A supply plane needs to drop a package of food to scientists working on a glacier in Greenland. The plane flies 130 m above the glacier at a speed of 160 m/s. How far short of the target should it drop the package?

Answers

Answer 1

The plane flies at speed of 160m/s should drop the package when it reaches at a distance of 824m.

How does Newton's second law relate to gravity?

A dropped object travels quickly in the direction of the earth's center. Newton's second law states that the net force applied on an object determines its acceleration. If air resistance is small, the gravitational force, which is also known as an object's weight (w), acts as the net force on any falling object.

What other name does gravity's acceleration go by?

Free-fall acceleration seems to be another name for gravitational acceleration. Gravitational fields established by masses pull other masses approach them.

[tex]h = ut + 1/2 gt^2 ; u=0130 = 1/2 \times 9.8 \times t^2t= 5.15sec[/tex]

The packet travel with the time period of 5.15sec

The distance = v x t

                      160m/s x 5.15s = 824m

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Related Questions

if the bottom of your window is a height hb above the ground, what is the velocity vground of the pot as it hits the ground? you may introduce the new variable vb , the speed at the bottom of the window, defined by

Answers

The new variable vb is the speed at the bottom of the window, defined by vb = Lw/t + gt/2.

In the problem instead of using LW,

Let us use L alone. h is the height from the bottom of the window to the position where from which the pot was dropped

L = (Vb)t - 0.5gt^2 or (Vb) = (L/t) + 0.5gt

Also (Vb) ^2 =2gh,

Hence 2gh = [(L/t) + 0.5gt] ^2 h = [(L/t) + 0.5gt] ^2/ 2g.

This is the needed equation. This can be modified as

h = (L^2/2gt^2) + (L/2) + (gt^2/8)

b) V-ground^2 - Vb^2 = 2g Hb

V-ground^2 = 2g (h_ total)

= 2g Hb + Vb^2 2g ( h_ total)

= 2g Hb + Vb^2 ( h_ total) = Hb + Vb^2/2g

c) From 1 (Vb)

= (L/t) + 0.5gt

The bottom of the window is at a height Hb above the ground

V-ground^2 - Vb^2

= 2g Hb V-ground^2

= 2g Hb + Vb^2

Substituting for Vb, we get the required equation.

The speed of an item is the significance of the exchange of its role over time or the magnitude of the change of its function in step with a unit of time; it's far thus a scalar amount. The common velocity of an item in an interval of time is the gap traveled with the aid of the object divided via the period of the interval the immediate speed is the restriction of the common velocity as the duration of the time techniques 0. pace isn't similar to speed.

Speed has the size of distance divided by means of time. The SI unit of pace is the meter according to second (m/s), however, the most commonplace unit of speed in everyday utilization is the kilometer in keeping with the hour (km/h) or, inside the US and the UK, miles in line with the hour (mph). For air and marine tours, the knot is commonly used.

The fastest viable pace at which power or information can tour, according to important relativity, is the velocity of mild in vacuum c = 299792458 meters per 2d (about 1079000000 km/h or 671000000 mph). depend can not pretty reach the velocity of light, as this will require an infinite amount of energy. In relativity physics, the idea of rapidity replaces the classical idea of pace.

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a mountain climber is about to haul up a 50 m length of hanging rope. how much work will it take if the rope weigh 0.624 n/m? work

Answers

The amount of work required to haul up the rope is 30.72 Nm. This can be calculated by multiplying the weight of the rope (0.624 N/m) by the length of the rope (50 m).

 [tex]0.624 N/m * 50 m = 30.72 Nm[/tex]

The work required to haul up the 50 m length of rope weighing 0.624 N/m is 30.72 Nm. This can be found by using the equation Work = Force x Distance.

The force is the weight of the rope, which is 0.624 N/m, and the distance is the length of the rope, which is 50 m. When multiplied together, the resulting work is 30.72 Nm.

Hauling the rope up will therefore require an expenditure of energy equal to 30.72 Nm.

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WILL GIVE BRAINLY IF RIGHT
what would happen if you dropped, at the same time, particles of different density from a boat into still water

Answers

Explanation:

If the particles of different densities were dropped at the same time from a boat into still water, they would sink or float based on their individual densities. If the denser particles are heavier, they will sink faster than the less dense particles. The less dense particles will float to the surface.

What happens if both the speed and radius of a circular path of a body doubled and what will be the effect of it on centripetal acceleration?

Answers

If both the speed and radius of a circular path of a body  are doubled then centripetal acceleration will also be doubled.

What Is Centripetal Acceleration?

The characteristic of an object moving in a circular path is known as centripetal acceleration. Centripetal acceleration is the term for any moving object whose acceleration vector is directed toward the center of the circle. The centripetal acceleration formula is as follows:

[tex]a_c=v^2 /r[/tex]

where v is the angular speed and r is the radius.

Now for the given question,

Original centripetal acceleration,

[tex]a=v^2 /r[/tex]

New centripetal acceleration,

[tex]a^{'} =(2v)^2 /2r\\\\=2v^2/r\\=2a[/tex]

Hence, centripetal accelearation is also doubled.

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which of the following statements is not true about electric fields produced by charged objects? select the correct answer all of the choices are true the electric field produced by a charged object of any shape can be calculated by first dividing the object up into small pieces and considering each piece to be a point charge a uniformly charged sphere with its center located at (0,0) and net charge q will produce the same electric field at coordinate (-3, 2) outside the sphere as a point charge with the same charge q located at (0,0) the electric field generated by a negative point charge points toward the charge, but the field generated by a uniformly charged flat surface with net negative charge points away from the surface the dependence of the magnitude of the electric field on distance r away from a charged object is different for a point charge and a uniformly charged line

Answers

The following statements which is not true about electric fields produced by charged objects is that it is generated by a negative point charge points toward the charge, but the field generated by a uniformly charged flat surface with net negative charge points away from the surface which is denoted as option B.

What is an Electric field?

This is referred to as a region around a charged particle or object within which a force would be exerted on other charged particles or objects.

Electric field can be generated through a charged body which could be positive or negative which makes option B incorrect.

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When reviewing a uipath bot that is populating a form, you realize you want to change the value for a field that is being populated. how would you do this within the bot?

Answers

Click Variables on the Designer panel to start. It shows the Variables panel. Enter the name and click the Create Variable line. There is a new variable made.

Drag an activity to the Designer panel from the Activities panel. Create a variable by selecting it from the context menu when you right-click a field or by pressing Ctrl+K. It shows the Set Var field. Enter after entering the name. The created variable is present in the field. In UiPath, there are three ways to generate variables: Open the Variables panel, choose the 'Create new Variable' option, and then fill out the fields as necessary. Give its name in the desired Properties field or Designer panel as necessary.

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a 0.800 kg block is attached to a spring with spring constant 17.5 n/m . while the block is sitting at rest, a student hits it with a hammer and almost instantaneously gives it a speed of 50.0 cm/s . what are

Answers

The block may move up to 19.7 cm from its resting position, and its oscillations last for a period of 2.76 seconds.

Displacement formula: What is it?

The final position less the starting position is known as displacement.

The greatest displacement is:

The simple harmonic motion equation can be used to determine the block's maximum displacement:

x = A * cos (wt)

where w is the angular frequency, t is the time, and A is the amplitude. The block's starting velocity can be used to compute the amplitude:

A = v0 / w

The spring constant can be used to determine the angular frequency:

Sqrt(k / m) = w

Where k is the spring constant and m is the block's mass.

Replacement of values

A = 50.0 cm/s/sqrt(17.5 N/m/0.800 kg), and w = sqrt(17.5 N/m/0.800 kg).

w = 2.32 rad/s, with A = 19.7 cm

The maximum displacement is equal to the amplitude:

x = A = 19.7 cm

The oscillation's time scale:

The angular frequency can be used to calculate the oscillation's period:

T = 2 * pi / w

Replacement of values

T = 2.76 s = 2.32 rad/s / 2 * pi

Therefore, the oscillation's period is roughly 2.76 seconds.

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the law of conservation of momentum states that the total momentum of an isolated system

Answers

The law of conservation of momentum states that in an isolated system the total momentum of two or more bodies acting upon each other remains constant unless an external force is applied.

I hope this helps have an excellent day!

a 20m-long metal rod has a radius of 1.0 cm and a resistance of 3.2 x 10-5 ohms. what is the resistivity of the metal?

Answers

A 20m long metal rod has a radius of 1.0 cm and a resistance of 3.2 x 10-5 ohms. The resistivity of the metal is 5.0 * 10 -8 ohm - m.

The value of the metal's resistivity must be determined in accordance with the question.

resistivity = π* r * R / L

= 3.14 * 0.01 * 0.01 * 3.2*10^-5 / 0.20 m

= 5.0 * 10 ^ -8 ohm - m

The Greek letter omega () represents resistance, which is measured in ohms. Ohms are named after the German physicist Georg Simon Ohm (1784-1854), who studied the relationship between voltage, current, and resistance. Ohm's Law is credited to him.

All materials, to some extent, resist current flow. They are divided into two categories:

Conductors are materials with very little resistance that allow electrons to move freely. Silver, copper, gold, and aluminum are just a few examples.

Insulators: Materials with high resistance to electron flow. Rubber, paper, glass, wood, and plastic are just a few examples.

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a quarterback throws a football with angle of elevation and speed . find the horizontal and vertical components of the velocity vector.

Answers

The projectile's displacement horizontally as a result of velocity is shown by the horizontally velocity component (vx). The component of vertical velocity (vy).

What do a vector's horizontal and vertical components mean?

The vector's horizontal portion spans from its source to its farthest x-coordinate. From of the x-axis to a vector's highest point, the vertical component runs. The vector and the two parts combine to form a right triangle.

What exactly is a velocity vector?

A velocity vector shows the rate of change in an object's position. The magnitude of a velocity vector represents an object's velocity, while the vector's direction represents an object's direction.

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A circuit with a battery, a 1 Ω resistor, a 15 Ω resistor, and a 23 Ω resistor in series. The total current is the system is 8.8 A. What is the voltage of the battery?

Answers

Answer:

Below

Explanation:

Series resistances are additive:    V = IR =  (8.8)(1 + 15+23) = 343.2 v

Waves from the sea are much smaller inside a harbour with only a small gap in the harbour wall.
Which type of wave effect does this show?

Answers

When waves spread out when they pass through a hole or past the edge of a barrier, this is called diffraction.

Describe a wave using an example in physics.

An interruption that moves momentum and energy from one place in a medium to another is known as a wave. For instance, we can observe the movement of the wave crest from one side to the other in a specific amount of time as an ocean wave moves in medium water.

How do waves form?

Most often, wind is what produces waves. The rubbing together of wind and surface water produces wind-driven waves, also known as surface waves. A wave crest is produced when wind continuously disturbs the ocean or lake's surface while it blows across it.

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a car is moving down the highway at 65 mph when the driver is forced to brake suddenly to avoid hitting a deer. as they brake, the car's kinetic energy is converted into what? (1 point)

Answers

When conditions and hazards are present on or near a highway, a motorist is not permitted to operate a vehicle there faster than would be reasonable and prudent.

what is kinetic energy?

An object's kinetic energy is the force it has as a result of motion. We have to put forth work to apply a force. After the job is finished, the object will be travelling at a new, constant speed because energy has indeed been transferred to it.

Unless otherwise indicated, 80 km/h is the max speed limit in King Edward Island. The standard speed limits are: 40 kilometres (municipalities may choose the top posted speed within their boundaries); 50 kilometres (30 mph) in urban areas; and 60 kilometres (40 mph) in school zones identified as such by the installation of signs at the intersections.

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Answer:

Into thermal energy.

Explanation:

When the breaks are applied, the kinetic energy is converted to heat, meaning it transforms into thermal energy.

From which location could you observe all of the stars during the course of a year?

Answers

By observing from the equator, you can see all of the stars in the sky at different times of the year, as the earth's rotation and orbit allow you to see different parts of the sky throughout the year.

The equator is an imaginary line that circles the earth, dividing it into two hemispheres: the northern hemisphere and the southern hemisphere. It is the line of zero degrees latitude and is located approximately at 0.00°N latitude. It is about 40,075 kilometers long and is the only line of latitude that is equidistant from both the North Pole and the South Pole. The equator passes through 13 countries including Ecuador, Colombia, Brazil, Congo, and Kenya.

The equator has a unique climate, as it is located in the tropics and receives more direct sunlight than any other part of the earth. This results in a hot and humid climate, with temperatures averaging around 27°C. The equator also experiences frequent rain, with high rainfall levels, particularly in the Amazon Basin. The equator is home to a diverse range of plant and animal life, including tropical rainforests, which are some of the richest and most diverse ecosystems on the planet.

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a car moving at a steady 10 m/s on a level highway encounters a bump that has a circular cross-section with a radius of 30 m. the car maintains its speed over the bump. what is the apparent weight of the 60.0-kgpassenger when the car is at the top of the bump?

Answers

(A) Apparent weight when the car is at the top of the bump is 388 newton. (B) Speed at which the car loses contact with the bump road is 17.15 m/s.

What is weight?

In science and engineering, weight of an object is defined as the force acting on the object due to gravity.

Given, r = 30 m ; v = 10 m/s and m = 60 kg

A) Let N be normal reaction.

And at the bump

N = mg - mv² / r

N = 60 x 9.8 - 60 x 10 x 10 / 30 = 588 - 200

N = 388 newton

Part B) Then contact loose, N = 0

So, mg = mv² / r

v² = r x g = 30 x 9.8 = 294

v = 17.15 m/s.

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Note: The question given on the portal is incomplete. H. Here is the complete question.

Question: A car moving at a steady 10 m/s on a level highway encounters a bump that has a circular cross-section with a radius of 30 m. The car maintains its speed over the bump. What is the normal force exerted by the seat of the car on a 60 kg passenger when the car is at the top of the bump? Part B) what speed does the car lose contact with the bump road?

if the braking distance for your car at a certain speed is 200 ft and, after reacting to a situation, you have managed to stop your car in 4.0 s, then the magnitude of the acceleration was

Answers

The magnitude of acceleration will be: [tex]a = \frac{2}{4^2} \left( 200 \text{ ft} - v_0 \cdot 4.0 \text{ s} \right)[/tex]

The magnitude of the acceleration can be found using the equation of motion for the uniformly accelerated motion:

[tex]$$d = v_0 t + \frac{1}{2} at^2$$[/tex]

where d is the braking distance,

v_0 is the initial speed,

t is the time taken to stop, and

a is the magnitude of the acceleration.

Given that the braking distance is 200 ft, and the time taken to stop is 4.0 s, we can write:

[tex]$$200 \text{ ft} = v_0 \cdot 4.0 \text{ s} + \frac{1}{2} a \cdot 4.0^2 \text{ s}^2$$[/tex]

Solving for a, we find:

[tex]a = \frac{2}{4^2} \left( 200 \text{ ft} - v_0 \cdot 4.0 \text{ s} \right)[/tex]

Note that v_0 is not given, so we cannot determine the exact value of a.

However, we can see that the magnitude of the acceleration is proportional to the difference between the braking distance and the product of the initial speed and time taken to stop.

The greater the difference, the greater the magnitude of the acceleration.

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A lever with an effort arm of 10 meters and a load arm of 2 meters is used to lift an object weighing 220 Newtons to a height of 4 meters. If 400Joules of work is done, how much force must have been applied?(1 point)
Responses

1600 N
1600 N

100 N
100 N

4000 N
4000 N

800 N

Answers

The amount of force which is required to be applied on an object to displace it is 1100 Newtons.

What is Work done?

Work done can be defined as the force applied to move an object, it should be transferred to the energy of an object. Transferring the energy to an object can be in the method of force.

Work done = effort force × effort arm × cosθ

where, theta is the angle between the effort arm and the load arm. Since the angle is not given, we can assume it to be 90 degrees.

We know that the work done is 400 joules, the effort arm is 10 meters, and the load arm is 2 meters.

We can substitute these values into the equation:

400 = Feffort × 10 × cos(90)

The cosine of 90 is zero.

So, Feffort = 400/0 = undefined

To find the force applied, we can use the principle of the mechanical advantage of the lever.

MA = load arm/effort arm = 2/10 = 1/5

Feffort = Fload / MA = 220 N / (1/5) = 1100 N

Therefore, the force applied must have been 1100 Newtons.

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what is the repulsive force between two pith balls that are 10.3 cm apart and have equal charges of 34.0 nc?

Answers

The repulsive force between two pith balls is F = 9.8 × 10^(-4) N

It can be calculated using Coulomb's law, which states that the force between two point charges is proportional to the product of the charges and inversely proportional to the square of the distance between them. The formula for Coulomb's law is:

F = k × q1 × q2 / r^2

where k is the Coulomb constant (9 × 10^9 N × m^2 / C^2), q1 and q2 are the magnitudes of the charges, and r is the distance between them. With the given charges of 34.0 nC and a separation of 10.3 cm, we can calculate the repulsive force as follows:

F = (9 × 10^9 N × m^2 / C^2) × (34.0 × 10^(-9) C)^2 / (0.103 m)^2

F = 9.8 × 10^(-4) N

The resulting force will be a positive value, indicating repulsion.

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a velocity vector has a magnitude of 23.0 m/s . if its y component is -10.0 m/s , what are the possible values of its x component?

Answers

The possible values of the velocity vector x component are - 20.71 m/s or 20.71 m/s.

Velocity is a vector quantity so it can be described in x components and y components.

v = 23.0 m/svy = - 10.0 m/s
The y component is negative.
The y component may be in quadrant III or quadrant IV.The y component according to trigonometric ratios
sin β = vy ÷ v
sin β = 10.0 ÷ 23.0
sin β = 0.435
β = sin⁻¹ (0.435)
β = 25.79°The x component
cos β = vx ÷ v
cos 25.79° = vx ÷ 23.0
0.9 = vx ÷ 23.0
vx = 0.9 × 23.0
vx = 20.71 m/s

Look at the picture. At quadrant III

The x component is negative.vx is negative in quadrant III
vx = - 20.71 m/s

At quadrant IV

The x component is positive.vx is positive in quadrant IV
vx = 20.71 m/s

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classes are canceled due to snow, so you take advantage of the extra time to conduct some physics experiments. you fasten a large toy rocket to the back of a sled and take the modified sled to a large, flat, snowy field. you ignite the rocket and observe that the sled accelerates from rest in the forward direction at a rate of 14.5 m/s2 for a time period of 2.70 s. after this time period, the rocket engine abruptly shuts off, and the sled subsequently undergoes a constant backward acceleration due to friction of 5.65 m/s2. after the rocket turns off, how much time does it take for the sled to come to a stop?

Answers

The time taken by the sled to come to a stop after the rocket turns off is calculated to be 6.93 s.

Generally the velocity attained by the sled after t = 2.7 s is mathematically evaluated using the kinematic equation as follows,

v = u + a t

As, u = 0, a = 14.5 m/s²

v = 0 + 14.5 (2.7) = 39.15 m/s

s is the distance it covers in this time.

s = u t + 1/2 a t² = 1/2 × 14.5 × 2.7² = 52.85 m

Now, when sled stops its the final velocity is v f = 0, while the initial velocity will be the velocity after its acceleration i.e, v = 39.15 m/s.

So, v f = v + a₁ t₁

-39.15 = 2.7 a₁

a₁ = -14.5 m/s²

As a₁ is negative, it is said to be deceleration.

0 = 39.15 - 5.65 t₁

5.65 t₁ = 39.15

t₁ = 6.93 s

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Which one of the following energy conversion devices has the highest energy efficiency? (2 Points)
A) Generator
B) Steam turbine
C) Automobile engine
D) Incandescent light bulb

Answers

The energy-efficient energy conversion device is a generator, one of the following.

The efficiency formula is what?

Utilizing the formula below, efficiency may be represented as a ratio: Input > Output. The total quantity of beneficial work accomplished, excluding waste and spoilage, is known as output or work output. Efficiency may also be expressed in percent by dividing the ratios by 100.

What are some physics instances of efficiency?

Energy is squandered less when a machine is more effective. For instance, a heat engine would be considered 75% efficient if it could convert 75% of the gasoline it received into motion while only losing 25% of it as heat.

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if mass of the object is doubled, what would happen to the centripetal force?

Answers

As can be shown, mass has no bearing on an object's centripetal acceleration; as a result, the centripetal acceleration is unaffected by changes in mass.

What is the most straightforward explanation of acceleration?

The rate at which velocity changes is known as acceleration. Acceleration typically indicates that the speed was changing, but not necessarily. An item that is moving in a circle while maintaining a constant speed is still accelerating because of direction of its motion is shifting.

What are two instances of acceleration?

An object's velocity may alter depending on whether it is moving faster, slower, or in a different direction. A falling apple, the sun orbiting the earth, or a car stopped at a stop sign are a few instances of acceleration.

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how do babies inherit eyes using the vocabulary trait,gene,chromosome,dominant allele, recessive allele, genotype, phenotype, homozygous, heterozygous

Answers

Answer: Babies inherit their eye color through the combination of genes they receive from their parents. Genes, which are located on chromosomes, determine a specific trait, such as eye color. Each gene has two alleles, one from each parent, and the dominant allele will determine the phenotype, or the observable physical characteristics, of the trait. If a baby inherits a dominant allele for brown eyes and a recessive allele for blue eyes, the brown allele will be expressed, resulting in brown eyes. The combination of alleles a baby inherits is called their genotype. If a baby inherits two identical alleles for a trait, they are said to be homozygous for that trait, while if they inherit two different alleles, they are heterozygous. The dominant allele is expressed over the recessive allele in heterozygous individuals, resulting in a phenotype that reflects the dominant allele.

Explanation:

rank the following worlds by the strength of wind erosion currently operating on their surfaces, from greatest to least:a. mercuryb. venusc. earthd. moone. mars

Answers

In order of the degree of wind erosion now occurring on their surfaces, Earth, Venus, Mars, Moon, and Mercury are the planets.

What distinguishes the surface is Mercury from that of the Moon?

The MESSENGER mission discovered that Mercury has several distinctive landforms, more level plains, and surface chemistry that are unlike those that have been observed on the Moon (low in iron and rich in sulfur).

The planet Mercury is it the windiest?

With wind speeds as high as 1600 kilometers an hour, significantly higher than those seen in Jupiter's atmosphere, Saturn also the "windiest" planet. Major components of Saturn include hydrogen and helium.

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what is energy efficiency? if a machine is not 100% efficient does it violate the law of conservation of energy? why or why not?

Answers

Energy efficiency refers to the use of less energy to perform the same tasks.

Meanwhile law of conservation of energy states that energy cannot be created or destroyed, only converted from one form to another; a machine's efficiency below 100% does not violate the law of conservation of energy because some energy is inevitably lost as waste heat during energy conversion processes.

Energy efficiency refers to the ability to perform a task using the minimum amount of energy necessary. Energy efficiency is important because it helps reduce the energy consumption and greenhouse gas emissions that result from energy production.

A machine that is not 100% efficient does not violate the law of conservation of energy because energy is not destroyed, only converted from one form to another. When energy is converted from one form to another, some energy is inevitably lost as waste heat. According to the principle of energy conservation, energy can neither be created nor destroyed; rather, it can only be transformed from one form into another.

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2. Use the words in box to complete the statements:
conduction
convection
fluids
solids
vacuum
infrared


the process of ____ takes place only in ______. It does not happen in liquids and gases.

Heat is transferred through _____ by the process of ______. _______ radiation transfers energy as a wave: it can travel through a _____.

Answers

The process of conduction takes place only in solids. It does not happen in liquids and gases. Heat is transferred through fluids by the process of convection. Infrared radiation transfers energy as a wave: it can travel through a vacuum.

What is conduction?

It is the transfer of heat or electricity through a material without any physical movement of the material itself.

Conduction happens in solids, liquids, and gases, but solids are more effective at it.

The material's thermal conductivity affects how quickly heat transfers through it.

The gradient in temperature or the difference in electrical potential determines how much heat or electricity may go through a substance.

The transfer of heat or electricity through a material can be influenced by various factors, such as the type of material, its thickness, temperature, pressure, and electromagnetic fields.

Conductors are materials that allow heat or electricity to flow through them with ease, whereas insulators impede the flow of heat or electricity.

Conduction is a key factor in various industrial and technological applications, including heating and cooling systems, electrical power generation and distribution, and telecommunications.

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HELP PLEASE Which unit rate corresponds to the proportional relationship shown in the graph?
Drag and drop the answer into the box to match the graph with its unit rate.

Answers

The speed of the object is   4/3 cm/second.

What is speed?

Speed is distance travelled by the object per unit time. Due to having no direction and only having magnitude, speed is a scalar quantity With SI unit meter/second.

According to the graph:

Initial position (at t = 0 second) of the object is = 0 cm.

At t = 12 second, position of the object is = 16 cm.

As the graph is linear;

the speed of the object is =  (16-0)/(12 -0) cm/second

= 4/3 cm/second.

Hence, the speed of the object is   4/3 cm/second, that is, 1.33  cm/second.

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ball a with diameter d and ball b with diameter 2d are dropped from the same height. when the two balls have the same speed, what is the ratio of the drag force on ball a to the drag force on ball b? assume the reynolds number is high.

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When such two balls are moving at the same speed, F1: F2 = 1: 4 will be the ratio of drag forces on balls A and B.

What in science is a force?

Within science, the term "force" has to have a specific definition. At this point, describing a force as both a push or even a pull is completely acceptable. There is no substance that only an object "seems to have in it" or which it "contains" that is the force. This force is applied to one thing by another. The definition of a force comprises both living as well as non-living things.

Drag force calculation formula is = F(d) = 1/2 * C * rho*A * v²

Drag coefficient, or C

A = object area

rho = density of the moving object

v = the object's velocity

A = the object's area

F1 (force of drag on ball A) = 1/2 * C * rho * area of ball A *  v²

Ball A's drag force, F2, is equal to = 1/2 * C * rho * area of ball B *  v²

The only difference between the two balls is their differences in area because both are falling in the same environment and have the same speed.

F1/F2 = ball area A / ball area B=  4 * pi * r1² / 4 * pi * r2²

r1²/r2²

(d/2)²/(2d/2)²

F1 : F2 = 1 : 4

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. a rock is suspended from a scale reads 20.0 n. a beaker of water (having a density of 1000 kg/m3) is raised up so the rock is totally submerged in the water. the scale now reads 12.5 n. what is the density of the rock?

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Density of the rock after submerging in a beaker of  water is 2.67ˣ10³Kg/m³.

We are given some quantities like Force = 20.0 N,Density = 1000 kg/m³.We need to calculate the mass of the rock firstly when it is reading 20N.

Similarly,the scale new reads 12.5 N,we need to again find the mass of the rock.

Using formula of force,we know that

F=mg

=>20N=m×10

=>m=20/10

=>m=2kg.

Now,Scale reads 12.5 N after rock is totally submerged so mass of rock after submerged.We need to calculate the mass of rock

Using formula of force,

F=mg

=>12.5=m×10

=>m=12.5/10

=>m=1.25Kg.

The scale reads 12.5 N = 1.25 kg so it is displacing 0.75 kg of water

We need to calculate the volume of rock using volume of water it displaces.Since,density is given we need to use the formula of volume which is given by

Volume=mass/density

=>V=0.75/1000

=>V=7.5×10⁻⁴m³

After finding the volume,we need to calculate the density of the rock.

Using formula of density,

density=mass/volume

=>density=2kg/7.5×10⁻⁴m³

=>density=2666.66kg/m³

=>density=2.67ˣ10³Kg/m³

Hence, density of rock is 2.67ˣ10³Kg/m³.

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which of the following quantities are unknown?initial separation of the particlesfinal separation of the particlesinitial speed of the protoninitial speed of the alpha particlefinal speed of the protonfinal speed of the alpha particlemass of the protonmass of the alpha particlecharge of the protoncharge of the alpha particle

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The quantities that are unknown final separation of the particles and initial speed of the protoninitial speed of the alpha particlefinal speed of the protonfinal speed of the alpha particles.

Alpha particles are positively charged particles consisting of two protons and two neutrons. They are the heaviest and most energetic of the common types of radiation emitted by radioactive materials. Alpha particles can be emitted by the decay of heavy elements such as uranium, radium, and plutonium. T

hey are relatively large and heavy, which means that they have a short range and are easily stopped by even thin materials such as paper or human skin. However, they can be dangerous if they are inhaled or ingested, as they can cause damage to living tissue and increase the risk of cancer

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