of billions in this amazing and expanding universe.”

So, from this song (which was pretty darned accurate for it’s time for a simple ditty in a comedy film - the only major blooper was the speed of light in the next verse given as “12 million miles a minute”, when it’s nearer to 11, but I guess it didn’t scan so well) you can take the line

“we go round every 200 million years” and take the approximate age of the solar system of 4.6 billion years. And divide one by the other. And you get about 23 circuits.

That’s only a rule of thumb, obviously, and no doubt someone will quote it to five decimal points in another answer!

Thanks.

a 10.0 kg wood ball hangs from a 1.90 m -long wire. the maximum tension the wire can withstand without breaking is 500 n . a 0.800 kg projectile traveling horizontally hits and embeds itself in the wood ball.

Answers

The largest speed this projectile can have without causing the cable to break60.22 m/s.

The horizontal speed of a projectile is regular (in no way converting in value), and there's a vertical acceleration because of gravity; its cost is 9.8 m/s/s, down, The vertical speed of a projectile changes via nine.8 m/s every second, The horizontal motion of a projectile is impartial to its vertical movement.

Calculation:-

Mass of the wood, M = 10 kg

Mass of the projectile, m = 0.8 kg

Length of the wire, l = 1.90 m

Maximum tension in the string, T = 500 N

The net force on the string is

F = T - (M+m)g

(M+m)v^2/l = 500 N -10.9 kg *9.8 m/s^2

v = 4.42 m/s

Let the initial velocity of the projectile be vi

By the law of conservation of momentum principle, we have

mvi = (M+m) v

0.8 kg *vi = 10.9 kg *4.42 m/s^2

vi =60.22 m/s

so, the largest speed, the projectile can have is 60.22 m/s

Projectile motion is a form of motion experienced with the aid of an object or particle that is projected in a gravitational field, such as from Earth's floor, and movements alongside a curved route below the action of gravity best.

Projectile motion is the movement of an object thrown (projected) into the air. After the initial force that launches the item, it most effectively reports the pressure of gravity. The object is known as a projectile, and its route is called its trajectory.

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Disclaimer:- your question is incomplete, please see below for the complete question.

A 20.0 kg wood ball hangs from a 1.30 m -long wire. The maximum tension the wire can withstand without breaking is 600 N . A 0.900 kg projectile traveling horizontally hits and embeds itself in the wood ball. What is the largest speed this projectile can have without causing the cable to break?

Original Work:

m = 20 kg wood ball + .9 kg projectile = 20.9 kg

Ft max = 600 N

1.3 m radius

F = mAr = Ft - Fg

m(v^2)/r = Ft - Fg

v = sqrt((r(Ft - Fg))/m)

v = sqrt((1.3m(600N - (20.9 kg)(9.81)))/20.9 kg)

v = 4.96 m/s

A stamp collector uses a converging lens with focal length 25 cm to view a stamp 15 cm in front of the lens.Part A
Find the image distance. Follow the sign conventions. Express your answer to two significant figures and include the appropriate units.
Part B
What is the magnification? Follow the sign conventions. Express your answer using two significant figures.

Answers

The image distance with focal length of 25 cm is 37.50 cm. The magnification is 2.50.

What is focal length?

The focal length is the measure of the converging and diverging capacity of the system which is inverse of the optical power.

The image distance with focal length of 25 cm can be calculated as,

1 / f = 1 / d1 + 1 / d0

d1 = d0f / d0 - f = 15 x 25 / 15 - 25 = -37.50 cm.

The magnification can be calculated by,

M = f / f - d = 25 / 25 - 15 = 2.50

Therefore, the image distance is -37.50 cm and the magnification is 2.50 when the focal length is 25 cm.

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identify the nmr term that corresponds to each description. the frequency at which a nucleus absorbs and resonates with a magnetic field choose... the end of the nmr spectrum far from the reference signal choose... the area of a signal that corresponds to the number of nuclei at that frequency choose... the end of the nmr spectrum close to the reference signal choose... the appearance of multiple peaks for a single nucleus due to neighboring nuclei choose...

Answers

The NMR term for:

the frequency at which a nucleus absorbs and resonates with a magnetic field ⇒ Chemical shift the end of the NMR spectrum far from the reference signal ⇒ Upfieldthe area of a signal that corresponds to the number of nuclei at that frequency ⇒ Integrationthe end of the NMR spectrum close to the reference signal ⇒ Upfieldthe appearance of multiple peaks for a single nucleus due to neighboring nuclei ⇒ Splitting

What is the full meaning of NMR?

NMR is the Nuclear Magnetic Resonance spectroscopy is the study of molecules that involves recording the interaction of radiofrequency electromagnetic radiations with the nuclei contained in molecules held in a strong magnetic field. It is used to determine the purity of samples.

NMR terms include splitting, integration, chemical shift and upfield.

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The velocity-time graph below shows the journey of a train. How far did the train travel during the whole journey?

Answers

The total distance that is covered in the velocity time graph is  5400 m.

What is the total distance travelled?

We know that the velocity time graph shows the movement of an object form one point to the other. In this kind of velocity time graph that is shown here. We can see the complete journey of the body from start to rest and we can read off the total velocity as well as the total time taken from the velocity time graph that has been shown here.

Thus we can see from the graph that;

Total velocity of the object from start to rest = 60 m/s

Total time taken for the journey = 90 seconds

We know that;

Speed = distance/time

distance = speed * time

Total distance that is covered =  60 m/s * 90 seconds

= 5400 m

It then follows that all the distance that have been covered from the start to the end is  5400 m.

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Circuit A Circuit B Circuit C 3R For the circuits shown, identical capacitors are connected to identical batteries and to three resistors. The values of the resistances are R, 2R, and 3R, as shown. Which of the following correctly ranks the charge Q stored on the capacitors after they are fully charged? ) Q1 > Q2 > Q3 © 23 > Q, > Q2 © 2,793 > Q2 0 Q1 = Qs = Q3 © Q = 2,) > Q3

Answers

Q1 > Q2 > Q3 ranks the charge Q stored on the capacitors after they are fully charged voltage.

V=Q/R

voltage=v

charge=q

resistance=r

so the order will be Q1 > Q2 > Q3

The difference in electric potential per unit charge between two points in an electric field is referred to as voltage. The letters "V" or "E" are used to represent voltage in calculations and other mathematical contexts. The force that propels electrons across the circuit is produced by the voltage or potential difference.

A larger flow of electrons will cross the circuit with increased voltage and force. Without a difference in voltage or potential, electrons would randomly move through a vacuum. Another name for voltage is electric tension. For example, low tension, high tension, and super tension cables' respective voltage handling capacities are referred to as 1, 11, and 33 kV.

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Do metals become more reactive as you move from left to right on the periodic table?.

Answers

As we move from left to right the metalic properties decreases and non-metalic property increases hence reactivity of the elements decreases.

What is metals reactivity as we move from left to right on the periodic table ?

It happens because there are more valence shells and less interaction between valence electrons and the nucleus. Consequently, the propensity to take electrons from other atoms declines. Atoms get more electronegative as they move through a period.

The ability to lose electrons increases generally with atom size. The capacity to lose electrons increases with increasing shielding. The most active metal is to the left and down because metallic character grows down the table and diminishes across it.

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