The torque produced by a motor overload that pulls the rotor out of synchronization is referred to as

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Answer 1

The torque produced by a motor overload that pulls the rotor out of synchronization is referred to as synchronous torque.

Torque is nothing but the measure of force which causes an object to rotate about an axis.

A rotor is a moving component in the electric motor.

It is the type of torque acting on the shaft of a synchronous machine when the rotational speed of the rotor deviates from the synchronous speed by keeping the machine in synchronism.

The pull out torque is the maximum value of torque that allows a synchronous motor to remain in synchronism without pulling out of synchronism.

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Related Questions

A 0. 50 kg object is at rest. A 3. 00 n force to the right acts on the object during a time interval of 1. 50 s. A. What is the velocity of the object at the end of this interval? b. At the end of this interval, a constant force of 4. 00 n to the left is applied for 3. 00 s. What is the velocity at the end of the 3. 00 s?.

Answers

(A) The object's speed at the conclusion of this given time is 9 m/s in the direction of the right.

(b) Its velocity at the conclusion of the three seconds is 24 m/s to the left.

How is velocity calculated?

The vector quantity velocity (v), denoted by the expression v = s/t, quantifies displacement (or a shift in position, s), over change in time (t). Velocity (or rate, r) is a numerical number, denoted more by equation r = d/t, that validates the miles covered (d) and over change in time (t).

mass m = 0.50 kg.

force F = 3.00 N.

t = 1.50 s.

F = ma

a = F/m

F = force,

m = mass of the object

a = acceleration.

v = u + at

Where, v = final velocity

u = initial velocity,

a = acceleration

t = time.

(a) a = 3/0.5

a = 6.0 m/s².

Also Given: t = 1.5 s,

u = 0 (at rest)

Substituting into equation 2.

v = 0 + 6(1.5)

v = 9 m/s to the right.

(b) Given: F = 4.00 N

m = 0.50 kg.

Substituting into equation 1

a = 4/0.5

a = 8 m/s²

t = 3.00 s, u = 0 m/s (at rest)

Substituting into equation 2

v = 0 + 3(8)

v = 24 m/s to the left.

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Selena stands on a pogo stick, compressing the spring by 0.376 m. The spring's constant is 3,020.7 n/m. What is the pogo stick's elastic potential energy?

Answers

The pogo stick's elastic potential energy is equal to 213.53 Joules.

What is elastic potential energy?

In Science, the quantity of energy that is stored in an elastic object such as a spring is referred to as elastic potential energy and it can be defined as the mechanical potential energy that is possessed by the  elastic object due to an application of a force which deforms or compresses it.

Mathematically, the elastic potential energy of a physical object can be calculated by using this mathematical expression:

U = 1/2 × ke²

Where:

U represents the elastic potential energy.k represents the spring constant.e represents the compression or change in position.

Substituting the given parameters into the elastic potential energy formula above, we have;

Elastic potential energy, U = 1/2 × 3,020.7 × 0.376²

Elastic potential energy, U = 1510.35 × 0.141376

Elastic potential energy, U = 213.53 Joules.

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Two spherical objects have masses of 3. 1 x 105 kg and 6. 5 x 103 kg. The gravitational attraction between them is 65 n. How far apart are their centers?.

Answers

The centers of the two spherical objects that are apart is 4.55 x 10³m.

Two spherical objects have masses of 3.1 x 10⁵ kg and 6.5 x 10³ kg. The gravitational attraction between them is 65N. The centers of the two spherical objects that are apart is 4.55 x 10³m. The gravitational force between two objects with masses m1 and m2 that are separated by a distance r is given by the equation:

F = [tex]\frac{G m1 m2}{r^{2} }[/tex]

where G is the gravitational constant, m1 and m2 are the masses of the objects in kilograms, and r is the distance between their centers in meters. In this problem, we are given the gravitational force between the two objects, F, and the masses of the objects, m1 and m2. We can use these values to solve for the distance r between the centers of the objects. Gravitational force is the force that attracts two bodies in the universe. it is applicable everywhere. it is applicable on every body whether it is small or big, it applies everywhere.

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4.55 x [tex]10^9[/tex] m are distance between their centre.

The gravitational force between two objects with masses m1 and m2 that are separated by a distance r is given by the equation:

F =  [tex]\frac{Gm_1m_2}{r^2}[/tex]  where G is the gravitational constant, m1 and m2 are the masses of the objects in kilograms, and r is the distance between their centers in meters.

In this problem, we are given the gravitational force between the two objects, F, and the masses of the objects, m1 and m2.

We can use these values to solve for the distance r between the centers of the objects.

Substituting the given values into the equation above, we get:

65 = G*(3.1 x 10^5 kg)(6.5 x 10^3 kg)/[tex]r^2[/tex]

Solving for r, we find that the distance between the centers of the objects is approximately:

r = sqrt(G(3.1 x 10^5 kg)(6.5 x 10^3 kg)/65)

=> sqrt((6.674 x 10^11 )(3.1 x 10^5 kg)(6.5 x 10^3 kg)/65)

= 4.55 x [tex]10^9[/tex] m

Thus, the distance between the centers of the two objects is approximately 4.55 x [tex]10^9[/tex] m .

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A force of 20. Newtons is exerted on a cart for 15. seconds. How long must a 100.-newton force act to produce the same impulse

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A force of 20 N is exerted on a cart for 15 seconds. A second force of 100 N needs to be applied for 3 seconds in order to produce the same impulse.

Impulse is the integral of force applied on an object, over time interval t for which that force acts on the object.

I = ∫F dt

I = F Δt

Where:

I = impulse

F = applied force

Δt = time interval

Impulse can also be seen as the change of momentum.

Hence,

I = Δp = F Δt

Where:

Δp = change in momentum

In the problem, there are two forces, i.e.:

F1 = 20 Newtons with Δt1 = 15 seconds

F2 = 100 Newtons

In order to produce the same impulse:

I1 = I2

F1 x  Δt1  = F2 x  Δt2

20 x 15 = 100 x  Δt2

Δt2 = 300/100 = 3 seconds

Hence, the time interval that the 2nd force acts should be 3 s.

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A student pushes a box across a horizontal surface at a constant speed of 0. 6 m/s. The box has a mass of 40 kg, and the coefficient of kinetic friction is 0. 5. The power supplied to the box by the person is:.

Answers

The power supplied to the box by the person is 11.76W

To calculate the power applied to the box, we first need to calculate the force of friction acting on the box. This can be done using the formula:

F = μ * N

Where F is the force of friction, μ is the coefficient of kinetic friction, and N is the normal force.

The normal force is equal to the mass of the box (40 kg) multiplied by the acceleration due to gravity (9.8 m/s^2). This is a force of 39.2 N.

Plugging this value into the formula above, we get:

F = 0.5 * 39.2 N = 19.6 N

Now that we know the force of friction acting on the box, we can calculate the power applied to the box using the formula:

P = F * v

Where P is the power, F is the force, and v is the velocity.

Plugging in the values we have, we get:

P = 19.6 N * 0.6 m/s = 11.76 W

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A typical adult uses about 2,500 Calories of energy each day. (Hint: 1 Calorie = 4184 J). Use this fact to calculate the typical adult's average power requirement, in watts.

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The typical adult's average power requirement (in watts) each day = 121.06 Watt

Both the internal mechanisms that maintain your body's health and the external acts that let you interact with the physical world are supported by energy. It also maintains, builds, and repairs the tissues and cells of the body. Water, the most essential nutrient for the body, helps with the chemical conversion of food into energy.

Adult uses about 2,500 calories

1 Calorie = 4184 J

E = (2,500 x 4184)

= 104,600,000 J

= 10.46 x 10⁶

A day = 24 hours = 1440 = 86400 second

To determine power (P) use equation:

P = E/T

Where,

P = power (watt)

E = energy (Joule)

T = time (second)

So, the typical adult's average power requirement (in watts) each day:

= (10.46 x 10⁶) / 86400

= 121.06 Watt

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suppose that an airplane flying 60m/s, at a height of 300m, dropped a sack of flour. how far from the point of release would the sack have traveled when it struck the ground? where will the plane be in relation to the sack when the sack hits the ground?

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469. 5m. if suppose that an airplane flying 60m/s, at a height of 300m, dropped a sack of flour.

What does suppose to mean?

Supposed to is part of a modal verb phrase meaning expected to or required to. Although suppose to crops up frequently in casual speech and writing, it should not be used in that sense. Suppose (without the d) should only be used as the present tense of the verb meaning to assume .

Do I suppose meaning?

used to show that you think something is true, although you wish that it were not: I suppose (that) all the tickets will be sold by now. used when you are annoyed: I suppose (that) you're going to be late again.

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All of the following are possible indicators that creep is occurring except for ________.
A) tilted fences or power line poles
B) an extremely thick soil profile
C) cracks in roads or sidewalks
D) curved tree trunks

Answers

All of the following, with the exception of a very dense soil profile, could be signs that creep is taking place.

The most unstable substance that can form a bluff is clay and silt (muddy) sediment. These fine-grained sediments are brittle and prone to shifting in the form of major landslides, slow-moving creep, or moderately-sized slumping. Creep is described as a gradual increase in plastic deformation caused by shear loads when the material's yield strength is reached. Curved tree trunks, bowed fences or retaining walls, skewed poles or fences, and minor soil ripples or ridges are all signs of creep. The most dangerous type of mass movement is a landslide, which occurs when rock and earth unexpectedly collapse down a steep slope.

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A projectile is fired from a gun near the surface of Earth. The initial velocity of the projectile has a vertical component of 148 meters per second and a horizontal component of 149 meters per second. How long will it take the projectile to reach the highest point in its path

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A projectile is fired from a gun near the surface of Earth. The initial velocity of the projectile has a vertical component of 148 meters per second and a horizontal component of 149 meters per second. It will 15 second take the projectile to reach the highest point in its path

There are numerous formulas available for computing time, final velocity, initial velocity, etc.

But in this case, the simplest formula to use would be:

v = u + at (where v is the final velocity, u is the beginning velocity, an is the acceleration, and t is the duration)

Since the bullet won't have any vertical velocity at its highest point and we're trying to calculate how long it takes to get there, we assume that the end velocity will be zero.

In the vertical direction, the initial velocity was stated as 148 m/s.

Gravitational acceleration is -9,8 m/s2 (negative due to taking the up direction as positive).

Inserting the values:

t = (v-u) / a

t = (0-148 m/s) / -9,8 m/s²

t = 15seconds

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In general, what can be said about type O and B stars compared to type K and M stars?
A. they are hotter and older
B. they are cooler and older
C. they are hotter and younger
D. they are cooler and younger
E. neither are hotter nor cooler, younger nor older

Answers

Compared to type K and M stars, type O and B stars are younger and hotter. Large gas balls make up stars. Spectral types are assigned to stars. The stars' spectral order is OBAFGKM.

The hottest stars are O stars, which have temperatures ranging from 20,000 K to more than 100,000 K. Few absorption lines, often caused by helium, are present in these stars. The lifespan of these stars is a few million years.

Temperatures in B stars range from 10,000 to 20,000 K. B stars include Rigel in Orion and Spica in Virgo. They have a distinct blue hue.

A stars have strong absorption lines of Hydrogen. Examples are Vega, Altair, and Sirius. Temperatures are about 8000-10,000K. They appear white.

The Sun is just marginally hotter than F stars. Metal absorption lines are visible (to an astronomer, anything that is neither Hydrogen nor Helium is a metal). An F star is Procyon.

Temperatures in G stars range from 5000 to 6000K. They seem to be yellow. G stars include Alpha Centauri, Capella, and our own Sun.

Orange appears on K stars. 3000-5000 K is the temperature range. K stars include Arcturus.

The coolest stars are M stars. They are so cold (between 2000 and 3000 K) that molecules may be seen, such as those of water, carbon monoxide, vanadium oxide (used in sunscreen), and titanium oxide (the primary ingredient in white paint). Betelgeuse and Antares are two examples of these clearly red stars.

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Which evidence is most likely used to indicate the beginning of a solar system formation brainly?

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The materials that were pulled together by gravity are most likely evidence that is used to indicate the beginning of a solar system formation.

What formerly served as a sign that the solar system was first forming?

Formation. About 4.5 billion years ago, a dense cloud of interstellar gas and dust gave rise to our solar system. The supernova shockwave from a nearby exploding star, or supernova, may have caused the cloud to collapse. This dust cloud burst into a spinning disk of material known as a solar nebula when it disintegrated.

What function does gravity serve in the early solar system?

In the early Solar System, dust and gas gathered together due to the attraction of gravity. The substance was heavier in the larger clusters. This implies that they could draw even more content in their direction. The Sun, planets, and moons were formed from these bigger objects.

What proof is there that gravity has an impact on both the Earth and the sun?

Our planet continues to circle the Sun due to the Sun's gravitational attraction. Both the gravity of the Sun and the Earth have an impact on how the Moon moves. Every day, the tides rise and fall as a result of the Moon's gravitational influence on the Earth. There is a rise in sea level as the Moon crosses the ocean.

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Most likely, the gravitationally drawn-together components serve as evidence for the emergence of the solar system. Formation. Our solar system was created from a massive cloud of interstellar gas.

And dust some 4.5 billion years ago. The collapse of the cloud may have been triggered by the supernova boom from a nearby exploding star, or supernova. This dust cloud collapsed into a spinning disc of matter called a solar nebula. Because of the Sun's gravitational pull, our planet keeps revolving around it. The motion of the Moon is affected by the gravitational pull of the Sun and the Earth. Gravitational attraction caused dust and gas to clump together in the early Solar System.

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Raindrops acquire an electric charge as they fall. Suppose a 2.50-mm-diameter drop has a charge of 15.0 pC; these are both typical values. What is the magnitude of the weight force applied to the raindrop

Answers

The magnitude of the weight force applied to the raindrop is 8.026 x 1010⁻⁶ N.

Rain is a liquid form of precipitation on Earth. It is part of the hydrologic cycle which begins when water evaporates and forms clouds in the atmosphere. A drop of rainwater that falls from a cloud to the surface of the earth occurs due to the force of gravity.

The drop is a sphere of diameter 2.5 mm

Radius = 1.25 mm = 0,00125 m

Volume = 4/3πr³

Volume = 4/3π (0,00125)³

Volume = 8.18 x 10⁻⁹ m³

Once we know the volume of rainwater, we can find its mass:

Mass = density x volume

Mass = 1000 x 8.18 x 10⁻⁹ m³

Mass =8.18 x 10⁻⁶ kg

Now, the weight force:

Weight force = mass x acceleration due to gravity

Weight force =  8.18 x 10⁻⁶ x 9.8

Weight force =  8.026 x 1010⁻⁶ N

So, the weight force of, the raindrops is 8.026 x 1010⁻⁶ N.

Complete the questions:

Raindrops acquire an electric charge as they fall. Suppose a 2.50-mm-diameter drop has a charge of +15.0 pC; these are both typical values: What is the magnitude of the weight force applied to the raindrop? The density of water: 1000 kg/m?

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What does an object's tangential speed depend on?

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The greater the distance from the center of the circular path, the greater the tangential speed of the object. The angular speed of the object remains constant at any distance from the center of the circle.

What is tangential speed?

Tangential velocity is the linear speed of any object moving along a circular path. A point on the outside edge of a turntable moves a greater distance in one complete rotation than a point near to the center

Therefore tangential velocity is the linear component of the speed of any object which is moving along a circular path. When an object moves in a circular path at a distance r from the center then the body's velocity is directed tangentially at any instant.

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Help! I’ll mark as brainliest!

Nina’s bicycle has a front lamp and a rear lamp. Both lamps are connected to the same battery.

a. On the circuit diagram above, place a letter A to show the position of a switch to turn only the front lamp on and off

b. On the circuit diagram above, place a letter B to show the position of a switch to turn both lamps on and off at the same time.

Answers

Answer:

The two rear lights are connected in series so each light glows at half the voltage of the battery (if the resistance of filament of each bulb is same). Hence they glow faintly. They must be connected in parallel to glow properly as shown below in attachment

see attachment

Explanation:

Hope it helps<3

The manufacturer of a new compact car claims the miles per gallon (mpg) for the gasoline consumption is mound-shaped and symmetric with a mean of 26. 3 mpg and a standard deviation of 11. 2 mpg. If 30 such cars are tested, what is the probability the average mpg achieved by these 30 cars will be greater than 28?.

Answers

Therefore, the probability of the average mpg is greater than 28 by 0.8313.

Mean ( a ) is given as 26.3 mpg

Standard deviation (b) is  11.2 mpg

Number of cars to be tested (n) = 30

Applying the z-score formula,

The probability is given by, [tex]P(X < 28)[/tex]

[tex]= P(\frac{x-a}{\frac{b}{\sqrt{n} } } < \frac{28-26.3}{\frac{11.2}{\sqrt{30} } } )[/tex]

[tex]=P(\frac{x-a}{\frac{11.2}{\sqrt{30} } } < \frac{1.7}{\frac{11.2}{\sqrt{30} } } )[/tex]

[tex]=P\frac{x-a}{2.044} < \frac{1.7}{2.044}[/tex]

[tex]=P(Z < 0.8313)[/tex]

= 0.8313

Therefore, the probability of the average mpg is greater than 28 by 0.8313.

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The manufacturer of a new compact car claims the miles per gallon (mpg) for the gasoline consumption is mound-shaped and symmetric i.e. a normal distribution. The probability of the average mpg achieved by these 30 cars will be greater than 28 is 0.8313.

Given that,

Mean a = 26.3 mpg

Standard deviation b = 11. 2 mpg

Number of cars to be tested n = 30

By applying the z score formula, we have, the probability as

P( X < 28)

= P ( X-a/ (b/√n) < 28-26.3/(11.2/√30))

= P ( X-a/ (11.2/√30) < 1.7/(11.2/√30))

= P ( X-a/2.044 < 1.7/2.044 )

= P ( Z < 0.8313)

Thus, the required probability of the average mpg is greater than 28 by 0.8313.

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find the electric potential vp at point p, in volts. assume the potential is zero at infinity.

Answers

Answer hello

Explanation: hello

What critereia does your compass need to meet for it to work as a magnetometer?

Answers

Answer:

A magnetometer must be level to the earth's surface, free of ferrous objects that might interfere with the earth's magnetic field, and with knowledge of the declination angle in order to determine compass headings.

Answer: the device must be level to the earth's surface, there should not be any ferrous materials interfering with the earth's field and the declination angle must be known.

Explanation:

what are the types of measurement units used in colombia?

Answers

The types of measurement units used in Colombia is international System of Units (SI),  which is the successor of the Decimal Metric System.

What is the international System of Units?

The International System of Units, known by the international abbreviation SI in all languages and sometimes pleonastically as the SI system, is described as the modern form of the metric system and the world's most widely used system of measurement.

This means that since instead of inches, feet or miles, Colombia will  be using centimeters, meters and kilometers.

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Give 3 differences between respiration and photosynthesis.

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Respiration and photosynthesis are biological reactions in the environment each other. Both produce energy but in two different forms.

Differences between respiration and photosynthesis.

During photosynthesis, Oxygen is released, and Carbon dioxide is consumed, but Carbon dioxide is liberated, and Oxygen is consumed during respiration.

Photosynthesis converts radiant or light energy into chemical or bond energy. Respiration delivers chemical or potential energy for several other functions in the body. Photosynthesis contains two stages light reaction and dark reaction. Respiration consists of two stages, they are inhalation and exhalation.

So we can conclude that The raw materials of photosynthesis are Carbon dioxide and water, but the raw materials of respiration are glucose and Oxygen.

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The inductor in (Figure 1) is a 9.0-cm-long, 2.0-cm-diameter solenoid wrapped with 300 turns. Part A What is the current in the circuit 10 us after the switch is moved from a to b? Express your answer with the appropriate units. * mo ? Units 1 = Value Figure (< 1 of 1 > Submit Request Answer Provide Feedback 302 w 6.0V

Answers

The current in the circuit 10 μ after the switch is moved from a to b is 18.084 A

A circuit is an arrangement of electronic parts, such as transistors, resistors, and capacitors, connected by conductive lines to form a closed circuit. The parts are put together in a way that permits an electrical current to pass through them, which enables electricity to be used to power machinery and other objects

The curent of the circuit can be calculate as follows:

B = ( N x μ0 )/ d

d refers diameter of solenoid = 2.0 cm = 0.02 m

N refers number of turns of wire = 300

μ0 refers permeability of free space = 12.56 x 10⁻⁷ H/m

B is the current

Then the flow of the current is calculated as,

B = ( N x μ0 )/ d

B = [4π x 10⁻⁷ x 300] / 2 x 10⁻²

B = 18.084 A

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if star a is closer to us than star b, then star a's parallax angle is _________.

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A star's parallax angle is less than a star's counterpart if star an is closer to us than star b. When an object is seen from two separate lines of sight, there is a distortion or change inside the perceived position object.

Inclination between those two lines is quantified as an parallax angle or semi-angle. A body can change its state of rest or motion when an external force acts on it. It is directed and has a magnitude. Force is applied at a location known as the application, and the direction in which it is applied is referred to as the force's direction. An influence that can alter an object's motion is referred to as a force in physics.

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a bolt has a stuck nut that requires 3.50 n m of torque to turn. if a 5.00 N (tangenital) force is exerted on a wrench, how long must the wrench be to turn the nut?

Answers

The length of the wrench needed to turn the nut is 0.7 m.

What is length?

Length is the distance between two points. The s.i unit of length is meter (m)

To calculate the length of the wrench needed to turn the nut, we use the formula below.

Formula:

L = T/F..................... Equation 1

Where:

L = Length of the wrenchT = TorqueF = Force

From the question,

Given:

T = 3.5 N.mF = 5.00 N

Substitute these values into equation 1

L = 3.5/5L = 0.7 m

Hence, the length of the wrench is 0.7 m.

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to calculate the masses of stars in a binary system, we must measure their ________.

Answers

BINARY STARS

To calculate the masses of stars in a binary system, we must measure their orbital characteristics.

Binary stars are two stars that are gravitationally bound to each other and orbit around a common center of mass.

The masses of the two stars in a binary system can be calculated by measuring their orbital characteristics, such as their orbital period (the time it takes for the stars to orbit each other), their orbital radius (the distance between the stars at their closest approach), and their orbital eccentricity (a measure of the deviation of the orbit from a perfect circle). By analyzing these characteristics, astronomers can use the laws of gravity to calculate the masses of the stars in the system.

Other techniques for measuring the masses of stars include observing the spectra of the stars (which can reveal their surface gravity and temperature), observing the motion of the stars (which can reveal their mass through their acceleration), and observing the stars' interaction with other objects (such as planets or disks of dust and gas).

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At 20 ∘C (approximately room temperature) the average velocity of N2 molecules in air is 1050 mph.
What is the average speed in m/s?
What is the kinetic energy (in J) of an N2 molecule moving at this speed?
What is the total kinetic energy of 1 mol of N2 molecules moving at this speed?

Answers

The formula KE = 1/2 mv2 describes the kinetic energy of a single N2 molecule, where m is the molecule's mass and v represents its velocity.

What is kinetic energy?

Kinetic energy is the energy that an object has as a result of motion. We have to work hard in order to apply a force. Energy is transmitted to the object once the work is accomplished, at which point it moves at a new, constant speed. A ball that is falling freely from a rooftop serves as an illustration of this. The ball has translational kinetic energy and is still falling straight down. The relationship between kinetic energy and an object's mass (m) and its squared speed is straightforward (v).

What is kinetic energy formula?

Kinetic energy has the following formula: K.E. = 1/2 m v2, where m is the object's mass and v is its square velocity. The kinetic energy is measured in kilograms-meters squared per second squared if the mass is measured in kilogrammes and the velocity is measured in metres per second.

As a result, the formula for the total kinetic energy of one mole of N2 molecules travelling at 1050 miles per hour is

KE = 1/2 (28.014 x 6.022 x 10^23) x (1050 mph)^2

KE = 1.11 x 10^29 Joules

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All except one of the following require the application of a net force. Which one is the exception? Why?
A) Changing an object from a state of rest to a state of motion
B) Changing an object's speed without changing its direction of motion
C) Maintaining an object in motion at a constant velocity
D) Maintaining an object in uniform circular motion
E) Changing an object's direction of motion without changing its speed

Answers

Changing an object's speed without altering its direction of travel.

What demands the use of net force?

To alter an object's velocity, you require a net force. To maintain steady motion, no force is necessary. Anytime there is a net force acting on an object, that object must accelerate. The vector sum of all forces exerted on an object represents its net force.

Which of the following has no net force?

An item that is originally at rest and has no net forces operating on it will continue to be at rest. If it is travelling, it will keep going in a straight line at a consistent speed. Pushes or pulls on an object are examples of forces.

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A(n)______________ tide occurs when the sun is at right angels to the line between earth and the moon

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A(n) Neap tide occurs when the sun is at right angels to the line between earth and the moon.

The Neap tideThis means that the gravitational pull of the sun is equal to that of the moon and the high and low tides are not as extreme. During neap tides, the difference between low and high tides is at its minimum.A neap tide is a type of tidal pattern that occurs twice a month when the sun and moon are at right angles to each other in relation to the Earth. This configuration creates weaker tidal forces, resulting in a much smaller tidal range than during a spring tide. During a neap tide, the tidal range is usually only about half of the average tidal range for that particular location. Neap tides often occur during the first and last quarters of the moon.During these times, the gravitational pull of the sun partially cancels out the gravitational pull of the moon. This results in a weaker tidal range and a smaller difference between high and low tides. Neap tides are important for coastal areas because they cause less flooding than spring tides, which have a much larger tidal range. Neap tides can also help fishermen to better predict when and where they can find the best fishing spots.

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While fishing on the pier you observe that wave crests are spaced 2 meters and are moving at about 10 m/s, what is the frequency of this wave?.

Answers

Answer:

5HZ

Explanation:

The frequency of a wave:

It is the number of wave crests  that pass a fixed point in one second. To find the frequency of the wave you observed, we divide velocity by wavelength as below.

frequency = velocity / wavelength

where velocity is the speed of the wave and wavelength is the distance between consecutive wave .

Since the wavelength of the wave is 2m and the velocity of the wave is 10 m/s, we can calculate the frequency of the wave as:

frequency = 10m/s / 2m = 5 Hz

A man with mass m1 = 51 kg stands at the left end of a uniform boat with mass m2 = 168 kg and a length L = 3.3 m. Let the origin of our coordinate system be the man’s original location as shown in the drawing. Assume there is no friction or drag between the boat and water.
What is the location of the center of mass of the system? (1.26m)
If the man now walks to the right edge of the boat, what is the location of the center of mass of the system? (1.26m)
After walking to the right edge of the boat, how far has the man moved from his original location? (What is his new location?) (2.53m)
After the man walks to the right edge of the boat, what is the new location the center of the boat?
Now the man walks to the very center of the boat. At what location does the man end up?

Answers

(a) The center of mass of the system is 1.26 m.

(b) If the man walks to the right edge of the boat, the center of mass of the system is unchanged, 1.26 m.

(c) After walking to the right edge of the boat, the man has moved 2.53 m from his original location.

(d) After walking to the right edge of the boat, the new location center of the boat is 0.88 m.

(e) The man ends up at 1.26 m.

Man on a boat

A man stands at the left end of a uniform boat. The coordinate system is the man's original location as shown in the picture and we assume that there is no friction or drag between the boat and water. The picture is in the attachment.

Mass of a man, m₁ = 51 kgMass of the boat, m₂ = 168 kgLength of the boat, L = 3.3 m

The man's location is at x₁ = 0.

The center of the boat is at x₂ = L/2 = 1.65 m.

(a) The center of mass of the system would be

x₀ = (m₁x₁ + m₂x₂)/(m₁ + m₂)

x₀ = [51(0) + 168(1.65)]/(51 + 168)

x₀ = 277.2/219

x₀ = 1.26 m

(b) If the man walks to the right edge of the boat, the center of mass of the system would remain the same. This is because there is no friction between the boat and water. So, it would be 1.26 m.

(c) After walking to the right edge of the boat, the illustration of the man's location is shown in the attachment!

x₂ = x₁ - 1.65

The man's location (x₁) is at

x₀ = (m₁x₁ + m₂x₂)/(m₁+m₂)

1.26 = (51x₁ + 168(x₁ - 1.65)/(51+168)

1.26 = (51x₁ + 168x₁ - 277.2)/219

275.94 = 219x₁ - 277.2

553.14 = 219x₁

x₁ = 2.53 m

(d) The new location of the center of the boat is

x₂ = x₁ - 1.65

x₂ = 2.53 - 1.65

x₂ = 0.88 m

(e) If he walks to the very center of the boat, he would end up at the center of mass of system, at 1.26 m. The center of mass is unchanged as explained in point b.

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A moving object has O speed.O Momentum.O energy. O velocity. O all of the above

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According to the given information A moving object has all of the above.

What is momentum ?

Speed is a scalar quantity that represents the magnitude of the velocity of an object, and it is measured in units such as meters per second (m/s).

Momentum is a vector quantity that represents the product of an object's mass and velocity, and it is measured in units such as kilogram-meters per second (kg·m/s).

Energy is a scalar quantity that represents the ability of an object to do work, and it is measured in units such as Joules (J).

Velocity is a vector quantity that represents both the magnitude and direction of an object's motion, and it is measured in units such as meters per second (m/s).

A moving object has all of the above properties.

It's important to note that all of these properties are related and they can be converted to each other, but they are not the same thing.

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A racing car has a mass of 1910 kg. the acceleration of gravity is 9.8 m/s^2. What is its kinetic energy if it has a speed of 109 km/h?

Answers

A racing car having mass 1910 kg and speed 109 (km/h) have the kinetic energy of 28,915 J.

According to question,

mass of a racing car =1910 kg

acceleration due to gravity=[tex]9.8m/s^{2}[/tex]

speed of a car=109 (km/h)

Kinetic energy is a type of power that a moving object or particle possesses. An item accumulates kinetic energy when work, which involves the transfer of energy, is done on it by exerting a net force. A moving object or particle has kinetic energy, which depends on both its mass and its rate of motion.

Now, Kinetic Energy[tex]=\frac{1}{2}mv^{2}[/tex]

Now, put the value of m and v in formula

Kinetic Energy=[tex]\frac{1}{2}(1910)(\frac{109*1000}{3600} )^{2}[/tex]

Kinetic Energy=28,915J

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A racing car with mass of 1910 kg and speed of 109 km/h has a kinetic energy of 875.62 kJ.

Now, let us convert km/h to m/s.

109 km/h = 109 × 5/18 = 30.28 m/s

Given,

Mass of the race car = 1910 kg

Speed = 30.28 m/s

Acceleration due to gravity = 9.8 m/s²

The kinetic energy can be calculated as,

K.E = 1/2 × m v² = 1/2 × 1910 × 30.28² = 875618.87 J = 875.62 kJ

Thus, the required kinetic energy of the racing car with mass of 1910 kg and speed of 109 km/h is 875.62 kJ.

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