Where is infrared located on the electromagnetic spectrum in relation to other kinds of radiation?

Answers

Answer 1

Infrared rays are located in the electromagnetic spectrum between radio waves and gamma waves.

Electro magnetic radiation travels in waves, just like waves in an ocean. The energy of the radiation depends on the distance between the crests (highest points) of the waves, or the wavelength. In general, the smaller the wavelength, the higher the energy of the radiation. Gamma rays have wavelengths less than ten trillionths of a meter which is about the size of the nucleus of an atom. This means that gamma rays have very high energy.

Radio waves, on the other hand, have wavelengths that range from less than one centi-meter to greater than 100 metres. The energy of radio waves is much lower than the energy of other types of electro magnetic radiation. The only type of light detectable by the human eye is visible light. It has wavelengths about the size of a bacteria cell and its energies fall between those of radio waves and gamma rays.

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Related Questions

find the magnitude and direction of the equilibrant force for these two concurrent forces: 13.5 n, e and 32.0 n, n.

Answers

the magnitude and direction of the equilibrant force for these two concurrent forces: 13.5 n, e, and 32.0 n, n is 34.73 Newtons and 22.78degrees.

there are two forces on noth direction and east discretion with the magnitude of 32N and 13.5N respectively, And both are perpendicular to each other,

so, the net force is

  Fnet = (F1^2 + F2^2)^1/2

= (13.5^2 + 32^2)^1/2

= 34.73 Newtons

And the direction of the net force is

tanx= F1/F2

= 13.5/32

tanx = 0.42

x = 22.78degrees

An equilibrant force in mechanics is a force that places a body in mechanical equilibrium. A body exhibits zero acceleration in accordance with Newton's second law when the vector sum of all the forces acting upon it is zero.

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A car is traveling in a straight line path at a maximum speed of 7. 00 m/s. The driver of the car applies the brakes bringing the car to a stop after traveling 10. 0 m. What is the magnitude of the car's acceleration?.

Answers

The magnitude of the car's acceleration is 2.45 m/ and this can be determined by using the equation of kinematics.

How much acceleration is the automobile experiencing?

Given :

A car is traveling in a straight-line path at a maximum speed of 7.00 m/s.The  driver of the vehicle applies the brakes bringing the car to a stop after traveling  10.0 m.

According to the kinematics:

V= u + at --- (1)

where v is the final speed, u is the initial speed, a is the acceleration and t is time.

Now, put the known terms in equation (1).

0 = 7 + at

at = -7  

t = - 7/ a--- (2)

From the kinematics the displacement is given by the equation:

S= ut +1/2 at ²

Now, put the values of u, S, and t in the above equation.

10 = 7*-7/a +1/2 *a*49/a²

Now, simplify the above equation.

20a = -49

a = -2.45

So, the magnitude of the car's acceleration is 2.45 m/.

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a 2-kilogram piece of clay moving at 3 m/sec strikes and sticks to a second 2-kilogram piece of clay moving at 1 m/sec in the opposite direction. calculate the speed of the combined piece of clay.

Answers

The combined speed of the pieces of clay of mass 2 kg respectively is 1 m/s.

What is speed?

Speed is the ratio of distance to time.

To calculate the combined speed of the piece of clay, we use the formula below.

Formula:

V = (mu+m'u')/(m+m').................. Equation 1

Where:

V = Combined speed of the claym, m' = Mass of the first and second clayu, u' = Initial speed of the first and second clay

From the question,

Given:

m = 2 kgm' = 2 kgu = 3 m/su' = -1 m/s (Opposite direction)

Substitute these values into equation 1

V = [(2×3)+(-1×2)]/(2+2)V = (6-2)/4V = 4/4V = 1 m/s

Hence, the combined speed of the piece of clay is 1 m/s.

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Element x decays radioactively with a half life of 13 minutes. If there are 400 grams of element x, how long, to the nearest tenth of a minute, would it take the element to decay to 4 grams?.

Answers

The time needed for a 400-grams radioactive element with half-life of 13 minutes to decay to 4 grams is 86.4 minutes.

The half-life formula of a decay system is given by:

A = Ao x (0.5)^(t/h)

Where:

A = final amount

Ao = Initial amount

t = time period

h = half-life

Parameters given in the problem:

h = 13 minutes

Ao = 400 grams

A = 4 grams

Plug these parameters into the formula:

4 = 400 x (0.5)^(t/13)

(0.5)^(t/13) = 0.01

t/13 x log(0.5) = log (0.01)

t/13 = 6.64

t = 6.64 x 13 = 86.4 minutes

Hence, it takes 86.4 minutes for the element X to decay to 4 grams.

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the total mass of the sun is about 2x1030 kg of which 75% was hydrogen when the sun formed. however, only about 13% of this hydrogen ever becomes available for fusion in the core. the rest remains in the layers of the sun where the temperature is too low for fusion. c) based on the given information, calculate the total mass of hydrogen available for fusion over the lifetime of the sun.

Answers

The total mass of hydrogen accessible for fusion over the sun's lifespan is roughly 1.95x10^28 kg.

What exactly is hydrogen?

Hydrogen is the lightest and most abundant element in the universe. The chemical element H has the atomic number 1 and is represented by the letter H. It is a highly combustible gas that has no flavour, odour, or colour and may be used as fuel. Hydrogen, which is created from a number of feedstocks such as natural gas, coal, and biomass, is commonly utilised as a clean energy source since it only emits water when burned.

According to the issue:

Using the available data, the total amount of hydrogen in the sun must be computed in order to identify the percentage of this mass that is appropriate for fusion in the core.

The entire mass of the sun is stated as 2x10^30 kg, with hydrogen accounting for 75% of this mass when the sun originated. This suggests that the total amount of hydrogen in the sun is (2x10^30 kg) x (75%).

The proportion of this mass accessible for fusion in the core is stated to be 13%. This suggests that the total amount of hydrogen accessible for fusion in the core is 1.95x10^28 kg (1.5x1030 kg) x (13%).

As a result, the total mass of hydrogen accessible for fusion during the sun's lifespan is roughly 1.95x10^28 kg.

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if the source is stationary, how will the received signal change if the observer is moving towards the source?

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The measured frequency rises as the observation gets closer to the static source, exceeding the source rate. The frequency difference between the perceived and source frequencies occurs when an observation is moving further away from a stationary source.

When measuring noise out of a source, the spectator's movement may modify the frequency: A greater frequency is measured by an observation who is traveling to the source. Reduced frequency is measured by an observer who is progressing away from the source. A stationary wavelength is not affected while a source is travelling in its direction.

The observer's velocity will be zero as the source arrives; as both a result, variations in frequency and wavelength will occur. Due to their inverse relationship, when wavelength is increased, frequency drops and conversely. Inquiry shows that 1=[VV5V+O]. Contains a detailed prevalence has nevertheless grown. This also happens when waves constrict across shorter distances, that reduces effective wave length and raises frequency.

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a 36 n box is pulled at a constant horizontal velocity across a table with a force of 27 n. what is the coefficient of friction between the box and the table?

Answers

The coefficient of friction between the box and the table is 0.75

Given,

The Normal force of the box (N) is 36N.

The acting force (F) on the box is 27N.

The coefficient of friction is

                μ [tex]= \frac{F}{N}[/tex]      

μ = [tex]\frac{27}{36}[/tex]

μ =  0.75

Two solid objects can't collide or roll over one another because of a force called friction. Although frictional forces, such the traction required to walk without slipping, could be advantageous, they can also be a significant hindrance to motion.

The coefficient of friction calculates how much resistance there is between two surfaces. This dimensionless number is defined as the friction force divided by the normal force.

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There are very large numbers of charged particles in most objects. why, then, don’t most objects exhibit static electric effects?

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This is because the phenomenon of static electricity requires the separation of positive and negative charges. When two substances are in contact electrons are transferred from one to the other leaving one with an excess positive charge and the other with an equal negative charge.

There are equal numbers of positive and negative charges so an object is electrically neutral. Because the phenomenon of static electricity requires the separation of positive and negative charges. When two substances are in contact electrons are transferred from one to the other leaving one with an excess positive charge and the other with an equal negative charge.

The negative charge on the earth's surface is balanced by the same positive charge in the atmosphere. An atom has a net positive charge if the number of protons is greater than the number of electrons, and a net negative charge if the number of electrons is greater than the number of protons.

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You have an Atwood machine as shown in the picture.

Mass 1 is 9 kg. Mass 2 is 16 kg. The coefficient of friction (mu) is 0.81. Use g = -9.8 m/s2.

After you find the acceleration a, what is the force of tension FT? (Make it a positive number)

Answers

Answer:
That's a good que but I don't know
Explanation:

You have one-third of an energy drink left. If you drink one-third of that, how much of your energy drink do you have left?

Answers

You would have zero energy drink left, as you have already consumed one-third of the original amount. One-third of one-third is equal to one-ninth, and that amount is the same as zero.

What is energy drink?
An energy drink is a type of beverage that is designed to provide an extra boost of energy. It usually contains high levels of caffeine and other ingredients, such as taurine, guarana, B vitamins, and/or sugar. Energy drinks are popular among people with active lifestyles and those who require a quick burst of energy. Many energy drinks contain more than twice the amount of caffeine as a regular cup of coffee. Some energy drinks can be high in calories, so it is important to read the label to know what you are consuming. Drinking energy drinks in moderation is generally safe, however, excessive consumption can lead to health risks such as heart palpitations, dehydration, and insomnia.

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Order the following methods for distance measurement from shortest to longest distance. -Radar -Type 1a supernovae -Cephid Variables -Main-Sequence Fitting
-Galactic Redshifts -Parallax

Answers

Short Distance -Radar -Parallax -Main-Sequence Fitting -Cephid Variables -Type 1a supernovae -Galactic Redshifts Long Distance

What are the purposes of Cepheid variables?

The Cepheid variable is one of a family of variable stars whose periods—i.e., the length of one cycle of variation—are strongly correlated with their luminosities and are thus helpful in determining the distances between stars and between galaxies.

How do Cepheid variables come into play while calculating distance?

It is assumed that all Cepheids with a particular time have the same absolute magnitude. We may then use the period-luminosity connection to calculate a Cepheid's distance by measuring its apparent magnitude. If a Cepheid is fainter than another with the same period, it must be further away.

Where can one find Cepheid variables?

These Cepheid variable stars are visible in other galaxies. We can really see it well beyond both the Small and Large Magellanic Clouds. However, similar stars might be found in other galaxies.

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25 POINTS TO ANSWER THIS!


(you could just type it in a sentence if you want.)

Answers

Answer:

Work is defined as the force applied over a distance. The force must be applied in the direction of motion. Work is the way that energy is added to an object or system. Because of conservation of energy, you can only get as much energy as you put in. Simple machines may reduce the force needed to complete a task, but cannot reduce the amount of work needed. The work output with a simple machine can never be greater than the work input.

Explanation:

I just used logic, and there's plenty of info to piece this together on the internet.

NOTE: There was not 25 points /:

how does the motion of the piston differ from the wheel?how does the motion of the piston differ from the wheel?the piston undergoes curvilinear translation and the wheel undergoes general plane motion.the piston undergoes rectilinear translation and the wheel undergoes curvilinear translation.the piston undergoes general plane motion and the wheel undergoes rotation and curvilinear translation.the piston undergoes rectilinear translation and the wheel undergoes rotation about a fixed axis.

Answers

Since the piston is forced to slide in a straight path, it experiences rectilinear translation. Given that it will remain horizontal while traveling in a circular motion, the connecting rod goes through curvilinear translation.

What type of motion does the piston make?

The piston reciprocates up and down in a straight line as the crank turns. Rotational motion into linear motion is converted via a crank and piston arrangement. According to the guide's orientation, the linear motion can be either vertical or horizontal (or in another direction).

How are rectilinear and curvilinear defined?

Rectilinear motion is a motion in a straight line. In this motion, each particle travels the same distance in a straight line in a parallel fashion. Curvilinear Motion: The motion of a curved line.

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the distance from earth to the sun is used to measure distances in the solar system and is called a light year. group of answer choices true false

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The given statement is flase. The distance from earth to the sun is used to measure distances in the solar system and is not called a light year,but an astronomical unit.

How is distance measured in solar system?

When represented in miles and kilometers, the distances between the planets, and especially between the stars, can grow to be cumbersome. We thus transition to whole different sorts of units for cosmic distances, such as astronomical units, light years, and parsecs.

The average distance between Earth and the Sun, or 93 million miles or 8.5 light-minutes, is measured in astronomical units (AU). A light-year is the approximate 6-trillion-mile distance that light travels in a year in a vacuum. Approximately 64,500 times longer than an AU is a light-year.

The Light Year is perfect for determining distances to faraway galaxies or stars, but it is ineffective when determining distances inside our solar system. A light may travel around 10 trillion kilometers, or 106 Km, in a single year.

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the cosmic microwave background is almost perfectly uniform in all directions, except for very small deviations in its temperature. what do scientists think these small deviations represent?

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According to the Big Bang Theory, the early universe was an extremely hot place, and as it expanded, the gas inside of it cooled. Therefore, radiation known as the "cosmic microwave background," or CMB, which is essentially the leftover heat from the Big Bang, should be present everywhere in the cosmos.

The cooled residue known as the Cosmic Microwave Background (CMB) is the first light to ever flow freely through the universe.

The temperature of the cosmic microwave background varies only very slightly from nearly perfect uniformity in all directions due to the regions of slightly higher density that made it possible for galaxies to form.

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a fisherman stands at the back of a perfectly symmetrical boat of length l. the boat is at rest in the middle of a perfectly still and peaceful lake, and the fisherman has a mass 1 /4 that of the boat. if the fisherman walks to the front of the boat, by how much is the boat displaced?

Answers

The fisherman enters the boat's front and checks to see how far it has moved is  [tex]\frac{2}{5}[/tex] L

Since the boat is symmetrical, we may be certain that its geometric centre, atx=L/2, is where the boat's centre of mass is located. In light of this, the centre of mass of the system made up of the fisherman and the boat can be determined as follows:

[tex]x_{cm}[/tex]=[tex]\frac{(m/4)(0)+m(L/2)}{m+(1/4)m}[/tex]=[tex]\frac{2}{5}[/tex] L

A boat is a watercraft that comes in a wide variety of shapes and sizes but is typically smaller than a ship, which is defined by its bigger size, shape, cargo hold, or passenger capacity, or its capacity to transport boats.

Typically, small boats are located in protected coastal areas or on inland waterways like rivers and lakes. Some vessels, like the whaleboat, were built specifically for use in offshore conditions. An object small enough to be transported aboard a ship is referred to as a boat in modern naval jargon.

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predict what happens to the system at equilibrium if (a) the temperature is raised, (b) the pressure on the system is increased,

Answers

A) As there is a temperature rise it increases the value of the equilibrium constant when the forward reaction is endothermic. Equilibrium shifts to right.

B) When pressure is increased the equilibrium shifts towards the forward direction.

What is Equilibrium?

In the study of chemical reactions, equilibrium is crucial because it provides information about the reaction's direction. Equilibrium enables us to regulate the parameters of the reaction to favour the production of desired products. Calculating the composition of the final reaction mixture also makes use of it.

What is Pressure?

The force perpendicularly applied to an object's surface divided by the area over which it is dispersed is known as pressure.

Hence, when the temperature is raised even equilibrium shifts to right, similarly when pressure is increased the equilibrium shifts towards the forward direction.

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a spring has a force constant of 100 n/m and an unstretched length of 0.07 m. one end is attached to a post that is free to rotate in the center of a smooth table, as shown in the top view above. the other end is attached to a 1 kg disc moving in uniform circular motion on the table, which stretches the spring by 0.03 m. friction is negligible. what is the centripetal force on the disc?

Answers

F equals 3N with respect to the circle's center, moving in the same direction as the centripetal acceleration.

How much centripetal force is there in a centrifuge?

Centripetal force is the force that pushes an item in the direction of its center of curvature. It is fundamental to how a centrifuge operates.

On a roller coaster, what is centripetal force?

An item travelling in a circle is pushed inward toward what is known as the center of rotation, which is essentially what a roller coaster accomplishes when it travels through a loop. The force that maintains an object moving along a curved route is this pull toward the center, or centripetal force.

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a ring on a table is pulled on by three forces that are parallel to the table. the ring is not moving. how big is the force f? (this question is looking at horizontal forces. the weight and the normal force are in vertical and balanced.)

Answers

Three forces parallel to the table pull on a table's ring with the greatest force being 20 sinθ N.

The push or pull on a massed object changes its velocity. An external force is an agent that has the power to alter the resting or moving condition of a body. It has a direction and a magnitude. Newton is the SI unit of force.

A push or pull that an object experiences as a result of interacting with another item is known as a force. Frictional force is one type of force. Force of Tension Standard Force.

The characteristics of lines of force are that they never cross, are proportionate to charge, cannot pass through a conductor, and begin at a positive charge and end at a negative charge.

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Globalization is about culture change. discuss popular culture and indigenization, where some idea, behavior, or object from western european or american culture moved to non-western or indigenous societies and culture. provide one example you learned from your textbook or class lecture of how this phenomenon operates in the world.

Answers

Globalization alludes to the expanded interconnectedness between various regions of the planet. The interaction is a kind of shared trade of values, standards, and contemplations. All of the cooperating societies are profited from the culture.

Globalization has various numerous actual signs as confirmed by the consistent development of items, products, and administrations that cross worldwide boundaries consistently. The Worldwide South which sends its wares into an unpredictable market, and gives modest work to the world's large companies, has long voiced its mistake at the unfairness of inconsistent exchange relations and global administrative associations.

The obtrusive improvement in the South to support the development based economies in the North has a negative relationship with a reasonable climate (Iqbal). Hence, they see firsthand the social and ecological repercussions that a culture of utilization makes on the planet.

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dr. chuck projects a ball horizontally from a lab bench. if the projection speed of the ball were greater, the time in the air would be

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if the projection speed of the ball were greater, the time in the air would be same

Projectile motion is a form of motion experienced by an object or particle (a projectile) that is projected in a gravitational field, such as from Earth's surface, and moves along a curved path under the action of gravity only. In the particular case of projectile motion of Earth, most calculations assume the effects of air resistance are passive and negligible.The velocity with which the body is projected is called velocity of projection.

Projectile motion equations

Horizontal velocity component: Vx = V * cos(α)

Vertical velocity component: Vy = V * sin(α)

Time of flight: t = 2 * Vy / g.

Range of the projectile: R = 2 * Vx * Vy / g.

Maximum height: hmax = Vy² / (2 * g)

The following are the three types of projectile motion:

Horizontal

Oblique

Projectile motion on an inclined plane.

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A 484 kg cannon fire a 19kg cannonball at 26m/ if the cannon i on wheel, at what velocity doe it move backward?

Answers

The velocity of the cannon moving backward is 1.021 m/s.

If two objects collision without friction, the law of conservation of momentum will apply.

p = p'

m₁ v₁ + m₂ v₂ = m₁ v₁' + m₂ v₂'

m₁ = the mass of a first object (kg) = 484 kgv₁ = the velocity of the first object before collision = 0 m/sv₁' = the velocity of the first object after collisionm₂ = the mass of second object = 19 kgv₂ = the velocity of the second object before collision = 0 m/sv₂' = the velocity of the second object after collision = 26 m/s

The cannons and cannonballs were initially still.

(484 × 0) + (91 × 0) = (484 × v₁') + (19 × 26)

0 = 484v₁' + 494

484v₁' = - 494

v₁' = - 494 ÷ 484

v₁' = - 1.021 m/s

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From what maximum height could a person jump and land rigidly upright on both feet without breaking his legs? assume that all the energy is absorbed in the leg bones in a rigid landing. Neglect any friction.

Answers

The maximum height  is 4.33m from which a person can jump rigidly without breaking any bones.

We have some data like bone maximum bearable energy is 3000J.Also,mass of person is 70kg.We know that a person cannot be broken until person jump from that height where the potential energy of person due to its position is greater than the bone energy.

It means that we need to equate or potential of person with the bone energy.

We know that potential energy of person is given by =mgh where m is the mass of the body, g is acceleration due to gravity and h is the height of the body.

Therefore, potential energy is =m × g × h

=>potential energy=70×9.8×h---------(eq1)

Now, we have bone energy =3000J -----(eq2)

Equate both equations,we get

=>70×9.8×h=3000

=>h=(3000/(70×9.8)

=>h=3000/686

=>h=4.33m

Hence, maximum height is 4.33m.

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(Complete question) is:

The maximum energy a bone can absorb without breaking is surprisingly small. for a healthy human of mass70 kg , experimental data show that the leg bones can absorb about 3000 j . From what maximum height could a person jump and land rigidly upright on both feet without breaking his legs? assume that all the energy is absorbed in the leg bones in a rigid landing. neglect any friction.

What is acceleration due to gravity constant? Include units. (numeric value)

Answers

Acceleration due to gravity is the acceleration gained by an object due to gravitational force. Its SI unit is m/s2. It has both magnitude and direction, hence, it's a vector quantity. Acceleration due to gravity is represented by g. The standard value of g on the surface of the earth at sea level is 9.8 m/s2.

what is the net torque about the axle? express your answer to three significant figures and include the appropriate units.

Answers

The net torque about it because of the wheel is 0 Nm as seen by three major values, which also comprise the proper measurements.

By adding the separate torques from every force, the net torque about the axle is determined. The definition of torque is the result of the pressure and indeed the perpendicular radius of curvature of revolution.

Torque is calculated using the formula F *r.

Consider applying pressure F1 two inches first from axle and F2 four inches again from axle.

F1 = 10 N

F2 = 5 N

F1-related torque is calculated using the formula F1  * r1.

= 10 N * 2 in

= 20 N-in

Torque due to F2 = F2 * r2

= 5 N * 4 in

= 20 N-in

The net torque is equivalent to the sum of the torques caused by factors F1 and F2.

(20 N-in plus 20 N-in)

= 40 N-in

There is a 40 N-in net torque applied towards the axle.

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a 4 kg block slides down a frictionless inclined plane with an acceleration of 3m/s2. what is the angle of the incline above the horizontal

Answers

Equation: The inclination of both the inclination well above horizontal might be estimated using its method

tan(θ) = a/g

If a denotes the block's acceleration & g denotes the velocity brought on by gravitation, wherein denotes this same degree of the slope just above perpendicular.

Here, g = 9.8m/s2 and a = 3m/s2.

The formula is given by replacing those inputs.

Solving for θ gives:

θ = 16.9°

Step 1: We need to use the equation for uniform acceleration to calculate the angle of the incline:

a = g*sinθ

Step 2: Rearrange the equation to solve for θ:

θ = sin-1(a/g)

Step 3: Substitute 3 m/s2 for a and 9.8 m/s2 for g:

θ = sin-1(3/9.8)

Step 4: Use an information to evaluate the angular position:

θ = 14.4°

Step 5: This inclination is 14.4° above that of the horizontal.

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suppose you stand in front of a spherical mirror (concave or convex). is it possible for your image to be (a) real and upright (b) virtual and inverted?

Answers

Behind the mirror are always real images. Real images may be inverted or upright. hence

(a) can be possible.

(b) cannot be possible.

What is Mirror?

Any item that reflects images is referred to as a mirror or looking glass. When focussed through the eye's or a camera's lens, light that reflects off a mirror will reveal a picture of whatever is in front of it. Mirrors reflect light from a similar but opposite angle, which changes the image's direction.

What are Real images?

In the field of optics, a true picture is one that is situated in the plane of convergence for the light rays coming from a certain object. Real images will typically appear on screens when they are positioned in their plane.

Hence, (a) can be possible and (b) cannot be possible.

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A simple pendulum consisting of a mass on a string of length L is undergoing small oscillations with amplitude. If the pendulum is taken to the moon? What happens to the time period?

Answers

A simple pendulum consisting of mass on a string of length L is undergoing small oscillations with amplitude and if the pendulum is taken to the moon, then the time period increases.

What happens to the time period when pendulum is taken on moon?

As we know that,

Time period of simple pendulum is :

T = 2π√(L/g)

Gravity of moon is 1/6th of the earth's gravity. And gravity is inversely proportional to time period, therefore time period increases. Since, the pendulum takes more time to complete one vibration, therefore it will lose time.

The mass of the Moon is about 1/80th of the Earth's mass, so the gravity of Moon is less than the Earth's gravity.

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a diffraction grating has 2000 lines percentimeter. at what angle will the first-ordermaximum be for 520-nm-wavelength greenlight?

Answers

The First-order maximum for 520 nm will be 5.97°.

Applying diffraction equations;

d = 0.01/Number of lines; where 0.01 m = 1 cm, and d = spacing between lines

Therefore,

d = 0.01/2000 = 5*10^-6 m

Additionally,

d*Sin x = m*y; where x = Angle, m = order = 1, y = wavelength = 520 nm =520*10^-9 m

Substituting;

Sin x = my/d = (1*520*10^-9)/(5*10^-6) = 0.1040

x = Sin ^-1(0.104) = 5.97°

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if my mass on earth is 70 kg, calculate my mass on the moon where the acceleration due to gravity (g) is 1.6 m/s^2. explain your answer.

Answers

My mass on the moon would be 44 kg.

This is because mass is a measure of an object's inertia, which is determined by its density and volume. Since the acceleration due to gravity on the moon is 1.6 m/s^2, the force of gravity acting on the object will be less than it is on earth, and therefore the object's mass will be less. To calculate the mass on the moon, we can use the equation m = mg/g, where m is the mass on the moon, m is the mass on earth, and g is the acceleration due to gravity. In this equation, the mass on earth is 70 kg and the acceleration due to gravity on the moon is 1.6 m/s^2, so the mass on the moon would be 70 kg x 1.6 m/s^2/9.8 m/s^2 = 44 kg.

Step 1: Determine the formula to calculate your mass on the moon. The formula to calculate mass on the moon is mass on the moon = mass on earth * (acceleration due to gravity of the moon/acceleration due to gravity of the earth).

Step 2: Insert the values into the formula. Mass on the moon = 70 kg * (1.6 m/s^2 / 9.8 m/s^2)

Step 3: Solve the equation. Mass on the moon = 70 kg * (0.1633) = 11.431 kg

Therefore, your mass on the moon is 11.431 kg.

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