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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Answer 1

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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Related Questions

Will an empty plate heat up in the microwave?.

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No, empty plate doesn't get heated up in the microwave.

This is because the microwave oven heats the food by heating the water molecules that compose it.

This is achieved by increasing the vibration amplitude of the water molecules and their kinetic energy, therefore, increasing their temperature.

So, if the element that gets into the microwave oven does not contain water (as is the case of an empty paper plate), it will not heat up.

Therefore, this is all about the transfer of energy. This the principle on which microwave works. The transfer of heat energy from one object to the other increases the kinetic energy of the particle of the other object. But no object mean no heat energy transfer and the plate isn't heated.

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What would happen if the price of an inelastic good went up?.

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The total revenue, on the other hand, rises as a result of the higher price and constant quantity demanded for an inelastic good when the price is raised and the demand remains the same.

Inelastic demand is when consumer preferences do not change as much as changes in the price of a good. When the price increases by 20% while the decrease in demand is only 1%, the demand is said to be inelastic. Elastic items are usually required when appropriate substitutes are not available. The items with the most prevalent inelastic demand are utilities, prescription drugs, and tobacco products. Businesses that sell these items may be more tolerant of price changes because demand for them never ceases, regardless of price changes. The amount of a good that is purchased has no effect on price changes when the price elasticity of demand for that good is completely inelastic; rather, higher prices will always lead to higher overall income. whenever the cost of a thing or service changes, the demand for such items remains mostly stable.

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A 1500 kg elevator, suspended by a single cable with tension 16.0 kN, is measured to be moving upward at 1.2 m/s. Air resistance is negligible.1. We want to find the elevator’s speed after traveling upward 10.0 m. This could be solved with Newton's laws and kinematics, but we will use the energy principle. How much work does tension do on the elevator as it rises 10.0 m?2. How much work does gravity do on the elevator as it rises 10.0 m?3. What is the elevator's kinetic energy after rising 10.0 m?4. What is the elevator's speed after rising 10.0 m?

Answers

Tension in the Cable is 0.87 m/s6^2, Elevator's speed after it has moved 10m is 1.6*10^5 N, Work done by gravity is  1.47 * 10^3 N, Elevator Kinetic Energy is 13897.5J and Elevator Speed after rising to 10m is 4.312 m/s.

Tension is a pulling force that operates in one dimension along the cables' axes in the opposite direction from the direction of the applied force. The combined weight of the elevator box and the passenger riding inside it, in the case of an elevator, provides the pulling force in the cables is called Tension.

A moving object or particle's kinetic energy, which depends on both mass and speed, is one of its characteristics. The type of motion can be vibration, translation, rotation around an axis, or any combination of these. Kinetic energy is a type of energy that an item or particle possesses as a result of motion.

We know that,

Tension in the Cable

T = m(g+a)  = g+a = T/m = 16 * 103 / 1500 = 10.67 m/s2

a = 10.67 - 9.8 = 0.87 m/s6^2

Elevator's speed after it has moved 10m.

U^2 = u^2 +2as

= 1.22 +2*0.87*10

=1.6*10^5 N

Work done by gravity  = mg * 10 = 14700 * 10 = 1.47 * 10^3 N

Elevator Kinetic Energy = 1/2 mv^2 = 1/2*1500*18.53 = 13897.5J

Elevator Speed after rising to 10m ,

U^2 = u^2 +2as =  1.2 +2*0.87*10 = 18.6

U =(18.6)^1/2=4.312 m/s

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Water emerges straight down from a faucet with a 1.80-cm diameter at a speed of 0.500 m/s. (Because of the construction of the faucet, there is no variation in speed across the stream.) (a) What is the flow rate in cm3 /s ? (b) What is the diameter of the stream 0.200 m below the faucet? Neglect any effects due to surface tension.

Answers

The flow rate of the faucet is 127.23 cm²/s and diameter below the faucet is 1.88 cm.

For calculating the flow rate, we will use the formula -

Q = Ar

A = πr², were Q is flow rate, A is area and r is radius.

Also, radius = diameter/2

Radius = 1.8/2

Radius = 0.9 cm

Speed = 50 cm/s

Q = πr²v

Q = 3.14×0.9²×50

Q = 127.23 cm²/s

The diameter of stream will be calculated by the formula -

[tex] v_{f}[/tex]² - [tex] v_{i}[/tex]² = 2gy, where [tex] v_{f}[/tex] is final velocity, [tex] v_{f}[/tex] is initial velocity, g is acceleration due to gravity and y is diameter of stream.

[tex] v_{f}[/tex] = ✓50² - 2×9.8×20

[tex] v_{f}[/tex] = ✓2500 - 392

[tex] v_{f}[/tex] = ✓2108

[tex] v_{f}[/tex] = 45.9 cm/s

r = ✓Q/πv

r = ✓127.23/3.14 × 45.9

r = ✓127.23/144.2

r = ✓0.88

r = 0.93 cm

d = 2r

d = 2×0.93

d = 1.88 cm

Thus, flow rate is 127.23 cm²/s and diameter is 1.88 cm.

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What is 20 miles per hour in feet per second? round to the nearest tenth if necessary.

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29.33 ft/sec is speed  in feet per second.

20 miles= 105600 ft

1 hour= 3600 second

speed= distance/time

speed=105600/3600

speed=29.33 ft/sec

It is possible to express how much an object's location shifts over time or how much it shifts per unit of time using a scalar variable called speed. It is frequently abbreviated to "s." The distance traveled by an object divided by the duration of the period gives the average speed of the object over the period.

The speed-related metric is time divided by distance. While the meter per second (m/s) is the SI unit of speed, the kilometer per hour (kph) is the most widely used unit in daily life (kph).

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Answer:

figure itout 20

Explanation:

20 -0

what is the wavelength of an electromagnetic wave that travels at 3 x 10 m/s and has a frequency of 60 mhz? (1 mhz

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An electromagnetic wave with a frequency of 60 MHz and a speed of 3 x 108 m/s has a wavelength of 5 m .

Explain about the wavelength of an electromagnetic?

The wave number is given by the formula k = 2/, where is the wave's wavelength. The wave's frequency is given by the formula f = /2, where is the angular frequency.

The electromagnetic spectrum is a range of frequencies, wavelengths, and photon energies that includes frequencies between 1 hertz and over 1025 Hz and wavelengths between a few kilometers and a small portion of the size of an atomic nucleus in the spectrum of electromagnetic waves.

The radio waves Radio waves are those electromagnetic waves that have the lowest frequency and longest wavelengths.

The electromagnetic wave's wavelength can be determined using the following formula:

If =v/f, then

V is the speed.

The frequency is f.

given the aforementioned variables

f = 60 MHz = 60 000 000 Hz

v = 3 x 10 m/s

= 3 x 10 /6

=5

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Do scientific models always have limitations?.

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Yes, scientific models have limitations as it is simpler that the original objects.

Models cannot include all the info on the objects that they represent. as an instance, maps cannot consist of all of the details of the functions of the earth including mountains, valleys, and so forth. Hence they have limitations of their own respectively.

All models have barriers because they are now not representative of every feasible state of affairs. They use modern expertise and clinical statistics, but as the ones are subject to exchange, the models based totally on that know-how and statistics are a problem to alternate as properly. Scientific models always have some limitations they will never be completely accurate.

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A 4.0-kg mass is placed at (3.0, 4.0) m, and a 6.0-kg mass is placed at (3.0, -4.0) m. what is the moment of inertia of this system of masses about the z-axis?

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The moment of inertia of this system of masses about the z-axis is 99 kg[tex]m^{2}[/tex].

Given,

Mass of first object, [tex]m_{1}[/tex] = 4 kg at (3, 4) m

Mass of second object, [tex]m_{2}[/tex] = 6 kg at 3, -4) m

The moment of inertia (I) of a system of particles is given as,

I = [tex]m_{i}x_{i} ^{2}[/tex]

Here, I = [tex]m_{1}x_{1} ^{2}[/tex] + [tex]m_{2}x_{2} ^{2}[/tex]

Moment of inertia, I = (4×[tex]3^{2}[/tex] )+ (6×[tex]3^{2}[/tex])

= (5×9) + (6×9)

= 45 + 54

I = 99 kg[tex]m^{2}[/tex]

Hence, the moment of inertia will be 99 kg[tex]m^{2}[/tex].

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a 1 kg object is dropped from a height of 100 meters. air resistance is negligible. at what height will it reach half the potential energy?

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The 1kg object dropped from 100m would reach half its potential energy halfway through the drop.

What is potential energy?

Simply explained, potential energy is the energy that an object holds due to its position in relation to a zero point. An object has gravitational potential energy if it is positioned at a height above (or below) the zero height.

Potential energy is energy that is conserved or stored in a substance or object. The amount of stored energy depends on the arrangement, organization, and state of the object or substance.

It can be thought of as energy that has the "potential" to do work. When the object's position, configuration, or state changes, the energy will also change.

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Radiation in the infrared (IR) range is________
in energy than visible or ultraviolet light. When a molecule absorbs IR radiation,_________ within the molecule and each____________ creates a band in the molecule's IR spectrum

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Compared to visible or ultraviolet light, infrared (IR) radiation has [lower] energy.A molecule's internal bonds vibrate when it absorbs IR radiation, and each [ wavelength] produces a band in the molecule's IR spectrum.

Between visible light and X-rays on the electromagnetic spectrum is ultraviolet light.The wavelength range of UV "light" is between 10 and 400 nanometers. The wavelength of VL is about Four hundred nanometers. Hospitals use UV rays because of their potency to sterilize medical equipment. All living cells are destroyed by the high UV radiation doses. Elephants cover themselves in mud to shield themselves from the sun. Under UV light, scorpions glow. UV radiation is a type of non-ionizing radiation that is emitted by artificial sources like tanning beds and the sun. While it can produce vitamin D, which is good for people, there are also potential health risks. The sun is a natural source of UV radiation for us.

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Radio wave from pace are gathered and reflected toward the focal point where the receiver receive them, and wave are tranmitted to the recording device

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Radio waves from the pace are gathered and reflected toward the focal point where the receiver receives them, and waves are transmitted to the recording device the same radio source is being watched by two radio telescopes. On the ground, there is a known separation between the telescopes. As a result, the radio waves from the source will reach each telescope at a little different time. The waves appear slightly differently, with one arriving a little bit later than the other. The difference is a shift in the wave's phase over time.

Due to their phase shift, the two offset waves will not precisely overlap when combined, leading to interference fringes. The angles of their observations shift as the Earth rotates and the telescopes tilt to continue monitoring their source setting.

Similar to how shadows are longer when the Sun is lower, this tracking movement of the telescopes alters the distances that radio light travels from the source to each telescope. This results in various phase delays for the waves as they approach each telescope. The more variables we see, the longer we observe. We have more viewpoints on the object we're watching the more variants there are.

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a coil is connected in series with a 13.7 k resistor. an ideal 73.0 v battery is applied across the two devices, and the current reaches a value of 2.95 ma after 5.46 ms (a) Find the inductance of the coil. (b) How much energy is stored in the coil at this same moment?

Answers

The inductance of the inductor is 169Ω and the energy in the inductor is 1.48 x 10⁻³ J.

The resistance of the resistor is 13.7K and the ideal battery has EMF 73.0 V. So, the initial current in the circuit will be,

I = 73/13700

I = 5.3 mA.

The current reaches 2.95 mA after 5.46 mA.

(a). The inductance in the coil can be given by,

E = LΔI/Δt

L is the inductance and E is the EMF, So, Putting values,

73 = L(2.35)/5.46

L = 169Ω.

(b) The energy in the inductor when current is 2.95 mA,

E = 1/2LI²

Putting values,

E = 1/2 x 169 x 2.95 x 2.95 x 10⁻⁶

E = 1.48 x 10⁻³ J.

So, energy in the inductor is 1.48 x 10⁻³ J.

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a current of 3 a is passed through a lamp for 2 seconds using a 6 v power supply. the energy dissipated by this lamp during the two seconds is:

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A lamp receives a 3 a current for 2 seconds from a 6 v power source. This lamp lost 3.6J of energy during those two seconds.

J=0.3 A

t = 2MIN = 2*60 =120sec

V=6v

E=VIT

=6*0.3*120

=216J

for 2 sec is

E=VIT

=6*0.3*2

=3.6J

Energy is characterized as having the "ability to accomplish work, which is the capacity to apply a force sufficient to move an object." Despite this unclear definition, the concept is actually quite straightforward: energy is just the force that moves objects. Potential and kinetic energy are the two different categories. An electrical charge carrier flow known as current often involves electrons or atoms lacking in electrons. Amperes are the common unit and are denoted by the letter A. Typically, the letter I is used to represent current. While current and electron flow in the same direction, they do so in opposite directions. Electrons move from a negative potential to a positive potential, and vice versa.

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Which part of cellular respiration produces the most ATP how does it work?.

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The correct answer is Electron Chain Transport.

The process human cells use to generate ATP is called cellular respiration.

In cellular respiration there is a phase of electron transport chain and it produces majority of ATP.

The two ATP-producing processes can be viewed as glycolysis (the anaerobic part) followed by aerobic respiration (the oxygen-requiring part).

Aerobic reaction can be defined as biological and chemical processes that occurs in the presence of oxygen.

Hence, an aerobic reaction requires oxygen before it can take place or occur and it produces adenosine triphosphate (ATP) as one of its end product.

In aerobic respiration, there are two main processes:

Krebs cycleElectron chain transport

It is the electron chain transport, that produces maximum ATPs. This is a stage in cellular respiration.

In mitochondria, between the matrix and inner mitochondrial space, an electron gradient is produced by the function of ETS. This ETS gets electron from NADH and FADH₂. This proton motive force is utilized for ADP and ATP and this production is called oxidative phosphorylation. This is called phosphorylation and along with phosphorylation it also has oxidation. The proton gradient helps in the generation of large amount of ATP molecules through chemiosmosis.

ATP are produced by ATPase enzyme.

Therefore, the process through which majority if ATP is produced by cellular respiration through the process of Electron chain transport.

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What is the optional vacuum cup mount bracket for the control head of a yaesu ftm-400dr?.

Answers

The Yaesu MMB-98 is an optional vacuum cup mount for the control head of the Yaesu FTM-400DR.

Cameras, scopes, testing tools, antennas, lights, signs, and much more can be mounted to them. Industrial strong suction cup for mounting your equipment to vehicles, bikes, boats, and other surfaces. The pump-active provides greater stability and suction power than the sure lock lever method. Yaesu Transceiver Mounting Brackets let you attach your radio and/or faceplate for better sight and operation. Secure attachment is provided by sturdy metal brackets. Some Yaesu accessory mounting brackets are sold separately or in kits that include a separation cable.

Yaesu Mobile Transceiver Mounting Brackets can assist you in remotely mounting your control head and primary mobile transceiver components. Vacuum cup mounting bracket with angle adjustment, newly created MMB-98. Yaesu's MMB-9 front panel attachment bracket was created specifically for Yaesu

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It is possible to travel faster than the speed of sound

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no it’s not mabooks because no means of transport can beat the speed of sound
Yes, humans have also travelled faster than sound on some scientific experiments and also some fast supersonic planes


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astronomers have concluded that the sun's activity varies in an 11-year cycle. which of the following statements about this cycle is true:

Answers

Over the period of 11 years, the amount of sunspots increases and decreases.

Who and what are astronomers?

Astronomers do research on planets, stars, and some other heavenly bodies. They employ both space-based technology, such as the Space Telescope Hubble and ground-based technology, such as optical telescopes. Some astronomers investigate far-off galaxies and objects like neutron stars and black holes.

Is a job in astronomy rewarding?

Astronomy experts have the capacity to carry out study and put their beliefs to the test. Others find it enjoyable to communicate their findings of the study to the public after they've concluded their work. Furthermore, astronomy jobs pay well enough to support a family.

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determine the focal length of a lens in a camera if the film is 36.9 mm away from the lens and the object distance is 59.2 cm.

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The focal length of the lens is 39.3 mm. The result is obtained by using the thin lens equation.

What is the Thin Lens Equation?

The Thin Lens Equation is the equation used on a thin positive or negative lens.

[tex]\frac{1}{f} = \frac{1}{d_{1} } + \frac{1}{d_{2} }[/tex]

Where

f = focal lengthd₁ = object distanced₂ = image distance

We have a camera with the film 36.9 mm away from the lens and the object distance is 59.2 cm. Determine the focal length!

Let's convert the object distance's unit!

59.2 cm = 592 mm

The distance of the film from the lens is the image distance. So, the focal length is

[tex]\frac{1}{f} = \frac{1}{d_{1} } + \frac{1}{d_{2} }[/tex]

[tex]\frac{1}{f} = \frac{1}{592 } + \frac{1}{36.9 }[/tex]

[tex]\frac{1}{f} = \frac{(592-36.9)}{21844.8 }[/tex]

[tex]\frac{1}{f} = \frac{555.1}{21844.8 }[/tex]

[tex]f = \frac{21844.8}{555.1}[/tex]

f = 39.3 mm

Hence, the focal length of a lens in the camera is 39.3 mm.

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If you are lying down and stand up quickly, you can get dizzy or feel faint. This is because the blood vessels don't have time to expand to compensate for the blood pressure drop. If your brain is 0.4 m higher than your heart when you are standing, how much lower is your blood pressure at your brain than it is at your heart? The density of blood plasma is about 1025 kg/m3 and suppose your maximum (systolic) pressure of the blood at the heart is 116.4 mm of Hg (Note that 120 mm of Hg = 16 kP = 1.6 x 104 N/m2). Since most doctors still use mm of Hg, give your result in those units.

Answers

91.655  mm of Hg pressure is lower when our blood pressure at  brain than it is at your heart.

pressure at brain= 121.8-30.135

pressure=91.655  mm Hg

Pressure is defined as force/area. To demonstrate the pressure from snow on a roof, divide the weight of the snow by the surface area of the roof. Gases are a typical pressure source in physics. A "vacuum" is used to describe the lack of pressure. Humans have long held the belief that vacuums are both improbably rare and unnatural since "nature abhors a vacuum." Actually, this is not the case.

The number of pressure units is ridiculous. It's common to use the torr or mmHg unit. This discussion is solely focused on the height of a mercury column. The atmosphere contains 760 torr, or mmHg. You could also look at mmH2O, which makes use of a comparable idea.

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how large are asteroids? how does the total mass of all asteroids compare to the mass of a terrestrial world?

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Vesta, the largest asteroid, has a diameter of about 329 miles (530 kilometers), but there are also bodies that are only 33 feet (10 meters) across.

All of the asteroids put together have less mass than the moon of Earth or terrestrial world.

What are asteroids ?

Small, stony objects called asteroids orbit the Sun. Despite orbiting the Sun similarly to planets, asteroids are far smaller than planets.

Asteroids can be divided into three general composition classes: C-, S-, and M-types.

The majority of asteroids are C-type (chondrite) objects. They are dark in color and most likely made of silicate and clay rocks.

Nickel-iron alloys and silicate minerals make up the S-types ("stony").

Metal makes up the M-types (nickel-iron).

The Sun has never been hit by an asteroids, but that doesn't imply they don't! Asteroids typically stay in the belt between Mars and Jupiter known as the asteroid belt, but on rare occasions, something can cause them to deviate from their original orbits and crash into the inner solar system.

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the time it takes for a college student to travel between her home and her college is uniformly distributed between 40 and 90 minutes. refer to exhibit 6-2. the probability that her trip will take exactly 50 minutes is

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For the continuous probability distribution probability at any constant value is 0. Because the interval width is 0 in that case. There must always be an interval to calculate the probability in case of a uniform distribution.

Continuous probability distribution: A probability distribution in which the random variable X can take on any (continuous) value. Since there are an infinite number of values that can be assumed by X, the probability that X will take a given value is zero.

For the probability distribution of continuous distributions in this problem each constant value is 0.

P[x= 50] = 0

P(the journey will take exactly 50 minutes) = 0

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The range of cannon ball fired horizontally from laboratory table i equal to 8/3*the hight of the table what i the direction of the velocity of the projectile a it trike the ground?(from horizontal)

Answers

The direction of the velocity of the projectile a it trike the ground is 63.43°.

What is velocity?

A body's or an object's motion's direction. Speed is fundamentally a scalar quantity. Velocity is a vector quantity in its purest form. It refers to the rate at which distance varies. It is the rate of displacement change.

What is height?

Height is a measurement of vertical distance, or how high something or someone is (how tall they are) (how "high" a point is).

The range ( X) of cannon ball is equal to height (h) of the cliff, which is initial height of cannon ball.

∴ X= h

Therefore, the angle which final velocity vector of the cannon ball makes with and below horizontal is given by

θ= tan ⁻¹ (2h/x)

tan ⁻¹ (2h/h)     (∴ X= h)

= tan ⁻¹ 2

≈ 63.43°

Therefore, the direction of the velocity of the projectile a it trike the ground is 63.43°.

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What is called in the interior of the Earth can be classified as primordial and radiogenic heat?.

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Primordial heat and radiogenic heat are the two main sources of the Earth's interior heat. The disintegration of radioactive materials deep below the Earth's interior produces radiogenic heat.

The Earth's mantle and core contain these elements, including uranium, thorium, and potassium. These elements produce heat when they decompose, which is energy. The heat produced by the Earth since its origin 4.5 billion years ago is known as primordial heat. The energy generated during the Earth's birth as a result of the condensation of gas and dust from the solar nebula is what causes this heat. The heat generated by this process is still present in the Earth's interior and is what causes the Earth's surface to move.

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with a small telescope, we see that the moon has regions that are relatively smooth and others that are saturated with impact craters. what does this tell us about the moon's development?

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With a small telescope we can see the moon has regions that relatively smooth and others are saturated with Impact craters this tell us that the moon doesn't have much surface evolution.

When the moon is observed under a small telescope we can see that the some regions on the Moon are relatively smooth while some are saturated with impact craters. This discontinuity in the pattern of the surface of the Moon tell us that moon does not have surface evolution over its landscape.

When the surface of a planet evolves it shows distant pattern between the regions on it.

But because of the above mentioned certain characteristic of the regions we can tell about moon's development that the surface of the moon is not evolving that much.

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What are the 3 follow up steps you should take after a collision?.

Answers

Stop, assist anyone who is hurt, protect your cars from additional damage, dial 911, and exchange any necessary details with the authorities.

What exactly does it mean to collide?

A forceful collision; the act of colliding; collision between two aircraft, or crash. a collision of goals; a dispute. When two particles or bodies collide, they each apply a force that causes them to lose or gain energy or momentum. This is known as a collision in physics.

In physics, what exactly is a collision?

When particles, groups of particles, or solid objects travel in the same direction and get close enough to one another to contact and have an impact on one another, that is when a collision occurs in physics.

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gram shows how entropy varies with temperature for a substance that is a gas at the highest temperature shown. a plot of entropy on the y axis versus the temperature in kelvin on the x axis. the entropy and the temperature are initially 0. as the temperature increases, the entropy increases linearly. at a point some distance from the initial point, the entropy increases as the temperature remains constant. this portion is labeled 1. the entropy then continues to increases linearly as the temperature increases. at a third point some distance from the second point, the entropy again increases as the temperature remains constant. this portion is labeled 2. the entropy then increases linearly again as the temperature increases. segment 2 is larger than segment 1. what process corresponds to the entropy increase along the vertical segment labeled 1? the melting of the solid substance to a liquid. the boiling of the liquid substance to a gas. the warming of the liquid substance to its boiling point. the warming of the gaseous substance to its final temperature. the warming of the solid substance to its melting point.

Answers

Studying the graph of entropy and temperature, we get,

1. The process corresponds to the entropy increase along the vertical segment labeled 1 is The melting point of the solid substance to a liquid.

2. The process corresponds to the entropy increase along the vertical segment labeled 2 is The boiling point of the liquid substance to a gas.

3. The entropy change for segment 2 is larger than that of segment 1 because the difference in entropy between the gas state and the liquid state is greater than the entropy differences between the solid and liquid states.

Entropy: It is a way to gauge how random something is.

Entropy is the measurement of the amount of thermal energy per unit of temperature in a system that cannot be used for productive work. Entropy is a measure of a system's molecular disorder or unpredictability since work is produced by organized molecular motion.

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A 50 gram mass is hanging from a spring whose unstreached length is 10 cm and whose spring constant is 2.5 N/m. In the list below are described five situations. In some of the situations, the mass is at rest and remains at rest. In other situations, at the instant described, the mass is in the middle of an oscillation initiated by a person pulling the mass downward 5 cm from its equilibrium position and releasing it. Ignore both air resistance and internal damping in the spring. Assume the spring is a perfect Hooke's law spring for all the oscillations in this problem. As the time the oscillation occur, indicate whether the force vector requested points up (U), down (D), or has magnitude zero (0). 1. The force on the mass exerted by the spring when the mass is at its equilibrium position and is at rest. 2. The force on the mass exerted by the spring when the mass is at its equilibrium position and is moving downward. 3. The net force on the mass when the mass is at its equilibrium position and is moving upward. 4. The force on the mass exerted by the spring when it is at the top of its oscillation. 5. The net force on the mass when it is at the tap alpha its oscillation. Reconsider the last two questions if the person pulled the mass down by 25 cm and released it. 1. The force on the mass exerted by the spring when it is at the top of its oscillation. 2. The net force on the mass when it is at the top of its oscillation.

Answers

A 50 gram mass is hanging from a spring whose unstreached length is 10 cm and whose spring constant is 2.5 N/m. Base on the data above, it can describe of the following events:

1. In equilibrium state, the force given on the mass is equal to weigh force of the mass, or we can write it as [tex]F_{spring} = W_{mass}[/tex]. The reason why its the same, because the state of the system is equilibrium. That means, the spring must give the same amount of force to neutralize mass weigh force factor in opposite direction.

2. The force given by the spring to the mass when moving downward is bigger than when in equilibrium state. In equilibrium state, the force from spring only to neutralize weigh force factor from the mass. But, when the mass is moving downward because of some the force needed by spring to counter the mass force is bigger

3. The force given by the spring to the mass when moving upward is lower than when in equilibrium state. In equilibrium state, the force from spring only to neutralize weigh force factor from the mass. But, when the mass is moving upward the force is being decrease because the force that held the spring to streach to equilibrium state is getting lower.

4. The force given by the spring to the mass when moving downward is maximum. Maximum here is the force that is given by spring to mass is the highest force in its oscilation. When the mass is being strech 25cm down, the mass will oscilation up and down until it reach the equilibrium again. But it will not reach 25cm again in its oscillation because it damper force by the spring

5. The net force is the difference between force given by spring and weigh force of mass. At the top of its oscilation can be calculate by the difference of mass weight force and potensial force of spring with 25cm strecht

at what distance from a 21 mwmw point source of electromagnetic waves is the electric field amplitude 0.040 v/mv/m ?

Answers

At a distance d from the source, the EM wave's intensity is represented 28.1m.

Determine the distance?

When an electromagnetic wave source with power P generates waves isotropically in all directions, its intensity (I) is calculated at a distance d from the source as follows:

I = \sP \s4 \sπ \sd \s2.

Given to us are

The EM wave's source power is 21 mW.

At a distance d (to be determined) from the source, the electric field's amplitude is E o.

= \s0.040

V \s/ \sm

The EM wave's intensity (I)

I = \s1 \s2 \s× \sϵ \so \s× \sE \s2 \so \s× \sc \sI

= \s1 \s2 \s× \s8.85 \s× \s10 \s− \s12 \s× \s( \s0.040 \s)

2 \s× \s3 \s× \s10 \s8 \sI

= \s2.12 \s× \s10 \s− \s6

W \s/ \sm \s2

determining the distance d

At a distance d from the source, the EM wave's intensity is represented by the following formula:

I = \sP \s4 \sπ \sd \s2 \s2.12 \s× \s10 \s− \s6

W \s/ \sm \s2

= \s21 \s× \s10 \s− \s3

W \s4 \sπ \sd \s2 \sd

= \s28.1m .          

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How many SCP sites are there?.

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As of August 2021, there are approximately 6,600 articles about SCP objects. New articles are often written by contributors.

Site-19 is an SCP Foundation facility and currently the largest operating site. It houses hundreds of Safe and Euclid class SCPs and is the most famous of the many locations under Foundation control. The foundation maintains and operates numerous facilities around the world, from small outposts with only a few employees to large complexes with thousands of employees.

Site-17 is known for containing a large team of medical and psychiatric professionals to deal with the complex nature of many SCPs. Site-17's exact location on Earth is unknown outside of Headcanon. There is a theory that SCP-096 was created as a result of SCP-1529. The theory is that 096 was once a climber trying to climb a mountain.

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Answer:

88

Explanation:

Stephen drove from manchester to oxford. He drove at an average speed of 60 miles per hour, for two and a half hours. How far did he drive?.

Answers

He drives to a distance of 30 miles

1 h = 60 min

60 mph/ 60 min = 1 mph per minute

1h/2 = 30 min (only half an hour)

30 x 1 (mph) = 30

What is average speed ?

Velocity is the direction speed of an object in motion 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.

The total distance travelled by the object in a specific amount of time is its average speed. A scalar quantity, average speed, exists. The magnitude serves as its representation, and it lacks direction.

Speed is a scalar quantity that describes how quickly an object travels over space. The ratio of distance to time, which is a scalar quantity, is the average speed.

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