in the figure, if the tension in string 1 is 135 n and the tension in string 2 is 220 n, what is the mass of the object shown?

Answers

Answer 1

The mass of the object will be 20 kg

What would be the mass of object shown?

First, create a free-body diagram for the item and label it. I've included a drawing I made that depicts all the relevant forces at work on the object.

The tension forces (T1 and T2), their x and y components, and the weight force are shown on the free-body diagram (w).

In order to apply this angle later in the issue to determine the object's mass using Newton's Second Law, we want to start by determining the angle theta ().

By utilizing the knowledge that there are no imbalanced horizontal forces acting on the item and that the net force is zero, we can determine the angle.

This implies that T1 sin(40) = T2 sin(). Create an equation with them equal to one another and find the angle. The tension forces are provided as T1 = 34 N and T2 = 24 N.

T1 sin(40) equals T2 sin().

220 * sin() = 135 * sin(40).

To determine sin(), multiply 135 by sin(40) and divide the result by 220.

0.3944378513 = sin(Θ)

Consider both sides of the equation's inverse sine.

Θ = sin⁻¹(0.3944378513) (0.3944378513)

Θ = 23.2309189°

Now that we have the angle, we can utilize it to construct a mass-related equation according to Newton's Second Law.

We are aware that the object is subject to a weight force that is applied downward and is equal to mg (mass divided by the gravitational acceleration).

The two tension forces' x-components are the two forces pushing upward on the item.

Since the item is not moving vertically, we may infer that the net force must be zero (F = ma, and since there is no acceleration, F = 0 N).

The forces acting in the y-direction added together will equal zero. We can construct the following equation by making the upward direction positive and the descending way negative:

F is equal to T1 cos(40) plus T2 cos(23.2309189) - mg = 0.

Weight force (mg) should be added to both sides of the equation.

T2 cos(23.2309189) + T1 cos(40) = mg

Change T1 to 135 and T2 to 220.

220 * cos(23.2309189) + 135 * cos(40) = mg

On Earth, the gravitational acceleration is 9.8 m/s2. To find the object's mass, m, solve the problem using this number as a substitute.

220 * cos(65.59058699) + 135 * cos(40) = m (9.8)

Analyze the equation's left side.

194.30766 = 9.8m

M = 19.829, multiply both sides of the equation by 9.8.

Since the problem provides us with the tension forces as two significant values, round this to two.

m ≈ 20 kg

The object in the image weighs about 20 kg.

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Related Questions

Moons of Jupiter Assignment The version of Kepler's Third Law that we used was p2 a3 and we noted it was applicable to the solar system. Actually, it applies only to an object orbiting the Sun (or a solar-mass star). By adding Newton's discoveries about gravity to Kepler's 3rd Law we can learn something about the mass of a body like the sun. Within our solar system, we will assume that the Sun is much more massive than Earth, or any of the other planets. In that case we can write Kepler's 3rd Law in a way that includes the force of gravity. p the period in Earth years a the semi-major axis in AU M the mass of the objects in solar units p2 More technically, M is the total mass of the system (in this case, the Sun+ the planet). Since the mass of the Sun is large compared to the mass of any of the planets, we are ignoring that the orbiting body has any mass because it is too small to have a significant effect. For this assignment, we want to apply Kepler's Third Law, as modified by Newton, to Jupiter and its Galilean moons. Our goal is to determine the mass of Jupiter Since it would take a long time to gather data about the orbits of the moons, we will use data gathered from others Orbital Period, Earth Days Maximum Distance, Jupiter Dia. Moon Name lo Europa Ganymede Callisto 1.7 3.5 7.2 16.7 4.7 7.5 13 Before you can use the same equation as you did for Mars, you have to account for units. The units are summarized in the follow table: gs Review View ·-·-·-·恒恒 솨 AaBbCcDdEe AaBbCcDdEe AaBbCcD AaBbCcDdE L. Worrmal Heading 1 Heading 2 E :-▼S. ,_if] No Spacing Units Needed Units You Have Quantity Earth Years AU Solar Masses Earth Days Jupiter Diameters kg (you will find this one) P (period) A (semi-major axis) Mass In analyzing these units, you can come up with a conversion factor that will allow you to find the mass of Jupiter in kg. Doing this for you, taking into account all these conversions, and solving for M (the mass of Jupiter in kg) the equation for Kepler's Third Law applied to the Galilean moons of Jupiter will become: (2.297 x 102%) Now you can use the data from Jupiter's moons without converting to AU and years to determine the mass of Jupiter. For example: A Made-up Moon has a period of 2 earth days and a semi-major axis of 22. Based on this, the mass of Jupiter would be (2.297 x 1026) = )2 (2.297 x 104) = 6.11 x 1029 kg M = Since this is a made-up moon, the value calculated will not match your values for the mass of Jupiter 1. Find the mass of Jupiter using the data from each Moon. Moon Name I0 EUROPA GANYMEDE CALLISTO Mass of Jupiter (kg) Average: 2. Determine the average mass of Jupiter from this data. Enter your numerical values in standard scientific notation with two decimal places. Use E format. For example, 1 2 Since this is a made-up moon, the value calculated will not match your values for the mass of Jupiter. Find the mass of jupiter using the data from each Moon. 1. Mass of Jupiter (kg) Moon Name IO EUROPA GANYMEDE CALLISTO Average: Determine the average mass of Jupiter from this data. Enter your numerical values in standard scientific notation with two decimal places. Use E format. For example, 1 x 105 would be entered as 1.00EO5. 2. 3. Your textbook gives the mass of Jupiter as 1.90 x 107 kg. How does your value compare to this value? What are some possible reasons for the difference between the values? 4. Note, your answers will be submitted via a quiz format.

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Kepler's third law, p^2 is a^3, means that the square of the total time period of a planet's revolution the sun is directly proportional to the cube of its mean distance from the Sun.

What is Kepler's law ?

The orbits of planets around the Sun are described by Kepler's laws of planetary motion, which he published between 1609 and 1619.

A planet's orbit is an ellipse with the sun at one of its foci. Equal areas are covered by the position vector r(t) from the sun to the planet in an equal amount of time. The semi-major axis of an orbital planet's semi-major period of revolution around the sun is proportional to the cube of that semi-major period's length.

They were essential in the discovery of dark matter in the Milky Way and have been used to forecast the orbits of several objects, including comets and asteroids.

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two identical billiard balls are on a frictionless, horizontal surface. ball 1 has an initial velocity of 5.00 m/s in the positive x direction, and ball 2 is initially at rest. the balls collide, and, after the collision, ball 1 is moving at a speed of 2.00 m/s at an angle of theta = 30.0 below the positive x axis, as shown in the diagram

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After collision, " 4.58m/s" would be the speed of the 2nd ball.

What is the speed of the ball 2 after collision?

According to the question,

Before collision,

Speed of 1st ball = 5.00 m/s

After collision,

Speed of 1st ball = 4.35 m/s

By using the energy conservation, we get

Ef = 1/2mv₁² + 1/2mv₂²

⇒  1/2mv² = 1/2mv₁²V + 1/2mv₂²

⇒  v² =  v₁²  + v₂²

    v² =  √(v₂² - v₁²)

By substituting the values, we get

⇒ v² = √(5²-2²)

= 4.58 m/s

What is friction?

Between two surfaces that are sliding or attempting to slide over one another, there is a force called friction.

What is collision?

In physics, collision, often known as impact, is the sudden, powerful coming.

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suppose you empty a tray of ice cubes into a bowl partly full of water and cover the bowl. after one-half hour, the contents of the bowl come to thermal equilibrium, with more liquid water and less ice than you started with. select the following statements that are true. the temperature of the liquid water is higher than the temperature of the remaining ice. the comparative temperatures of the liquid water and ice depend on the amounts present. the temperature of the liquid water is less than that of the ice. the temperature of the liquid water is the same as that of the ice.

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The temperature of the liquid water is the same as that of the ice by definition of thermal equilibrium.

When two physical systems are linked by a channel permeable to heat, they are said to be in thermal equilibrium if there is no net movement of thermal energy between them. The zeroth law of thermodynamics is observed in thermal equilibrium. Heat is the energy transfer from a high temperature to a low temperature. The system is considered to be in thermal equilibrium when their temperatures are equal, heat no longer flows, and this happens. Additionally, thermal equilibrium indicates that there is no matter entering or leaving the system. When the engine temperature eventually reaches the same level as the air temperature, thermal equilibrium has taken place. After being on the table for a short while, a cup of hot tea cools to the same temperature as its surroundings.

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An object is placed in a fluid and then released. Assume that the object either floats to the surface (settling so that the object is partly above and partly below the fluid surface) or sinks to the bottom. (Note that for Parts A through D, you should assume that the object has settled in equilibrium.)
An object is floating in equilibrium on the surface of a liquid. The object is then removed and placed in another container, filled with a denser liquid. What would you observe?
Hints

Answers

when an object is placed in a fluid and then released ,The object will float if the density of object ( Pobject )is less than the density of fluid ( Pfluid ) .Pobject < Pfluid -> object will float .

The object will sink if density of object ( Pobject ) is more than the density of fluid ( Pfluid ) .Pobject > Peluid - object will sink

Here , the object is floating on the surface of liquid of first container . So , the density of object is less than the density of liquid .

object < Pliquid 1

Now , the object is removed and placed in second container with Liquid 2 having density greater . Puquid 1 < Pliquida

so ,Pobject < Pliquids < Pliquidz

In this case , object well float also , but its depth will be less than it was in thefirst container,( Liquid 2 is denser).

Here , in this case, we will observe :The object will float submerged less deeply than in the first containers.

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write out the equation for your line of best fit using variables from class. (example: y is distance, x is distance, t is time, etc). you will want to write y

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The distance formula is given by:

d = √[(x₂ - x₁)² + (y₂ - y₁)²]

We want to find the distance between (a,b) and (x,y).

The center of the habitat is missing in the question.

Assuming the center is (a,b) where a and b are real numbers, then we can use the distance formula to obtain:

d = √[(x - a)² + (y - b)²]

For instance if the center of your habitat us (2,-1), then

d = √[(x - 2)² + (y + 1)²]

Therefore, the equation of line with distance formula can be written as

d = √[(x₂ - x₁)² + (y₂ - y₁)²]

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f the amplitude of a simple harmonic oscillator is decreased (initial spring stretch), which of the following quantities will change the most ? maximum speed maximum acceleration total mechanical energy

Answers

The correct answer is : Option E : total mechanical energy

What is amplitude of a simple harmonic oscillator?

Any location (in our case, the x location) as a function of time, with the following two components, can be used to express simple harmonic motion: Amplitude: The distance between the motion's center and either extreme. Period: The length of time it takes for a motion to complete one cycle.

The greatest deviation from the mean position is the amplitude of oscillation for a body that oscillates. It is the distance between the peak or trough of the wave and its mean position. The loudness of a sound will increase with increasing sound wave amplitude.

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Listed following are several locations in the Milky Way Galaxy. Rank these locations based on their distance from the center of the Milky Way Galaxy, from farthest to closest.
Farthest
-a globular cluster in the outskirts of the halo
-a cloud of gas and dust in the outskirts of the disk
-our solar system
-the edge of the central bulge
Closest
Feedback: Correct
The central bulge extends out about 5,000 light-years from the galactic center. Our solar system is about 28,000 light-years from the center, which is about halfway through the disk. The halo extends to much greater distances than the 50,000 light-year diameter of the disk, which is why this choice is ranked first.

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Approximately 5,000 light-years separate the galactic center from the central bulge. The distance to the center of the disk, or halfway through it, is around 28,000 light-years, or our solar system.

The Sun and the things that circle it make up the solar system, which is gravitationally linked. The gravitational collapse of a massive interstellar molecular cloud gave it birth 4.6 billion years ago. The Sun is the system's primary mass, accounting for 99.86% of its total mass, with Jupiter making up the majority of the remaining mass. Mercury, Venus, Earth, and Mars are the four planets in the inner solar system, and they are all terrestrial planets with rocky and metallic cores. In comparison to the terrestrial planets, the four giant planets of the outer solar system are significantly bigger and more massive. The two biggest, Jupiter and Saturn, are gas giants made primarily of hydrogen and helium; the next two, Uranus and Neptune, are ice giants made primarily of combustible materials.

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what is the translational speed of the rotating hoop after it has descended a distance 0.750 mm ? express your answer in meters per second.

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The transitional speed of the rotating is 33.8 rad/s

What is angular momentum and an illustration of it?

The term "angular momentum" refers to the characteristic of any rotating object that is determined by the product of the rotating item's angular velocity and moment of inertia. It is a vector with a direction and a magnitude. The rotation and revolution of the Earth are common instances of angular momentum.

What characteristics does angular momentum have?

The angular momentum of a body in classical mechanics is a vector that can have any length and any direction. Imagine a bicycle wheel spinning. The direction of its angular momentum is along its axle, and the length of it is proportional to its angular velocity (number of revolutions per unit time).

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in the figure, a ball hangs by a very light string. what is the minimum speed of the ball at the bottom of its swing (point b) in order for it to reach point a, which is 1.0 m above the bottom of the swing?

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0.33 m/s is the minimum speed of the ball at the bottom of its swing (point b) in order for it to reach point a, which is 1.0 m above the bottom of the swing.

distance=1 m

v=?

time= 3 second

velocity =distance/time

velocity=1/3

velocity=0.33 m/s

When describing how quickly something moves or how much its location changes over time, the scalar variable speed can be utilized. It is frequently abbreviated to "s." By dividing the entire distance traveled by the period's duration, the average speed of an object is determined.

The unit of measurement for speed is time divided by distance. Although the unit of speed most frequently employed in daily life is the kilometer per hour (kph), the meter per second (m/s) is the SI unit of speed.

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a uniform solid sphere of radius r produces a gravitational acceleration of ag on its surface. at what two distances from the center of the sphere is the gravitational acceleration (ag/2)? (hint: consider distances both inside and outside the sphere.)

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The distance of inside from the center of the sphere is R/2 and distance of outside from the center of the sphere is  √2 R when the gravitational acceleration is R/2.

What is gravitational acceleration?

Gravitational acceleration within a vacuum is the acceleration of an object within the vacuum which is used to indicate the intensity of the gravitational field.

Inside the sphere with gravitational acceleration,

ag = GrMe / R^3

R / 2 = r

Outside the sphere,

ag / 2 = GMe / r^2

r = √2 R.

Therefore, the distance of inside from the center of the sphere is R/2 and distance of outside from the center of the sphere is  √2 R when the gravitational acceleration is R/2.

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a ladder 10 ft long rests against a vertical wall. if the bottom of the ladder slides away from the wall at a rate of 1.5 ft/s, how fast is the angle between the ladder and the ground changing when the bottom of the ladder is 6 ft from the wall? (that is, find the angle's rate of change when the bottom of the ladder is 6 ft from the wall.) -.1875 correct: your answer is correct. rad/s

Answers

The angle's rate of change when the bottom of the ladder is 6 ft from the wall is 0.37 rad/s.

Let at any moment of time the foot of the ladder is at distance "x" from the wall and if the length of the ladder is L = 10 ft.

so we have

x / L = cos θ

so we have

x = L cos θ

now differentiate the above equation with time

dx / dt = -L sinθ (dθ/dt)

so we have

dθ / dt = -v(s) / L sin θ

dθ / dt = - 1.5 / 10 sin θ

as we know that

cos θ = 0.9

cos θ = cos 57

θ = 57 degrees

dθ / dt = - 1.5 / 10 sin 57

dθ / dt = - 0.37 rad / s

Therefore, the angle's rate of change when the bottom of the ladder is 6 ft from the wall is 0.37 rad/s.

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The coefficient of kinetic friction between an object and the surface upon which it is sliding is 0. 10. The mass of the object is 8. 0 kg. What is the force of friction?.

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when there is friction, Fs=784 An object's kinetic friction coefficient with the surface it is sliding along is 0. 10. 8.0 kg make up the object's weight.

How do static and kinetic friction differ?

The static friction that prevents the box from moving on its own must be overcome with an adequate opposing force for the box to move. The force that opposes the relative displacement of surfaces once they are moving is known as kinetic friction, sometimes known as dynamic friction.

w = mg = (12 kg)(9.8 m/s²)

w = 117.6 N

The weight force is equal to 117.6 N, and since the normal force is equal to the weight force, we can say that the normal force is also equal to 117.6 N.

Now that we have the normal force, we can plug it into the formula for the force of kinetic friction:

fₖ = μₖ * n  

fₖ = (0.6) * (117.6)

fₖ = 70.56 N

Which of the seven friction kinds are there?

The four basic types of friction are fluid friction, rolling friction, sliding friction, and static friction. Normal force and friction are exactly proportional to the surfaces in contact; they are independent of hardness of the touching surface.

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Like _______, X-ray bursters suddenly brighten when accreted material hits the surface of the compact object and undergoes runaway nuclear fusion.
classical novae

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Like classical novae , X-ray bursters suddenly brighten when accreted material hits the surface of the compact object and undergoes runaway nuclear fusion.

A Nova is a transient astronomical event that causes the sudden appearance of a bright, apparently "new" star (hence the name "Nova", which is a Latin word means "new") that slowly fades over weeks or months. Classical nova eruptions are the most common type. They are likely created in a close binary star system. Classical novae are the result of a hydrogen, thermonuclear runaway on top of an accreting white dwarf, in a close binary system (cataclysmic variable). Classical nova explosion are the 3rd most violent explosions than can occur in a galaxy.

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a diver bounces straight up from a diving board, avoiding the diving board on the way down, and falls feet first into a pool. she starts with a velocity of 5.00 m/s, and her takeoff point is 1.30 m above the pool.

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A diver bounces straight up from a diving board, avoiding the diving board on the way down, and falls feet first into a pool. She starts with a velocity of 5 m/s and her takeoff point is 1.3 m above the pool. The highest height she reaches is 1.25 m.

Given that, initial velocity of the diver is 5 m/s

Final velocity will be zero at the highest point

Acceleration due to gravity is taken as 10 m/s²

Using one of the equations of motion, v²- u² = 2as

where, v is the final velocity = 0

u is the initial velocity

a is the acceleration

s is the distance (here it is the height reached)

v²- u² = 2as

Making 's' as the subject, we have

s = v²- u²/ (2a)

s = 0 - (25)/(2*-10)

s = 1.25 m

Thus, the height height reached by her is 1.25 m.

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write an expression for a harmonic wave with an amplitude of 0.19 mm , a wavelength of 2.3 mm , and a period of 1.6 ss . the wave is transverse, travels to the right, and has a displacement of 0.19 mm at t

Answers

The displacement that the wave travels is y = sin{5.23t - 2.42x + (π/2)}.

As we know that the wave equation is given as

y = A sin(ωt - kx + Φ₀)

now we have

A = 0.19 m

λ = 2.6 m

so we have to find k for the wave equation for displacement

k = 2π/λ

k = 2π / 2.6

k = 2.42 rpm

also we have the time as

T = 1.2 s

So, we have the ω as

ω = 2π / t = 2π / 1.2

ω = 5.23 rad/s

now we know that at t = 0 and x = 0 wave is at y = 0.19 m

so we have

Φ₀ = π / 2

Now the wave equation will be given as

y = sin{5.23t - 2.42x + (π/2)}

Therefore, the displacement that the wave travels is y = sin{5.23t - 2.42x + (π/2)}.

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a package with a thermometer attached to the outside is released at the surface of the ocean (see sketch below). the package sinks with a constant velocity of 0.27 ft/sec. the package starts sinking when released at the surface of the ocean. the displacement of the package is defined by y(t) which has units of feet, and t is time. the temperature of the water is wt in units of of and is given by the equation below where the constant a

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Displacement is a verb that denotes movement or displacement of an object.The definition of displacement is the modification of an object's position.

What is defined as a displacement?Displacement refers to the idea that something has moved or been shifted.The term "displacement" refers to a shift in an object's position.The shortest distance between two places of an object is determined to determine its displacement.Displacement may be either zero, negative, or positive.The distance between an object's original position and its ultimate position can be calculated in physics to determine displacement.

         v = dx/dt.

For a body performing SHM, the velocity is maximal at the equilibrium position and zero at the extreme locations, i.e. at x = A, where the value of displacement is maximum.

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when space heating equipment uses electric resistance heating elements, protection for the resistance elements must not exceed?

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When space heating equipment uses electric resistance heating elements, the protection for the resistance elements shall not exceed 60 Amperes.
Understanding Heating Element

Heating element Is a device that is used as a source of heat, which is obtained by converting electrical energy into heat, also called "electric heating elements".
Electric heating elements
are widely used in everyday life, both in households, or in industrial equipment and machines.
The shape and type also vary according to function, place of installation and type of media to be heated.

The basic shape of the electric heating element
The heat generated by this electric heating element comes from a wire or electrical resistance tape.
This wire or ribbon is generally made of nickel (NiCr) which is wound into a coil.
This nickel coil winding is the most basic type of electric heating element.
Advanced form Electric heating element
There are 2 types of advanced forms of electric heating elements, namely:
1. The first type is a heating element made of nickel coils covered with a sheath only with an electrical insulating material that is resistant to high temperatures and has good heat transfer properties.
These materials can be ceramic, alumina, teflon, silica, glass and others.
2. The second type is the coil or nik coil
Lin which after being given a sleeve or coated by an electrical insulating material is then covered again by a sleeve (sheath) made of metal.
In this second type, it is the outermost heater wrap that is in direct contact with the heated media.

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light passes from a material with index of refraction 1.33 into one with index of refraction 1.20. compared to the incident ray, does the light ray bend toward the normal or away from the normal? support your claim.

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Light passes from a material with index of refraction 1.33 into one with index of refraction 1.20. compared to the incident ray, the light ray bend away from the normal.

An optically denser medium will have a higher refractive index. Which signifies that  the medium with a refractive index of  1.3  is the denser medium and the medium with a refractive index of  1.2 is the less dense medium.Whenever light travels from one medium to another, the rays bend towards or away from the normal. This is called refraction. When light moves from rarer to denser mediums, the rays are bent towards the normal otherwise it will bend away from the normal.

Hence, the light ray bend away from the normal after the refraction.

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suppose the position of an object moving in a straight line is given by (fill the blank). find the instantaneous velocity when (fill the blank).

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The position of an object moving in a straight line is given by x(t), where t is the time. Find the instantaneous velocity when t = t0.

What is velocity?
Velocity
is the direction at which an object is moving and serves as a measure of the rate at which its position is changing as seen from a specific point of view and as measured by a specific unit of time (for example, 60 km/h northbound). In kinematics, the area of classical mechanics which deals with the motion of bodies, velocity is a fundamental idea. A physical vector quantity called velocity must have both a magnitude and a direction in order to be defined. Speed is the scalar absolute value (magnitude) of velocity; it is a cohesive derived unit whose quantity is assessed in metres per second (m/s or m/s1) in the SI (metric system). In contrast to "5 metres per second east," which is a vector, "5 metres per second," for instance, is a scalar.

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find p(t) , the x component of the total momentum of the system at time t . express your answer in terms of m1 , m2 , v1(t) , and v2(t) .

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The x-component of the total momentum of the system at time t can be expressed as [tex]m_{1} v_{1} (t)+ m_{2} v_{2} (t)[/tex] in terms of m1 , m2 , v1(t) , and v2(t) .

The momentum of the body is represented as the product of its mass and velocity;

p= m×v

Where, m is the mass of a particle and v is its velocity

The momentum of the whole system is the vector sum of individual momentum of all the particles, which can be represented as

[tex]p_{net}[/tex]=[tex]p_{1}[/tex] + [tex]p_{2}[/tex] + [tex]p_{3}[/tex] +...

The X-component of the momentum of the system is:

[tex]p_{net}[/tex] (x) = [tex]m_{1} v_{1}[/tex](t)+ [tex]m_{2} v_{2}[/tex](t)

Hence, the total momentum of the system of particles will be [tex]m_{1} v_{1} (t)+ m_{2} v_{2} (t)[/tex].

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which device can determine whether a cable break or short exists and approximately how far down the cable it's located?

Answers

The device that determines a cable break or short exists is Time domain reflectometer.

What is a Time domain reflectometer?

The location of defects in transmission lines and coaxial cables can be found using a Time Domain Reflectometer (TDR). The TDR scans the transmission line with a low-voltage pulsed signal to look for any impedance-related reflections. No reflections will occur if there is no impedance mismatch over the entire length of the line, but if the transmission line is interrupted at a specific location, portion of the pulsed signal will be reflected back to the TDR. The TDR can pinpoint the precise position of a problem and determine its type, such as an open circuit, short circuit, or impedance mismatch, by monitoring the timing and propagation velocity of the received pulse.

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an object so I see 20 m/s. how far does it travel in 10 seconds​

Answers

Answer:

200 meters

Explanation:

We are given that the speed is the object is 20 m/s and we are asked to solve for the distance it goes in 10 seconds.

To do this we will use rate X time = distance

The rate = speed = 20 m/s

The time = 10 s

(20 m/s)x(10s)= 200 meters

Upon unit analysis we can see that our answer is in meters, and distance is indeed in meters, helping us know our answer is correct.

A playground ride consists of a disk of mass M =32 kg and radius R-1.7 m mounted on a low-friction axle (see figure below). A child of mass m =24 kg runs at speed V Ξ2.7 m/s on a line tangential to the disk and jumps onto the outer edge of the disk.Calculate the change in linear momentum of the system consisting of the child plus the disk (but not including the axle), from just before to just after impact. (Assume the child is initially moving in the positive direction. Indicate the direction with the sign of your answer.)

Answers

The change in linear momentum of the child plus disk system just before and just after the impact is 86.4 kgm/s.

The mass of the disk in the playground is 32 kg and its radius is 1.7 m.

The child of mass 24kg runs tangentially to the disk at a speed of 2.7m/s.

Now, the initially just before the impact, the initial linear momentum of the boy plus disk system is,

P = Mass of child x speed

P = 24 x 2.7

P =64.8 kgm/s

Now, when the child engages with the disk, then finally just after the impact the speed of the system of child plus disk will be,

P' = Mass of system x speed

P' = (24+32) x 2.7

P' = 151.2 kgm/s.

Now, the change in linear momentum is,

Change in momentum = P' - P

Change in momentum = 151.2 - 64.8

Change in momentum = 86.4 kgm/s.

So the change in momentum of the system is 86.4 kgm/s.

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what happens to the erosive power of a stream as velocity increases?

Answers

The erosive power increases as the velocity increases of the stream.

What is power?

Power is the rate of job completion or energy delivery in science and engineering. It is denoted by the symbol W/t, which is the product of the amount of labor (W) or energy (E) transported divided by the amount of time (t).

Any given amount of work can be finished fast with a high-powered motor or slowly with a low-powered motor. Units of power, which measure work (or energy) per unit of time, include joules per second (or watts), ergs per second, and foot-pounds per minute.

For picking up material as opposed to carrying it in suspension, more velocity is required. The rate of erosion and velocity both rise during the peak discharge. Deposition and transportation are barely separated. It follows that merely a slight drop in velocity causes sedimentation.

Therefore, the erosive power decreases as the velocity increases of the stream.

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The erosive power of a stream as velocity increases because no force of interaction between positive and neutral object.

What is Coulomb's law?

Coulomb's law states that the electric force is directly proportional to the product of the charged objects.

The electric force is also inversely proportional to the square of the distance between the charges and is denoted below:

F= kq1q2/ r² (Newton)

where,

F=electric force

k=Coulomb constant

q1, q2=charges

r=distance of separation

So, here we know that when two objects are charged and placed at some distance "d" apart then the two objects will either attract or repel each other.

If the charges are of similar type then the two objects will repel while if the charges are of opposite nature then two objects will attract each other.

So here when a charge object is near the neutral then there is NO force between two objects.

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if the temperature of a blackbody is 2700 k, at what wavelength, in units of nanometers, does it radiate the most energy?

Answers

Answer:

Wavelength = 1074 nm

Explanation:

Given:

T = 2700 K

b = 2.9·10⁻³ m·K - Wine's constant

___________

λm - ?

Wine Law:

λm =  b / T

λm =  2.9·10⁻³ / 2700 ≈ 1074·10⁻⁹ m     or  λm = 1074 nm

a string is wound around a hollow, cylindrical drum with a mass of 2 kg. it is then threaded through a solid pulley with the same mass and radius as the drum, and is pulled upward with a force f (see figure).

Answers

A string is wound around a hollow, cylindrical drum with a mass of 2 kg. it is then threaded through a solid pulley with the same mass then angular acceleration will be  37.5 rad/[tex]s^2[/tex]

Angular acceleration = (30×0.4)/2×(0.4[tex])^2[/tex] =37.5 rad/[tex]s^2[/tex]

A torque that does not result in an angular acceleration is called static. Here are a few instances of static torque:

Static torque can be applied in a number of ways, like pushing a closed door while it is still in place and pedalling a bicycle at a constant speed when there is no acceleration.

As a racing vehicle accelerates off the line, the drive shaft must be accelerating the wheels in an angular direction since the vehicle is moving quickly along the track.

Torque about centre line of cylinder

=F×R

=(30×0.4)Nm

Angular acceleration = (30×0.4)/2×(0.4[tex])^2[/tex]

=37.5 rad/[tex]s^2[/tex]

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A baseball is thrown directly upward at time t=0 and is caught again at time t=5s. Assume that air resistance is so small that it can be ignored and that the zero point of gravitational potential energy is located at the position at which the ball leaves the thrower's hand.

Answers

When the ball reaches maximum height it will have zero kinetic energy. When the ball begins to fall its kinetic energy again starts to increase. So it will have maximum kinetic energy at t= 5s.

What is kinetic energy?

Kinetic energy (KE) can be described as the energy possessed by a moving object because of its motion. Work done must be equal to change the kinetic energy. The kinetic energy of the object is represented as K.E = ½ mv²  where ‘m’ is the mass and ‘v’ is the velocity.

Potential Energy (P.E) can be defined as the energy that is stored by an object due to its position and is equal to P.E = m×g×h where ‘m’ is the mass, ‘h’ is the height and g is the acceleration due to gravity.

The kinetic energy of the baseball is maximum at time t=0. When the baseball reaches maximum height its kinetic energy is equal to zero. When the ball starts to fall its kinetic energy again starts to increase. So it has maximum kinetic energy at t= 5s.

The complete question is : A baseball is thrown directly upward at time t= 0 and is caught again at time t=5s. Assume that air resistance is so small that it can be ignored and that the zero point of gravitational potential energy is located at the position at which the ball leaves the thrower's hand.

Sketch a graph of the kinetic energy of the baseball.

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On a map, Tannersville, Chadwick and Barkersville form a triangle. Chadwick is 70 miles from Tannersville and Barkersville is 90 miles from Tannersville. Which is a possible distance between Chadwick and Barkersville?
O 15 miles
O 20 miles
O 120 miles
O 160 miles

Answers

The possible distance between Chadwick and Barkersville is 120 miles.

The Triangle Inequality Theorem states that the sum of any two lengths of triangle sides is larger than the length of the third side. Here, the length of one side is 70 miles and another side is 90 miles.

Let the third side be x. So, to find the third side, follow the below two steps:

First, find the sum of the two sides. The third side value should be less than the sum.Then, find the difference. The third side value should be greater than the difference.

Therefore, the sum of the two sides is 70 + 90 = 160 miles.

And the difference is 90-70=20 miles.

So the value of x should lie in the range 160>x>20.

Here, option 3 lies in this range. So, the answer is 120 miles.

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in drinking soda or water through a straw, we make use of group of answer choices bernoulli's principle. surface tension. no answer text provided. atmospheric pressure.

Answers

In drinking soda or water through a straw, we make use of atmospheric pressure; option C

What is pressure?

Pressure is the force exerted per unit area on the surface of an object.

Mathematically;

Pressure = force exerted / unit area

The pressure due to gases is a result of the molecules of the gas colliding with one another and with the surface of their container.

The atmospheric pressure is the pressure due to the weight of molecules of gas above us.

When using a straw to drink water or soda, the sucking action results in a decrease in pressure, hence, the atmospheric pressure will force the liquid up the straw.

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an ore sample weighs 17.5 nn in air. when the sample is suspended by a light cord and totally immersed in water, the tension in the cord is 12.0 nn .

Answers

(a) The total volume of the sample in the given water is [tex]$6.43 \times 10^{-4} \mathrm{~m}^3$[/tex]

(b) The density of the given sample is [tex]$\mathbf{2 , 7 7 7 . 6} \mathrm{kg} / \mathrm{m}^3$[/tex].

The given parameters;

weight of the object in air = 17.5 N

weight of the object in water = 11.2 N

The mass of the object is calculated as;

[tex]m=\frac{W}{g}=\frac{17.5}{9.8}=1.786 \mathrm{~kg}$$[/tex]

The upthrust on the object when immersed in water is calculated as follows;

[tex]$$\begin{aligned}& F_n=17.5 \mathrm{~N}-11.2 \mathrm{~N} \\& F_n=6.3 \mathrm{~N}\end{aligned}$$[/tex]

The volume of the object is calculated as follows;

[tex]$$\begin{aligned}& F_n=\rho V g \\& V=\frac{F_n}{\rho g} \\& V=\frac{6.3}{9.8 \times 1000} \\& V=6.43 \times 10^{-4} \mathrm{~m}^3\end{aligned}$$[/tex]

The  density of the sample is calculated as follows;

[tex]$$\begin{aligned}& \rho=\frac{\text { nass }}{\text { volume }} \\& \rho=\frac{1.786}{6.43 \times 10^{-4}} \\& \rho=2,777.6 \mathrm{~kg} / \mathrm{m}^3\end{aligned}$$[/tex]

Complete question: an ore sample weighs 17.50 N in air whan the sample is suspended by a light cord and totally immersed in water the tension in the cord is 11.20 N find the total volume and density of the sample?

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