They can be radio waves, microwaves, infrared radiation, visible light, ultraviolet radiation, X-rays, and gamma rays, in that order of increasing frequency/decreasing wavelength.
The radio, visible light, and X-ray wave frequencies are all included in the electromagnetic (EM) spectrum. All electromagnetic waves are composed of photons, which move through space before interacting with matter in one way or another. EM waves are all instances of the same phenomena, notwithstanding the sciences' broad classification of them into seven fundamental categories.
The lowest frequency waves in the electromagnetic spectrum are radio waves. Other signals can be transmitted by radio waves to receivers, which then convert them into useful data. There are many things that emit radio waves, both natural and man-made.
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the interpretation of the wavefunction that describes them as probability amplitudes was developed by:
The interpretation of the wavefunction that describes them as probability amplitudes was developed by Max Born.
Max Born was one of the renowned physicists known for his splendid work in the field of quantum mechanics.
When the scientists of his time were using the three-dimensional standing wave to describe about the wavelength, he was the person who used probably amplitude to describe a wavefunction.
To describe a wavelength using the probably amplitude, Max Born used and developed the Schrodinger's view of the electron.
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the permissible shear stress for the weldment illustrated is 140 mpa. estimate the bending load stress that will cause this stress in the weldment throat
The bending load shear stress was found to be 12.5kip
what is shear stress ?
Shear stress, often denoted by (Greek: tau), is the component of stress that is coplanar with a material cross section. It is caused by shear force, a component of the force vector parallel to the material cross section. Normal stress, on the other hand, is caused by the force vector component that is perpendicular to the material cross section on which it acts. Shear stress is a force that tends to distort a material by causing slippage along a plane or planes parallel to the imposed stress. The resulting shear is extremely important in nature, since it is directly tied to the downslope flow of earth elements and earthquakes.
Primary shear: τ′=0
Secondary shear:
Ju=2πr3 =2π(1.5)3 =21.21 in3
J=0.707hJu=0.707(1/4)(21.21)=3.749 in4
2 welds:
τ′′=Mr/2J=8F(1.5)/2(3.749)=1.600F
τ′′=τallow ⇒1.600F=20⇒F=12.5 kip
Therefore the bending load shear stress was found to be 12.5kip
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type nm cable can be run in all the following locations, except . i. concealed in dry locations ii. concealed in damp and moist locations iii. exterior masonry block or tile walls
Type NM cable can be run in all the following locations, except concealed in damp and moist locations.
Type NM cable shall be permitted as follows:
For both exposed and concealed work in normally dry locationsTo be installed or fished in air voids in masonry block or tile wallsType NM cables shall not be used under the following conditions or in the following locations:
Where exposed to corrosive fumes or vaporsWhere embedded in masonry, concrete, adobe, fill, or plasterIn a shallow chase in masonry, concrete, or adobe and covered with plaster, adobe, or similar finishIn wet or damp locationsTherefore, Type NM cable can be run in all the following locations, except concealed in damp and moist locations.
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What is classified as primordial and radiogenic heat?.
In contrast to the heat that is still being actively produced by radioactive decay, primordial heat is the heat that the Earth loses as it continues to cool following its initial development.
Primordial and radiogenic heat can be found in the earth's deep core. Radiogenic heat is the thermal energy released as a result of spontaneous nuclear fusion, whereas primordial heat is the internal heat energy built up by planets during their first few million years of evolution.
The internal heat energy that a planet has built up over the course of its first few million years of evolution is known as primordial heat. The energy deposited by falling planetesimals, known as accretion energy, and differentiation energy, are the main sources of the primordial heat.
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Compared with the time it takes Jupiter to orbit the Sun once, the time it takes Saturn, which is twice as far away, to orbit the Sun is(a) significantly less than twice as long; (b) about twice as long; (c) significantly more than twice as long
Saturn, which would be two times as far at Saturn, takes far more than double as long to complete one circle around the Sun.
What is the straightforward meaning of sun?The star that the earth revolves around and that gives it warmth and light Our solar system is centered on the sun. Sun also refers to the sunlight or heat that this star gives off to the earth:
What is the sun example?The star that serves as the focal point of the planetary system is the sun. 92% of it is hydrogen, 8% or so is lithium, and also the remaining elements are various.
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a 100 g ball moves in a vertical circle on a 1.07 m-long string. if the speed at the top is 3.90 m/s, then the speed at the bottom will be 7.56 m/s. a) What is the gravitational force acting on the ball? b)What is the tension in the string when the ball is at the top?
(a) The gravitational force is 980 N
(b) The tension in the string is 441.49 N
Given : Mass of the ball = 100 gram
Length of the string = 1.07 m
the acceleration = 9.8 [tex]m/s^2[/tex]
(a) The gravitational force ;
W = mg
this implies W = (100)( 9.8)
W = 980 N
thus the gravitational force is 980 N
(b) The tension can be calculated by adding the gravitational force and equating it to the mv^2/r
W + T = [tex]\frac{mv^2}{r}[/tex]
W + T = [tex]\frac{100 X 3.9^2}{1.07}[/tex]
980 + T = 1421.49
T = 1421.49 - 980
this implies T = 441.49 N
thus tension = 441.49 N
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To learn to apply the law ofconservation of energy to the analysis of harmonic oscillators.Systems in simple harmonic motion, or harmonicoscillators, obey the law of conservation of energy just likeall other systems do. Using energy considerations, one can analyzemany aspects of motion of the oscillator. Such an analysis can besimplified if one assumes that mechanical energy is not dissipated.In other words,,where is the total mechanical energy of the system,  is the kinetic energy, and is the potential energy.As you know, a common example of aharmonic oscillator is a mass attached to a spring. In thisproblem, we will consider a horizontally moving blockattached to a spring. Note that, since the gravitational potentialenergy is not changing in this case, it can be excluded from thecalculations.For such a system, the potential energy is stored in the springand is given by,where is the force constant of the spring and is the distance from the equilibrium position.The kinetic energy of the system is, as always,,where is the mass of the block and is the speed of the block.We will also assume that there are no resistive forces; that is,.Consider a harmonic oscillator at four different moments,labeled A, B, C, and D, as shown in the figure. Assume that theforce constant ,the mass of the block, ,and the amplitude of vibrations, ,are given. Answer the following questions.When the block is displaced a distancefrom equilibrium, the spring is stretched (or compressed) the most,and the block is momentarily at rest. Therefore, the maximumpotential energy is . At that moment, of course, . Recall that . Therefore,.In general, the mechanical energy of a harmonic oscillatorequals its potential energy at the maximum or minimumdisplacement.When the block is at the equilibrium position,the spring is not stretched (or compressed) at all. At that moment,of course, . Meanwhile, the block is at its maximum speed(). The maximum kinetic energy can then be written as. Recall that  and that  at the equilibrium position. Therefore,.Recalling what we found out before,we can now conclude that,or.Question:PartGFind the kinetic energy  of the block at the moment labeled B.Express your answer in terms ofand .
At the moment labeled B, the block is at the halfway point of its displacement. Therefore, the potential energy at this moment is. Meanwhile, the speed of the block at this moment is. Therefore, the kinetic energy is.
What is kinetic energy?
The energy an object has as a result of motion is known as kinetic energy. A force must be applied to an object in order to accelerate it. We must put in effort in order to apply a force. After the work is finished, energy is transferred to the object, which then moves at a new, constant speed. Kinetic energy is the type of energy that is transferred and is dependent on the mass as well as speed attained. Kinetic energy can be converted into different types of energy and transferred between objects. A flying squirrel may run into a chipmunk that is standing still, for instance. Some of the squirrel's initial kinetic energy may have been transferred to the chipmunk or changed into another form of energy after the collision.
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What are the 4 main functions of the circulatory system?.
Exchanges carbon dioxide and wastes for the delivery of oxygen and nutrients (such as minerals, vitamins, and glucose) to the body's cells.
What is circulatory, exactly?The circulatory system that transports blood throughout the body and houses the heart. This system assists tissues in receiving enough oxygen, nutrients, and waste products, as well as in eliminating waste.
What is the purpose of circulation?Blood veins in the circulatory system are responsible for moving blood away from and back towards the heart. Blood is transported away from the heart by arteries and returned via veins. Oxygen, nutrients, and hormones are delivered to cells through the circulatory system, which also eliminates wastes like carbon dioxide.
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What happens to the force between two objects if the distance is halved?.
The force between two objects will increase four times if the distance is halved.
Let "r" be the initial distance between two objects,
then the final distance = r/2
and m₁, m₂ be the masses of the two objects,
and G is the universal gravitation constant.
according to Newton's law of gravitation, initial force F1,
F1 = G × m₁m₂/ r²
The final force F' = G × m₁m₂/ (r/2)²
= 4G × m₁m₂/ r²
= 4F
Hence, when the distance between two objects is halved The force will increase four times.
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a solenoid of length 1.00 cm1.00 cm and radius 0.550 cm0.550 cm has 4545 turns. if the wire of the solenoid has 1.95 amps1.95 amps of current, what is the magnitude of the magnetic field inside the solenoid?
The magnitude of the magnetic field inside the solenoid is 4.56 X 10-3 T
A magnetic subject is a vector subject that describes the magnetic effect on shifting electric fees, electric currents, and magnetic materials. A shifting rate in a magnetic subject experiences a force perpendicular to its own speed and to the magnetic area.
A magnetic area is a vector area that describes the magnetic have an impact on transferring electric powered prices, electric powered currents, and magnetic substances. A moving rate in a magnetic area studies a force perpendicular to its very own pace and to the magnetic subject.
Calculation
B = UNI/L
B = (4pi X 10-7)(25)(1.45)/(.01)
B = 4.56 X 10-3 T
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briefly describe how differences in composition among the jovian planets can be traced to their formation.
Jovian planets formed in the outer solar system, where it was cold enough for hydrogen compounds to condense into ices. This caused them to grow to large size - left to gravity, it drew in hydrogen & helium gas. Thus differences in composition stem from the amount of hydrogen and helium gas they captured.
What are Jovian planets ?The Jovian planets lack solid surfaces, in contrast to the terrestrial planets that make up our inner solar system Mercury, Venus, Earth, and Mars. Instead, their atmospheres predominantly consist of hydrogen and helium with traces of other gases including methane, ammonia, and water.
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What is the kinetic energy of a 1000 kg car traveling at 30 m s?.
The kinetic energy of a 1000 kg car traveling at 30 m /s will be 450000 [tex]m/s^{2}[/tex]
kinetic energy = 1/2 * m * [tex]v^{2}[/tex]
m = mass
v = velocity
kinetic energy = 1/2 * 1000 * [tex]30^{2}[/tex]
= 450000 [tex]m/s^{2}[/tex]
The kinetic energy of a 1000 kg car traveling at 30 m /s will be 450000 [tex]m/s^{2}[/tex]
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The kinetic energy of a 1000 kg car traveling at 30 m s is
Given,
Mass of the car, m = 1000 kg
The velocity at which the car is travelling, v = 30 m/s
Basically, kinetic energy is the energy attained by an object when it is in motion and is given by;
K.E = [tex]\frac{1}{2}[/tex]m[tex]v^{2}[/tex]
= 1/2×(1000)×30×30
= 450000 J
Hence, the kinetic energy is 450000 J.
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what is the speed of a point on the earth's surface halfway between the equator and the pole? (hint: what is the radius of the circle in which the point moves?)
The speed of the point is 463.4 miles per hour.
What is speed?
The speed of an object, also known as v in kinematics, is the size of the change in that object's position over time or even the size of the change in that object's position per unit of time, making it a scalar quantity. The instantaneous speed is indeed the upper limit of a average speed as the length of time interval approaches zero. The average speed of the object in a period of time is equal to the distance travelled by object divided by duration of the period. Velocity and speed are not the same thing.
The speed of a point on the Earth's surface halfway between the equator and the pole is equal to the circumference of the circle divided by the time it takes for the Earth to rotate once, which is 24 hours.
The circumference of a circle is equal to 2πr, where r is the radius of the circle. Since the point is halfway between the equator and the pole,
The radius is equal to half of the Earth's radius, which is approximately 3,963 miles.
Therefore, the speed of the point is equal to 2π(3,963 miles) / 24 hours = 463.4 miles per hour.
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What do you predict would happen if you brought a negatively charged balloon next to an uncharged piece of paper?.
The charged balloon sticks to a wall due to electrostatic force between the charged balloon and the wall.
What happens when a charged balloon is brought close to another charged balloon?The negatively charged balloon contains an excess of elections. Like charges repel, so the electrons in the balloon repel the electrons in the paper.Therefore, a part of the paper would gain a slightly positive charge. Opposite charges attract, so the paper would want to stick to the balloon/will follow the balloon.When you bring the balloon near a little piece of paper, the negative balloon repels the electrons in the paper so part of the paper near the balloon is positive. Since positive and negative attract, the paper moves toward the balloon. The negatively charged balloon attracts the paper.When the negatively charged balloon approaches a wall, the negative charges in the wall are repelled (or pushed away). This leaves a positive charge on the wallboard at the spot where the balloon touches.Because electrons are negatively charged, the balloon acquires a net negative charge. The balloon's negative charges are attracted to the positive charges in the can, and so the can rolls toward the balloon. As the balloon is pulled away from the can, the can will continue to roll toward the balloon.Any charged object - whether positively charged or negatively charged - will have an attractive interaction with a neutral object. Positively charged objects and neutral objects attract each other; and negatively charged objects and neutral objects attract each other.To learn more about balloon sticks refer to:
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outside temperature over a day can be modeled as a sinusoidal function. suppose you know the temperature is 75 degrees at midnight and the high and low temperature during the day are 90 and 60 degrees, respectively. assuming t is the number of hours since midnight, find an equation for the temperature, d, in terms of t.
Assume you are aware that the night-time temperature is 75 degrees and that the daytime maximum and low temperatures are 85 and 65, respectively.
A sinusoidal function can be used to mimic the daily variation in outside temperature. A sinusoidal function can be used to mimic the daily variation in outside temperature.
A sinusoidal function can be used to mimic the daily variation in outside temperature. Suppose you are aware of the high and low temperatures and that it is 75 degrees at midnight.
The temperature will fluctuate between a high of 82 during the day and a low of 69 at night. That is what this value is. If it continues to show that indicator of social function at the 24-hour mark, we are back at 75.
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What are the types of context clues that you can use to determine the meaning of an unfamiliar?.
Contextual hints can help in this situation. Students can use words or groups of words to identify the meaning of an unknown word in any passage by learning context clues.
Use context cues, as we frequently suggest! You should look up an uncommon word in a dictionary to confirm its definition after using context cues to discover what it means.
After considering a word's context, I would advise seeking up the word's definition in a dictionary and to ascertain its official definition, that is, its denotation or literal meaning. But as for its connotation, or whether it has a positive or negative meaning, that most likely stems from the way it is.
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A solid sphere of mass 4.0 kg and radius 0.12 m is at rest at the top of a ramp inclined 15ï‚°. it rolls to the bottom without slipping. the upper end of the ramp is 1.2 m higher than the lower end. find the sphere's total kinetic energy when it reaches the bottom.
The total Kinetic energy of sphere is KEtot=47J when the mass= 4.0 kg and radius = 0.12 m.
The regulation of conservation of strength states the whole strength of a closed device is constant. Therefore, strength is neither created nor destroyed, instead, it's miles handiest transformed from one shape to another. The sum of the kinetic strength and ability strength have to be the identical earlier than and after.
As here it is given:
mass=4kg, radius =0.12m. h=1.2m. By conservation of strength, the sum of the kinetic strength and the ability strength on its preliminary state (at rest) is same to the sum of the kinetic strength and ability strength whilst the sector has reached the bottom.[tex]KE1+PE1=KE2+PE2\\0+mgh=KEtot+0KEtot=mgh\\K\\Etot=(4kg)(9.8m/s2)(1.2m)\\KEtot=47kgm2/s2\\KEtot=47J[/tex]Read more about sphere :
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the flat bottom boat is traveling at 15 m/s on a lake for which the water temperature is 15 c the length of the boat is 10 m and its width is 2.5 m assume the boundary layer is completely turbulent and take
75 m distance covered by boat when traveling at 15 m/s on a lake for which the water temperature is 15 c .
V=15 m/s
time=5 second
distance=?
velocity=distance/time
distance=velocity×time
distance=15×5
distance=75 m
Distance is the length between two points or items, and it is directionless. Since distance is a scalar attribute, it only takes into account the overall magnitude and ignores the start and end locations. Being a scalar attribute, distance may only be positive or zero; it cannot be the opposite.
Although kilometers (km) and centimeters (cm) or millimeters (mm) can also be used to indicate shorter distances, the meter (m) is the most used unit of measurement for distance. When calculating distance, the letter D is usually used to denote the distance traveled.
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the maximum horizontal distance a boy can throw a ball is 31 m. assume he can throw with the same initial speed at all angles. how high (in m) does he throw the ball when he throws it straight upward?
The maximum horizontal distance a boy can throw a ball is 31 m with a projectile height of 480.5m.
Generally speaking, a projectile with more volume will experience more air resistance, which will shorten the projectile's range. It is important to take into account the projectile's surface because a smooth projectile will encounter less air resistance than one with a rough surface, and irregularities on the projectile's surface could alter its trajectory if they cause more drag on one side than the other. A golf ball's dimples, for example, may actually extend its range because they lessen the amount of turbulence that is created as the projectile travels behind them. The projectile's mass also becomes crucial because a projectile with more mass has more kinetic energy and will therefore encounter less air resistance. The way the projectile is weighted can also have an impact on its trajectory because an unevenly weighted projectile may spin unpredictably as a result of the magnus effect.Height= R²/2 =31²/2 = 480.5mInconsistencies in a projectile's shape and weight distribution usually disappear if it is rotated along its axes of travel.
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0.200 kg object is attached to the end of a 58.0-N/m spring. It is displaced 10.0 cm to the right of equilibrium and released on a horizontal, frictionless surface. Calculate the period T of the motion. T=
When a body is in equilibrium, neither its internal energy nor its motion are affected by the passage of time.
What does an equilibrium position look like?When minor, externally generated displacements from an equilibrium result in forces that tend to counteract the displacement and bring the body or particle back to the equilibrium state, the equilibrium is said to be stable.Examples are a brick that is resting on a flat surface or a weight that is suspended by a spring.The least total potential energy position, or in this example, the maximum kinetic energy position, can be used to determine the equilibrium position.To learn more about equilibrium position refer to:
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consider what happens when you push both a pin and the blunt end of a pen against your skin with the same force. decide what determines whether your skin is cut - the net force applied to it or the pressure.
Answer:
it is cut, because of the pressure
Greater force over a period of time results in a higher initial jump velocity. This statement reflects which of the following laws? O The Law of Inertia O The Law of Momentum O The Law of Reaction O The Law of Conservation of Energy
Greater force over a period of time results in a higher initial jump velocity. This statement reflects the law of reaction.
The law of reaction states that every action has equal and opposite reaction. This can be explained as, if one body exerts a force on another body, the second body exerts a force on the first body which is equal in magnitude but opposite in direction.
For example, when you walk on the earth, your weight acts in the downward direction. And the same force is applied by the earth on you but this force is in the opposite direction.
This is also explained by Newton's third law of motion.
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A long solenoid has 100 turns/cm and carries current i. An electron moves within the solenoid in a circle of radius 2.80 cm perpendicular to the solenoid axis. The speed of the electron is 0.056 c (c = speed of light). Find the current i in the solenoid.
substitute with the givens to get:
\begin{align*} I&=\dfrac{3.41 \times 10^{-3} \mathrm{~T}}{(4\pi \times 10^{-7} \mathrm{~T\cdot m/A})(10000 \mathrm{~turn/m})}\\ &=0.271 \mathrm{~A} \end{align*}
I
The solenoid's current is 0.272A.
solved from this equations, I=/[tex]\frac{3.41×10⁻³T}{(4π×10⁻⁷T⋅m/A)(10000 turn/m)}[/tex]
Which current do you refer to?Electrical charge carriers, such as electrons, flow as current. From negatives to positive points, current flows. The amperage seems to be the SI unit of measurement for alternating energy (A). One make this process of electrical current traveling through a specific place for one second is refereed to as one amperage of power.
Why am I being used in current?Current is typically represented by the letter I, which comes from the French term intensité du courant (current intensity). The term "current" is frequently used to refer to current intensity. André-Marie Ampère, who gave the electric current unit its name, formulated his force law using the I symbol (1820).
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assuming that the x-axis tick marks will be separated by 1.0 units (0, 1.0, 2.0, and so on), what is the largest value that should appear on the x-axis?
Assuming that the x-axis tick marks will be separated by 1.0 units (0, 1.0, 2.0, and so on), the largest value that should appear on the x-axis: is 14.0.
An x-axis is one of the axes of a - or 3-dimensional graph. The x-axis is the horizontal plane of a graph in a Cartesian coordinate device, which gives a numerical price to every point alongside the horizontal x-axis, as well as the vertical y-axis (in a two-dimensional graph).
A Cartesian coordinate machine in a plane is a coordinate gadget that specifies every factor uniquely via a pair of numerical coordinates, which are the signed distances to the point from two fixed perpendicular oriented lines, measured in the same unit of length.
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which of the following best describes why the moon goes through phases? which of the following best describes why the moon goes through phases? earth's shadow falls on different parts of the moon at different times. the moon is somewhat flattened and disk-like, and appears more or less round depending on the precise angle from which we see it we see only part of the lit-up face of the moon depending on its position relative to earth and sun (elongation angle) the sunlight reflected from earth lights up the moon but is less effective when the moon is lower in the sky than when it is higher in the sky
Earth's shadow falls on different parts of the moon at different times best describes why the moon goes through phases.
First off, there are four distinct moon phases, each of which has a different shape and is influenced by the moon's position in relation to the Earth. Earth revolves around the Sun, while the moon revolves around the Earth. However, there are four primary moon phases; we also refer to them as the lunar phases.
First Quarter, Full Moon, Last Quarter, and last but not least, The New Moon, are the four phases. The eight phases that make up the moon's phase are divided into four intermediate phases. The moon phases are essentially the numerous ways the moon appears over the course of a month. The side of the moon that faces the sun will be illuminated as it circles around the planet Earth.
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How are plant cells and solar cells similar?.
Both solar and plant cells absorb photons or debris of mild and power.
Plant cells are eukaryotic cells that vary in several essential elements from different eukaryotic organisms. both plant and animal cells include a nucleus together with comparable organelles. one of the one-of-a-kind elements of a plant cellular is the presence of a cellular wall outside the cellular membrane. Plant cells have special organelles called chloroplasts, which create sugars via photosynthesis. Plant cells are the primary unit of existence in organisms of the kingdom Plantae.
A solar cell, additionally referred to as a photovoltaic cell, is any device that without delay converts the power of light into electric energy thru the photovoltaic effect. Solar cells are semiconductor gadgets that use sunlight to produce energy.
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If your muscles didn't generate opposing forces, in what specific ways would that limit us?.
If our muscles did not generate opposing forces, we would not be able to perform many of the everyday tasks we take for granted, such as:
We would be unable to move our limbs, change direction or stop suddenly. We would not be able to maintain our balance or upright posture. We would not be able to support our body weight and would not be able to lift or carry objects.We would not be able to generate the power necessary for activities such as running, jumping or throwing.What are muscles?Muscles are tissues in the body that enable you to move. They are made up of bundles of fibres that contract and relax to create movement in the body. Muscles are also responsible for maintaining posture and generating heat.
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Classify each phrase or example into the correct type of heat transfer. Be sure to classify all items. Conduction Radiation Convection Answer Bank baby chicken eggs are kept under heat lamps in order for this form of heat transfer to occur involves the movement of a fluid baby chicken eggs are kept under heat lamps in order for this form of heat transfer to occur involves the movement of a fluid this form of heat transfer occurs in the interior of the Earth, when the hot magma rises toward the surface sunlight is an example of this form of heat transfer the burner on an electric stove heating a pot is an example of this form of heat transfer can travel through the vacuum of space heat travels best in gases and liquids using this method of heat transfer involves direct contact between surfaces touching a hot pan with your bare hand is an example of this form of heat transfer
When the hot magma rises toward the surface sunlight is an example of Radiation heat transfer.
What are the 3 methods of heat transfer?Energy that emanates from a source and moves through space at the speed of light is referred to as radiation. This energy has wave-like qualities and is accompanied by an electric field and a magnetic field. Radiation may also be referred to as electromagnetic waves.Radiation is the energy that radioactive atoms emit as electromagnetic waves or particles. Alpha particles, beta particles, and gamma rays are the three most prevalent forms of radiation.the process of carrying out or transmitting. transmission via a conductor or through one. In addition, conductivity is used to convey kinetic energy from one particle to another without causing any net particle movement during the heat transfer process.when the hot magma rises toward the surface sunlight is an example of Radiation heat transfer.
involves direct contact between surfaces touching a hot pan with your bare hand is an example of conductor Heat trasfer.
the movement of a fluid baby chicken eggs are kept under heat lamps in order for this form of convention.
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according to the graph, suvs use more total energy compared to light rail. according to the graph, suvs use more total energy compared to light rail. 1.5 times 2.5 times 3 times 4 times
All forms of automobile use consume 1.5 times more energy per passenger mile than rail use does.
What kinds of energy are there?Chemical, electrochemical, radiant, mechanical, thermal, and nuclear energy are the six main types of energy. Additional forms including electrochemical, acoustic, electromagnetic, and others might be addressed in other studies.
Energy and an example are what?Energy can take on a variety of shapes. Examples of these include: electrical energy, energy is converted, chemical energy, nuclear and atomic energy, artificial light, heat energy, energy of motion, gravitational energy, and so on. Each species has the power to change or change into others.
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What can you infer about two soundwaves with identical amplitudes and different volumes?.
Answer:
alternate between constructive and destructive interference .