Which is a characteristic of an electromagnetic wave?
The fields are at right angles to each other and to the direction of the wave.


The waves are produced when an electric charge is at rest.


The fields are aligned with each other and to the direction of travel.


The fields are independent of each other.

Answers

Answer 1

Answer:

The fields are at right angles to each other and to the direction of the wave.

Explanation:


Related Questions

Two runners race each other around a circular track. The track is 500 meters long and 159 m across (the diameter of the circle). Runner A trips at the half- way mark and doesn't get up Runner B finishes the race. Is there a difference? Explain with a diagram: Which runner has the greater displacement? Which ran the greatest distance?is there a difference?explain with a diagram

Answers

The higher displacement [highest increase in bare ground from the start position] is caused by Runner A. Runner B traveled the furthest, covering the entire track.

Simply put, what is displacement?

The verb "to displace" refers to the movement or removal of anything. The location of an object is changed, which is the definition of displacement.

What is a displacement example?

Change in quite an object's location in relation to an image plane is known as displacement. For instance, a billiards ball travels from one spot to another because a player strikes it. It is alleged to have moved. A vector quantity with both speed and phase is displacement.

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Metal panels that are designed to act as stressed-skin panels are attached directly to the structural frame of the building with
a. bags
b. straps
c. clips
d, mats

Answers

Metal panels that are designed to act as stressed-skin panels are typically attached directly to the structural frame of the building using straps, clips, or mats.

Straps are typically used to connect the panel to a supporting member, while clips are used to secure the panel to a non-supporting member. Mats are used to provide additional support for the panel and to distribute the load evenly across the panel.

This is beneficial for the structural integrity of the building since it ensures that the panel will not be subjected to too much stress in one specific area. Additionally, it allows for better load distribution, which can help to reduce the overall weight of the building, as well as reduce stress on the individual panels.

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How do we sip water from glass using straw?can we sip water with straw on moon?

Answers

Answer:To sip water from a glass using a straw, you would simply place the straw into the glass and tilt the glass towards your mouth. You would then use your lips to create a seal around the straw and take a small sip of the water.As for sipping water with a straw on the moon, it is possible, but it would require some modification to the traditional method of using a straw. On the moon, there is no atmospheric pressure, so the water would not be held in place by gravity. Instead, you would have to use a specialized straw that is designed to work in a vacuum, such as those used by astronauts on the International Space Station. These straws have a valve at the top that allows the water to flow into your mouth when you suck on the straw, but prevents it from spilling out when you release your lips. So, in order to sip water with a straw on the moon, you would have to use one of these specialized straws and follow the same basic technique as you would on Earth, but you would have to be careful not to spill any water in the low gravity environment.

If α=40°, β=60°, and M=4.0 kg, determine the tension in string 1 shown.

Answers

The magnitude of the tension in string 1 is 20 N.

option D is the correct answer.

What is the tension in string 1?

The magnitude of the tension in string 1 is calculated by applying the following kinematic equation.

T₁ cosα  +  T₂ cosβ = W cos90 ----  ( 1 )

T₁ sinα  +  T₂ sinβ = W sin90 ----- ( 2 )

Substitute the given values for β and α, to determine the value of Tension T₁ and Tension T₂.

-T₁ cos(40)  +  T₂ cos(60) = W cos90

-0.766T₁  +  0.5T₂ = 0

0.5T₂  = 0.766T₁

T₂ = ( 0.766T₁ ) / 0.5

T₂ = 1.53 T₁  ----- (3)

T₁ sinα  +  T₂ sinβ = W sin90

T₁ sin(40)  +  T₂ sin(60) = (4 x 9.8) sin90

0.64T₁ + 0.886T₂ = 39.2

Substitute the value of T₂ into the above equation as shown below.

The tension in string 1 is calculated as follows;

0.64T₁ + 0.886(1.53 T₁) = 39.2

0.64T₁ + 1.33T₁ = 39.2

1.97T₁  = 39.2

T₁   = 39.2 / 1.97

T₁  = 19.99 N ≈ 20 N

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in a certain town ,50% of the households own a celullar phone,40% own a pager, and 20% own both a cellular phone and a pager. what is the probability that a randomly chosen household own either a cellular phone or a pager?

Answers

Answer:

0.18

Explanation:

20/110=0.18

A satellite of mass M is in a circular orbit of radius R about the centre of the earth. A meteorite of the same mass falling toward the earth, collides with the satellite completely elastically. The speed of the satellite and the meteorite just before collision are the same The subsequent motion of the combined body will be
a) in circular orbit of different radius
b) in a circular orbit of radius R
c) in an elliptical orbit
d) such that it escapes to infinity

Answers

According to the previous statement, the subsequent motion of the combined body will be in an elliptical orbit. Correct answer: letter C.

When two objects of the same mass collide in a completely elastic manner, their combined motion will be a combination of their original motions. In this case, the satellite and the meteorite had the same velocity just before the collision, so the combined motion will be an elliptical orbit.

The law of conservation of momentum states that the total momentum of a system remains constant. This means that in a collision, the total momentum of the system after the collision will be equal to the total momentum of the system before the collision, or:

Momentum Before Collision = Momentum After Collision

In the case of two objects of the same mass colliding completely elastically, the momentum of an object before the collision is equal to the mass of the object multiplied by its velocity. Therefore, the total momentum before the collision is equal to twice the momentum of one object before the collision.

After the collision, the total momentum of the combined body will be equal to the total momentum of the system before the collision, which is equal to twice the momentum of one object before the collision. This means that the combined body will move in an elliptical orbit with the same speed and direction as the original objects before the collision.

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Several motorboats with the same mass are used in an experiment. the forces of the different motors versus their accelerations are graphed. what is the y-intercept of this graph?

Answers

The y-intercept of a graph is the point at which the graph crosses the y-axis. In this case, the y-intercept of the graph showing the relationship between the motor's force and the boat's acceleration would represent the force required to produce zero acceleration.

In this scenario of the boats being used in an experiment, if the boats have the same mass and the motors are producing force, and the forces are graphed against the acceleration, this will give us a straight line, and the y-intercept of this graph will be the force required to keep the boat at a zero acceleration, this force is known as "friction force" which includes the friction force of the water and the friction force of the bearings in the motor and other mechanical parts in the boats and motor.

It's worth noting that, in practice, getting the y-intercept in this experiment might be very hard as it's very rare to get zero acceleration. Still, one can aim for the lowest possible acceleration, and the force measured can be considered as an approximation for the friction force.

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If M^aL^bT^c is the dimensional formula of force, find 2a - b-c.

Answers

Answer:no

Explanation:

no

The velocity v of a particle at a time tis given by;

v=at+ b/(t +c)

Determine the dimensions of a, b and c.​

Answers

Answer:

Here in the question the dimensions of a ,b and c can be calculated by using the principal of homogeneity

There exist two parallel 1 m x 1 m x ~0 m (infinitesimally thin) conducting plates sitting
parallel to each other and the xz-plane. The positively charged plate is at y = 0, and the negatively
charged plate is at y = 0.01 m. An electron is released from rest in between the charged plates. Explain
why the electron moves in the proper direction in terms of the forces acting on the electron.

Answers

An electric field is a region in which electric charges sustain electrical conduction. An electric field describes the electrical environment around an electron.

What is meant by electric force?

The electric force is the force between two charged bodies due to electric charges. The electric field at a point indicates the force experienced by a positive unit test charge at that point.

In this case, electrons move to higher potentials. Since the electric field is directed from the positive plate to the negative plate, electron acceleration occurs towards the negative plate and the negative plate is deflected towards the positive plate.

In this case, the electrostatic force is F = E q,

Here the electric field E = V/d is constant and the charge on the electron is constant, so the force on the electron is constant. Hence, the electron moves in the proper direction in terms of the forces acting on the electron.

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A Method for Calculating the Spring Constant of Atomic Force Microscopy Cantilevers with a Nonrectangular Cross Section
a. true
b. False

Answers

False. A Method for Calculating the Spring Constant of Atomic Force Microscopy Cantilevers with a Nonrectangular Cross Section is not a valid statement.

This is because the spring constant is not affected by the shape of the cantilever, but is instead determined by the material used in its construction, the number of coils in its spring, the wire diameter of its spring, and the amount of tension placed on the spring. Therefore, the statement is incorrect and cannot be used to calculate the spring constant of atomic force microscopy cantilevers with a nonrectangular cross section.

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An atom of an element can change into an atom of another element if it is:

A. extremely stable
B. radioactive and it's nucleus can trap or emit particles
C. an ion and it's atomic number is larger than it's mass number
D. an isotope and it has more electrons than neutrons

Answers

Answer:

B. radioactive and it's nucleus can trap or emit particles

Explanation:

Each element is unique because of the number of protons it possesses. All the atoms of one particular element will have same amount of protons. Thus, if I want to change an atom of an element into atom of another element, i must have a way to mess with the proton count and such. These are seen in radioactive process like fusion, fission, nuclear decay etc.

Calculate the energy used when is ship's anchor which 4, 000N is lifted up from the sea bed which is 50m below the ship ​

Answers

Explanation:

Work done = force × distance

= 4,000 × 50

= 200,000 joules

A proton follows the path shown in (Figure 1) . Its initial speed is v0 = 2.8×106 m/s.
What is the proton's speed as it passes through point P?
Express your answer to two significant figures and include the appropriate units.

Answers

The proton's speed as it passes through point P is Vp = 1.72 × 10^6 m/s

What is a proton?

A proton is described as a stable subatomic particle, symbol p , H⁺, or ¹H⁺ with a positive electric charge of +1 e elementary charge.

From the question have the following parameters

A fixed charge, Q = -10 nC

Initial position of charge particle, proton (q), ro = 3mm

Final position of charge particle, proton (q),

rp = 4mm

Initial velocity of charged particle,

vo =2.8 x 10^6 m/s

Let

vp be the final speed of proton

We then Apply conservation of Energy:

Initial (Potential + kinetic) Energy = Final (Potential + kinetic) Energy

kQq ro + 1/2mVo² = kQq rp + 1/2mVp²

m = 1.67 x 10^-27

Substituting the values and converting from mm to meters, we have that)

Vp = 1.72 × 10^6 m/s

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a car moving at 20m/s applies breaks and slides to stop in 5 second. find the coefficient of friction?

Answers

The friction is the stopping force. and the coefficient of friction is 0.4

What is Friction ?

Friction is a force that opposes motion. It is a vector quantity and it is measured in Newton.

Given that a car of mass 1200 kg is moving at 20m/s applies breaks and slides to stop in 5 second.

The acceleration of the car can be found by

v = u - at

Where

v = 0u = 20 m/st = 5 sa = ?

Substitute all the parameters

0 = 20 - 5a

5a = 20

a = 20/5

a = 4 m/s²

Frictional force F = ma

F = 1200 × 4

F = 4800N

Also, F = μN

Where μ = the coefficient of friction

N = normal reaction = mg

N = 1200 × 9.8

N = 11,760 N

Substitute N and F into the formula

4800 = 11760μ

μ = 4800/11760

μ = 0.4

Therefore, the coefficient of friction is 0.4

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a 0.40 kg object is moving on a frictionless surface with a speed of 30 m/s. A force of 2.0N is applied continually until the velocity of the object has been reversed. How long was the force applied?

Answers

The time the force was applied to the obeject of mass 0.4 kg is 12 seconds

What is impulse?

Impulse is the product of force and time.

To calculate how long the force was applied, we use the formula of impulse.

Formula:

Ft = m(v-u).................. Equation 1

Where:

F = Forcet = Timem = Massv = Final velocityu = Initial velocity

From the question,

Given:

m = 0.4 kgv = -30 m/s (reversed)u = 30 m/sF = -2.0 N (Acting against the direction of motion)

Substitute these values into equation 1 and solve for t

-2.0t = 0.4(-30-30)-2.0t = -24t = -24/-2t = 12 seconds

Hence, the time is 12 seconds

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Air flows through this tube at a rate of 1100cm³ / s. Assume that air is an ideal fluid.
(Figure 1)
What is the height h of mercury in the right side of the U-tube?
Express your answer with the appropriate units.
h = ____ ____

Answers

The height of the mercury on the right side of the tube is 3.69 cm.

What is the height of the mercury on the right side of the tube?

The height of the mercury on the right side of the tube is determined as follows:

Using Bernoulli's equation;

p₁ + ¹/₂ρv₁² = p₂ + ¹/₂ρv₂²

p₁ - p₂ =  ¹/₂ρ(v₁² - v₂²)

From the continuity equation;

A₁v₁ = A₂v₂

v₁ = A₂v₂ / A₁

v₁ = A₂v₂ / π(r₁/2)²

The rate of airflow in the tube (A₁v₁ = A₂v₂) is 1100 cm³/s

Substitute the values in the equation above;

v₁ = 1100/π(/2)²

v₁ = 350.14 cm/s or-3.50 m/s

Also, v₂ = A₁v₁/A₂

v₂ = 1100/ π(0.4/2)²

v₂ = 8753.5 cm/s or 87.5 m/s

The pressure difference in the U-shaped tube is

p₁ - p₂ = ρ'gh

where;

ρ' is the density of mercury = 3.6 * 10³ kg/m³

Solving for h in the equation above;

h = p₁ - p₂ / ρ'g

Note that p₁ - p₂ =  ¹/₂ρ(v₁² - v₂²)

Therefore, h = ¹/₂ρ(v₁² - v₂²) / ρ'g

Substituting the values in the equation;

h = ¹/₂(1.29 )((87.5) - (3.50)) / (13.6 * 10³)(9.8)

h = 0.0369 m or 3.69 cm

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Find the magnitude of the sum of these two vectors.

Answers

Answer:

sol:

tanβ=[tex]\frac{101*sin(60)}{85+101*cos(60)}[/tex]

β=[tex]tan^{-1}[/tex](0.64552)

β=32.84

therefore, the direction is 32.84

A wire X of Resistance 200, is replaced by wire Y of Resistance 35 A. Both wires are made of the same material, Wire Y is double the area of wire X Wire Y has a length of 2.5m.

Find the length of wire X

Length

- If wire X is connected to a battery of emf-12V. Calculate the current in the wire.

Current

-Calculate the charge passing through the wire in 5 minutes

Charge.

iv-Calculate the Energy consumed by the wire in half an hour.

Answers

(a) The length of wire X is 7.14 m.

(b) The current in the wire is 0.06 A.

(c) The charge passing through the wire in 5 minutes is 18 C.

(d) The Energy consumed by the wire in half an hour is 1,296 J.

What is the length of wire X?

The length of wire X is calculated by applying the following formula as shown below;

ρ = RA / L

where;

R is the resistance of the wireA is the area of the wireL is the length of the wire

Since the wires are made of the same material, resistivity of wire X = resistivity of wire Y

let wire X = 1

let wire Y = 2

R₁A₁ / L₁ = R₂A₂ / L₂

L₁ = ( R₁A₁L₂ ) / ( R₂A₂ )

L₁ = ( 200Ω x A₁ x 2.5 m ) / ( 35Ω x 2A₁ )

L₁ = 7.14 m

The current flowing in wire X is calculated as follows;

V = IR

I = V / R

where;

V is the voltageR is the resistance

I = ( 12 V ) / (  200Ω )

I = 0.06 A

The charge passing through the wire in 5 minutes is calculated as follows;

Q = It

Q = 0.06 A x ( 5 x 60 s )

Q = 18 C

The Energy consumed by the wire in half an hour is calculated as;

E = Pt

where;

P is powert is time

E = (IV) x ( t )

E = ( 0.06 A x 12 V ) x ( 30 mins x 60 s )

E = 1,296 J

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A runner begins a race from rest and reaches a final speed of 22mph. It takes 3.45s. If the runner's mass is 76.4 kg and 1 mile = 1,609.34m. A) What is the runner's acceleration?​

B) What is the magnitude of the downward force acting on the runner?​

Answers

Acceleration:

a = (22 mph - 0 mph) / (3.45s) = 6.37 mph/s

Magnitude of the Downward Force:

F = m*a = 76.4 kg * 6.37 mph/s = 484.53 N

A 1.2 kg object hanging from a spring of force constant 300 N/m oscillates with a maximum speed of 30 cm/s. (a) What is its maximum displacement? When the object is at its maximum displacement, find (b) the total energy of the system, and (c) the gravitational potential energy. (Choose potential energy as zero when the object is in equilibrium).

Answers

The maximum displacement = 0.0189 m

The Total energy of the system = 1.188 J

The Gravitational potential energy = 0.22 J

Let m be = Mass of the object = 1.2 kg

As given K = Spring Constant of the spring = 300 N/m

Let v denote = Maximum speed with which the body oscillates = 30 cm/s

Let 'x' be the maximum displacement of the body

x²= mv²/k=1.2* 0.3 /300= 0.0189

Total energy= kinteric energy+potential energy =kx²/2 + mv²/2

=1.188J

The Gravitational potential energy of the system is

E=Mgx=1.2*9.8*0.0189

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The 1.2 kg object's maximum displacement when it is suspended from a spring with a 300 N/m force constant oscillates at a maximum speed of 30 cm/s. This displacement is equal to 0.0189 m.

How to calculate displacement and energy?

When the object is displaced to its maximum, the system's total energy is 1.188 J.

The energy of gravity is equal to 0.22 J.

Allow m to be equal to 1.2 kg, the object's mass.

K = Spring as stated. Springs have a constant of 300 N/m.

the body can oscillate at a maximum speed of 30 cm/s (let v signify this).

Suppose that "x" represents the body's largest displacement.

x²= mv²/k=1.2* 0.3 /300= 0.0189

Total energy = interstellar energy + potential energy = kx2/2 + mv2/2

=1.188J

According to the system's gravitational potential energy,

E=Mgx=1.2*9.8*0.0189

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Why dose earth have a liquid water supply and the moon dose not

Answers

Answer:

Because that is how God created things

Explanation:

What is the gravitational force on a 987 kg satellite orbiting
5.1 × 10⁴ m above the surface of Earth? Assume the mass of Earth is
5.97 × 10²⁴ kg.

Answers

Answer:

The gravitational force on the satellite can be calculated using the formula:

F = G * ((m1 * m2) / r^2)

Where:

F is the gravitational force

G is the gravitational constant (6.67 × 10^-11 N*m^2/kg^2)

m1 is the mass of the first object (in this case, the satellite)

m2 is the mass of the second object (in this case, Earth)

r is the distance between the two objects

Plugging in the given values, we have:

F = (6.67 × 10^-11 N*m^2/kg^2) * ((987 kg * 5.97 × 10²⁴ kg) / (5.1 × 10⁴ m)^2)

= 9.06 × 10^-6 N

Therefore, the gravitational force on the satellite is approximately 0.00000906 N.

Explanation:

Which diagram shows the correct setup for an electromagnet?
O A.
O
O
B.
Battery.
Battery.
- Battery
Ammeter
A
Ammeter
A
Ammeter
A

Battery

SUBMIT

Answers

Answer:

  B

Explanation:

You want the diagram that shows the correct setup for an electromagnet.

Electromagnet

An electromagnet is defined as a soft metal core that becomes a magnet when current is passed through a coil around it. Only diagram B shows a coil around a metal object. That coil is arranged in a circuit with a battery so that current will flow through the coil.

Diagram B shows the correct setup for an electromagnet.

What's one major difference between the earth's greenhouse effect and an actual greenhouse?




Select one:

a.
Heat escapes from a greenhouse more easily than it does from Earth's atmosphere


b.
The glass in a greenhouse traps heat, while greenhouse gases in the atmosphere absorb and recycle heat


c.
There is no significant difference; both work pretty much the same way


d.
Actual greenhouses are cold in winter, while the greenhouse effect has led to warm winters across the earth

Answers

The difference between the earth's greenhouse effect and an actual greenhouse is that the glass in a greenhouse traps heat, while greenhouse gases in the atmosphere absorb and recycle heat. That is option B.

What is a green house gas?

The greenhouse gas is the type of gas that is found in the earth's atmosphere that has the ability to absorb heat from the earth's environment.

Examples of greenhouse gases include the following:

carbon dioxide, methane, nitrous oxide, and water vapor.

An ordinary greenhouse is used to grow crops such as tomatoes and tropical flowers. Heat is bring trapped inside these houses as the sun shines during the day time.

Therefore, it can be concluded that the major difference between the earth's greenhouse effect and an actual greenhouse is that the glass in a greenhouse traps heat, while greenhouse gases in the atmosphere absorb and recycle heat.

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If you have no weight in outer space (ie. far from any planet or star or any other massive object) what is the acceleration due to gravity that you would experience?

Answers

If you have no weight, then the acceleration due to gravity is zero.

What is the acceleration due to gravity?

We know that the acceleration due to gravity of the object would have to be the acceleration that would be granted to a body because it is within the sphere of the gravitational pull of the earth.

We must know that the weight of the object is the product of the mass and the acceleration due to gravity. If the object is weightless, the implication of that is that the acceleration due to gravity is zero at that point.

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Determine an expression for the time from when the block collides with the spring to when the spring reaches maximum compression

Answers

Answer:

1/2 m v^2 = 1/2 k x^2      energy of block will be transferred to spring

1/2 m (x/t)^2 = 1/2 k x^2     x/t max speed of block

t^2 = m / k

t = (m/k)^1/2 = 1 / ω       since ω = (k / m)^1/2 for SHM

ω = 2 π f = 2 π / T      where T is period

T = 2 π * (m / k)^1/2

t = T / 4 = π / 2 * (m / k)^1/2      1/4 period needed for 1/4 oscillation

The immediate source of the intercellular fluid surrounding
all human body cells is
A) blood plasma
B) enzymatic secretions
C) glomerular filtrations
D) lymphatic tissue

Answers

Answer: lymphatic tissue

Explanation:

The amount of energy released in the cellular respiration is similar to the amount released when methane reacts with oxygen. Why does our body not burn?

Answers

Each step of the energy released during cellular respiration is accompanied by the synthesis of ATP. Only a tiny fraction of energy is converted to heat that's why our body doesn't burn.

In a nutshell, what is cellular respiration?

The process through which organisms use oxygen to break down food molecules in order to get chemical energy for cellular processes is known as cellular respiration. The cells of animals, plants, and fungi, as well as those of algae and other protists, all engage in cellular respiration.

What is the location of cellular respiration?

Cells produce energy through a process called cellular respiration. Prokaryotic and eukaryotic cells both have mitochondria and cytoplasm where cellular respiration takes place.

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the orientation of an mrna codon relative to a trna anticodon is best described as: a. antiparallel. b. parallel. c. perpendicular. d. non-complementary.

Answers

The orientation of an mRNA codon corresponding to a tRNA anticodon is best described as A: antiparallel.

An anticodon is a three-base sequence, paired with a particular amino acid, that a tRNA molecule brings to the associated codon of the mRNA during translation. The anticodon sequence is said to be complementary to the mRNA, using base pairs in the anti-parallel direction.  The tRNA anticodon 3-UAC-5 will make pair with the mRNA codon.

Thus, the orientation of an mRNA codon relative to a tRNA anticodon is said to be antiparallel.

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