how many grams is a kilo

Answers

Answer 1

A kilo is a commonly used unit of measurement for mass, which is equivalent to 1,000 grams. The term "kilo" comes from the Greek word "khilioi," meaning "thousand."

In the metric system, the gram is the base unit of mass, with all other units of mass derived from it. The prefix "kilo" is used to indicate that the quantity being measured is 1,000 times larger than the base unit.

Therefore, one kilogram (kg) is equal to 1,000 grams (g). This relationship between kilograms and grams is often used in a wide range of applications, from measuring the weight of everyday objects to determining the mass of larger objects such as vehicles, animals, or building materials.

Understanding the relationship between kilograms and grams is essential for performing accurate measurements and calculations involving mass, particularly in scientific and industrial settings where precise measurements are critical.

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Related Questions

how to calculate the time dependence of the velocity components of an object moving like the ride’s seats. use this to calculate the object’s acceleration?

Answers

The time dependence of the velocity components of an object moving like the ride's seats are:

vx(t) = -rω sin(ωt)

vy(t) = rω cos(ωt)

And the time dependence of the acceleration components of the object are:

ax(t) = -rω^2 cos(ωt)

ay(t) = -rω^2 sin(ωt)

To calculate the time dependence of the velocity components of an object moving like a ride's seats, we need to know the equation of motion for the object. Let's assume that the ride's seats move in a circular path with a constant angular velocity, ω, and a radius, r.

Then, the position vector of the object can be written as:

r(t) = r cos(ωt) i + r sin(ωt) j

where i and j are the unit vectors in the x and y directions, respectively.

To find the velocity vector, we can take the derivative of the position vector with respect to time:

v(t) = dr/dt = -rω sin(ωt) i + rω cos(ωt) j

The x-component of the velocity is -rω sin(ωt) and the y-component is rω cos(ωt).

To find the acceleration vector, we can take the derivative of the velocity vector with respect to time:

a(t) = dv/dt = -rω^2 cos(ωt) i - rω^2 sin(ωt) j

The x-component of the acceleration is -rω^2 cos(ωt) and the y-component is -rω^2 sin(ωt).

So, the time dependence of the velocity components of the object moving like the ride's seats are:

vx(t) = -rω sin(ωt)

vy(t) = rω cos(ωt)

And the time dependence of the acceleration components of the object are:

ax(t) = -rω^2 cos(ωt)

ay(t) = -rω^2 sin(ωt)

Note that the magnitude of the acceleration vector is constant and equal to rω^2.

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Which scientist discovered that his theory predicted an expanding universe, and because he doubted the existence of expansion, modified his equations to eliminate this expansion from his theory?

Answers

The scientist who discovered that his theory predicted an expanding universe, and because he doubted the existence of expansion, modified his equations to eliminate the expansion from his theory was Albert Einstein.

The scientist who modified his equations to eliminate the expansion from his theory was Albert Einstein. In 1917, Einstein applied his theory of General Relativity to the entire universe and found that his equations predicted a dynamic, expanding universe. However, at the time, it was widely believed that the universe was static and unchanging, so Einstein introduced a mathematical term known as the cosmological constant to his equations to counteract the predicted expansion and maintain a static universe.

It was not until several years later, when observations by astronomer Edwin Hubble confirmed that the universe was indeed expanding, that Einstein realized his mistake and called the introduction of the cosmological constant his "biggest blunder." The idea of an expanding universe would eventually become an important cornerstone of modern cosmology.

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what can the depth of the pe well tell you

Answers

The depth of a petroleum well can provide important information about the geological structure and potential oil reserves in a particular area.

The depth of the well is an indicator of the thickness of the rock formations that have been drilled through, which can help identify potential reservoirs of oil or gas. By analyzing the rock layers and their characteristics, such as porosity and permeability, geologists can estimate the quantity and quality of hydrocarbons present in the reservoir.

In addition to providing information about the potential oil and gas reserves, the depth of the well can also be used to determine the cost and feasibility of drilling in a particular area. Drilling deeper wells is typically more expensive, so understanding the geology and potential oil reserves at a particular depth is important for determining the economic viability of a drilling project.

Overall, the depth of a petroleum well is a key factor in understanding the geology and potential hydrocarbon resources in a particular area.

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The cheetah can run 103 km/h, a falcon can
fly 148 km/h, and a sailfish can swim 92 km/h.
The three of them run a relay with each covering a distance L at maximum speed.
What is the average speed of this relay
team?
Answer in units of km/h.

Answers

Answer: 109.9 km/h

Explanation:

To find the average speed of the relay team, we need to determine the total distance covered by the three animals and the time it takes for them to complete the race. Assuming each animal runs/swims at maximum speed for distance L, we can calculate the time it takes for each animal to complete its part of the relay as:

Cheetah: Time taken = Distance / Speed = L / 103

Falcon: Time taken = Distance / Speed = L / 148

Sailfish: Time taken = Distance / Speed = L / 92

Since the three animals take turns to complete the race, the total time taken for the relay race would be the sum of the time taken by each animal:

Total time taken = L/103 + L/148 + L/92

To find the average speed, we need to divide the total distance covered (3L) by the total time taken:

Average speed = Total distance / Total time

= 3L / (L/103 + L/148 + L/92)

= 3 / (1/103 + 1/148 + 1/92)

= 109.9 km/h (rounded to one decimal place)

Therefore, the average speed of the relay team is approximately 109.9 km/h.

Regenerate response

higher angles tend to _________ the perception of status and strength of the subject.

Answers

Higher angles tend to decrease the perception of status and strength of the subject.

What is a higher angle?

Because when camera gazes on the figure or subject from either a high vantage point, it is called a high angle shot. This is often accomplished by raising the camera above the subject and then directing it to capture them from below. At a shallow angle just above eye level to directly above the subject, this can be used.

Why does a higher angle matter?

The high angle view may provoke a variety of feelings, from vulnerability and dread to tension and danger, depending on the circumstances of the story you're presenting. High angle shots may also be a plot-supporting, narrative-engaging, scene-setting, and portray a broad narrative scale in movies.

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If Alex wishes to rotate his skateboard, then he must apply a- pause before bearing down on the board.- torque- rotational maneuver

Answers

If Alex wishes to rotate his skateboard, he must apply a torque where the axis is the central axis of the skateboard.

If Alex wishes to rotate his skateboard, he must apply a torque. Torque is the twisting force that causes an object to rotate around an axis. In this case, the axis is the central axis of the skateboard.

To apply torque, Alex needs to apply a force to the skateboard that is perpendicular to the axis of rotation. This force will cause the skateboard to start rotating. However, just applying a force may not be enough to complete the rotation. Alex also needs to control the direction and speed of the rotation.

To do this, he may need to pause before bearing down on the board. This pause allows him to position his body and feet properly for the maneuver. Once he is in the right position, he can then apply the necessary force to initiate the rotation.

The rotational maneuver involves shifting the weight of the body and the position of the feet while the skateboard is rotating. By controlling the direction and speed of the rotation with the torque, Alex can perform various types of rotational maneuvers such as a kickflip, heelflip, or 360 spin.

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Pls help with this question it is giving me headache

Answers

1) The velocity is 5 m/s

2) The final momentum is 25 Kg m/s

What is the momentum?

We must note that the momentum, is the product of the mass and the velocity of the object and that we can be able to obtain the momentum of the object when we look at the values that we have.

1) Given that;

Momentum before collision = Momentum after Collison

(0.5 * 10) + (0.5 * 0) = (0.5 + 0.5) v

5 = v

V = 5 m/s

2) From;

Ft = mv - mu

Ft = mv

Where mv = p2 or the final momentum

p2 = 5 * 5

= 25 Kg m/s

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find acceleration with mass and distance

Answers

Acceleration with mass and distance formula is Acceleration = net force/mass.

Acceleration is a change in the motion of an object, such as Mccoy speeding up on his skateboard. When an object is acted on by an unbalanced force, it accelerates. The greater the net force, the greater its acceleration, but mass also influences acceleration.

The greater the acceleration for the given magnitude of force, the smaller the mass. These relationships are summarised by Newton's second law of motion. This law states that an object's acceleration equals the net pressure placed on it divided by its mass.

It is frequently easier to measure an object's mass and acceleration than for the net force exerted on it. A balance can be used to measure mass, but instead, average acceleration can also be calculated using velocity and time.

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if 63 % of the thermal energy produced when it hits the ground is absorbed by the sphere, what is its temperature increase? express your answer using two significant figures.

Answers

The requried thermal energy produced when it hits the ground is absorbed by the sphere given by the expression Q = 0.63 * E.

What is thermal energy?

Thermal energy is the energy that comes from the internal temperature of an object or substance. It is a form of kinetic energy that is related to the motion and vibration of molecules and atoms within a material.

Here,
To solve this problem, we need to know the specific heat capacity of the sphere and its mass. Without this information, we cannot calculate the temperature increase.

Assuming that we have the specific heat capacity and mass of the sphere, we can use the formula:

ΔT = Q / (m * c)

where ΔT is the temperature increase, Q is the thermal energy absorbed by the sphere, m is the mass of the sphere, and c is the specific heat capacity of the sphere.

Since 63% of the thermal energy produced when it hits the ground is absorbed by the sphere, we can write:

Q = 0.63 * E

where E is the thermal energy produced when it hits the ground.

Thus, the requried thermal energy produced when it hits the ground is absorbed by the sphere is given by the expression Q = 0.63 * E.

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if heat was lost from the calorimeter while the ice was melting, how would the molar heat of fusion change?

Answers

melting ice: because initial temperature of ice is 0 degrees celsius, it take heat  hot water and melt2. warming water: after ice melted, it leaves behind water at 0 degrees celsius that must be warmed by the hot water

How do you find initial and final temperature?

Add the change in temperature to your substance's original temperature to find its final heat. For example, if your water was initially at 24 degrees Celsius, its final temperature would be: 24 + 6, or 30 degrees Celsius.

Are the starting temperature and the ending temperature the same?

It is necessary for the final temperature to match the starting temperature. The internal energy must match the internal energy at the beginning and end. There must be no net heat added to the system during the procedure. The system must perform no net work during the procedure.

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the first-order decomposition of n2o5 at 328 k has a rate constant of 1.70 × 10-3 s-1. if the initial concentration of n2o5 is 2.88 m, what is the concentration of n2o5 after 12.5 minutes?

Answers

First-order decomposition has rate constant of [tex]1.70 * 10^-3 s^-1[/tex]. We use the first-order rate law. Concentration N2O5 after 12.5 minutes is 1.21 M.

In Decomposition :

The first-order rate law is expressed as: rate = k[N2O5], where k : rate constant and [N2O5] is the concentration of N2O5.

To find the concentration of N2O5 after 12.5 minutes, we can use the following equation:

[tex][N2O5] = [N2O5]0 e^(-kt)[/tex]

Where [N2O5]0 : initial concentration of N2O5, k : rate constant, and t: time in seconds. Convert time of 12.5 minutes to seconds, having 750 seconds.

[N2O5] = [tex]2.88 M * e^(-1.70*10^(-3) s^(-1) * 750 s)[/tex]

[N2O5] = 1.21 M

Therefore, the concentration of N2O5 after 12.5 minutes is 1.21 M.

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A flea (of mass 6 × 10-7 kg) jumps by exerting a force of 1. 2 × 10-5 N straight down on the ground. A breeze blowing on the flea parallel to the ground exerts a force of 0. 515 × 10-6 N on the flea. F1 = 1. 2 × 10^-5 N
f2 = 0. 515 × 10^-6 N Find the direction of the acceleration of the flea in degrees relative to the vertical

Answers

The direction of acceleration of the flea is 0.0376 degrees relative to the vertical.

Step by step explanation

The net force on the flea can be found by vector addition of the forces F1 and F2:

Fnet = F1 + F2

The forces F1 and F2 are given as:

F1 = 1.2 × 10^-5 N (straight down)

F2 = 0.515 × 10^-6 N (parallel to the ground)

We can resolve F1 into its horizontal and vertical components. The vertical component of F1 is equal and opposite to the weight of the flea, which is given by:

W = mg

= (6 × 10^-7 kg) × (9.8 m/s^2)

= 5.88 × 10^-6 N

Therefore, the vertical component of F1 is -5.88 × 10^-6 N (upwards), and the horizontal component of F1 is zero.

The forces F2 and the vertical component of F1 are both parallel to the ground, so their vector sum is simply the sum of their magnitudes:

Fnet = F1v + F2

= (-5.88 × 10^-6 N) + (0.515 × 10^-6 N)

= -5.365 × 10^-6 N

The negative sign indicates that the net force is upwards, opposite to the direction of the flea's motion.

Now, we can use Newton's second law of motion to find the acceleration:

Fnet = ma

Rearranging this equation, we get:

a = Fnet/m

Substituting the values of Fnet and m, we get:

a = (-5.365 × 10^-6 N) / (6 × 10^-7 kg)

= -8.942 m/s^2

The negative sign indicates that the acceleration is upwards, opposite to the direction of the flea's motion.

Finally, we can find the direction of the acceleration relative to the vertical using trigonometry. The vertical component of the acceleration is given by:

aV = -a sin θ

where θ is the angle between the direction of acceleration and the vertical. Rearranging this equation, we get:

sin θ = -aV / a

Substituting the values of aV and a, we get:

sin θ = (-5.88 × 10^-6 N) / (-8.942 m/s^2)

= 0.000656

Taking the inverse sine, we get:

θ = 0.0376 degrees

Therefore, the direction of acceleration of the flea is 0.0376 degrees relative to the vertical.

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True/false?The amount of energy used to heat a home can be measured using
Kilowatt hours

Answers

The correct option is True. The amount of energy used to heat a home can be measured using Kilowatt hours.

In physics, energy is a property of objects or systems that enables them to do work. It is a scalar quantity that can be defined as the ability to do work, where work is defined as the transfer of energy from one object to another. Energy can be categorized into two main types: potential energy and kinetic energy.

Potential energy is the energy that an object has due to its position or configuration. For example, a stretched spring has potential energy due to its stretched position, and a ball at the top of a hill has potential energy due to its height above the ground.

Kinetic energy, on the other hand, is the energy that an object possesses due to its motion. For example, a moving car has kinetic energy due to its velocity, and a spinning top has kinetic energy due to its angular velocity.

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Hi, can someone help me on solving this? (Rt is total resistance, It is total current and VT is total voltage)

Answers

Answer:

Below

Explanation:

You have total current correct   3 A    from the ammeter in the circuit.

Must find total resistance to calculate the Vt

  the two resistors in parallel =   12 * 6 / (12+6) = 4 Ω

     then add this equivalent R to the other R that is in series  

              8 + 4 = 12 Ω      < ====   Rt

then   Vt = It Rt

          Vt = 3 * 12 = 36 v

V1 = It R1 = 3 * 8 = 24 V

V2 and V3 are equal and would be the voltage left 36-24 = 12 v

     or you could calculate V2 and V3        V2 = V3 = It R = 3 ( 4 Ω) = 12 v

what is newtons first law example

Answers

Newton's first law of motion, also known as the law of inertia, states that an object at rest will remain at rest, and an object in motion will continue to move at a constant velocity, unless acted upon by an external force.

An example of Newton's first law is a book lying on a table. The book is at rest and will remain at rest unless an external force acts on it, such as someone picking it up or a strong gust of wind blowing it off the table. Once the external force is applied, the book will move according to the direction and magnitude of the force.

Another example is a hockey puck sliding on the ice. If there were no friction, the puck would continue to slide in a straight line at a constant velocity. However, due to friction, the puck slows down and eventually comes to a stop, unless another external force is applied to keep it in motion.

In both examples, the objects will remain at rest or in motion with a constant velocity, according to Newton's first law, unless acted upon by an external force.

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two identical automobiles have the same speed, one traveling east and one traveling west. do these cars have the same momentum? explain.

Answers

Answer:

p = m v       momentum p is usually considered a vector quantity

Since the vector velocity v is positive in one case and negative in the other case (where v is the scalar speed), the momentum is different (opposite and equal) in the two cases given.

what is the primary difference between the typical structure of rna and dna?

Answers

The main distinction between the normal structures of RNA and DNA is that the former is single-stranded, while the latter is double-stranded.

What are the differences in detail?

Whereas DNA (deoxyribonucleic acid) is made up of two long strands of nucleotides that are twisted into a double helix shape, RNA (ribonucleic acid) is made up of a lengthy single-stranded chain of nucleotides.

The presence of the sugar ribose in RNA as opposed to the sugar deoxyribose in DNA is another distinction between the two molecules. Moreover, DNA has the nucleotide base thymine, whereas RNA has the nucleotide base uracil (U) (T). Because of these structural variations, RNA and DNA can perform a variety of diverse tasks in the cell, with DNA storing and conveying genetic information and RNA participating in processes like protein synthesis.

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if a 3/8-inch liquid line has a vertical lift of 40 feet, how much pressure drop is there?
A) 10 psig
B) 20 psig
C) 30 psig
D) 40 psig

Answers

The pressure drop in a 3/8-inch liquid line with a 40-foot vertical lift is 20 psig.

option B

When extracting oil from low pressure systems, 130 degrees Fahrenheit should be utilised since a greater temperature will result in less refrigerant being present in the oil.

Rupture discs are employed when a pressure relief device has to open completely and instantly. These devices are also employed when a relief device's leakage must be "zero."

The rupture disc in question has a burst pressure of 30 PSI at a temperature of 130 °C.

Temperature has a big impact on how well a rupture disc performs since the thin metal rupture element's physical strength fluctuates with temperature. The pressure of the vapour created by the evaporation of a fluid (or solid) over a sample of the fluid (or solid) in such a closed container is known as the vapour pressure of a liquid, also known as the equilibrium pressure of a vapour over its liquid (or solid).

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Again consider example 3. 4. Does this curve provide sufficient stopping sight distance for a speed of 60 mi/h?

Answers

The minimum length of the curve for the required sight distance is 338.12 feet.

Locate the station point of the highest point on the curve.

(dy)/(dx) = 0

(dy)/(dx) = - 0.19 × 2x + 1.2 = 0

x = 3.1579stations

The elevation of the very best point at the curve is

y = - 0.19 × 3.1579² + 1.2 × 3.1579 + 1094.8

= 1096.69ft

Deceleration rate a is 11.2ft / (s² ). Reaction time t is 2.5seconds

The necessary SSD for the design speed of 60mph is

V 1 ^ 2/ 2g(( a / g ) pm G) +V 1 × t

,= (60 * 5280ft)² /(60 × 60s)) ² /(2 × 32.2((112/322))) + ((60 * 5280f)/(60 * 60s)) * 2.5

= 565.71pi

Lm= (|G1 - G2| × SSD² )/2158  = (|1.2 + 1.08| × 565.71²) /2158

= 338.12ft

speed in physics is a scalar amount that refers back to the fee at which an item moves, typically expressed in units of meters in line with seconds (m/s) or kilometers in step with the hour (km/h). it is defined as the distance an item travels in line with a unit of time, which means that it only takes into consideration the value of the item's motion and not its path.

Immediate speed refers to the speed of an item at any given second, at the same time as average speed is calculated over a period of time. the velocity of an object may be inspired by means of several elements, which include the forces appearing upon it and the medium through which it is transferring.

Further to hurry, there are different associated standards in physics, along with speed, which incorporates each the rate and course of an item's movement and acceleration, which describes the rate at which an object's velocity changes over the years.

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4. when a person passes you on the street, you do not feel a gravitational pull. explain.

Answers

Their mass is small enough to produce a significant gravitational pull on your body due to inverse square law of gravity.

All objects in the universe exert a gravitational pull on each other, as described by Newton's law of universal gravitation. The magnitude of this force is proportional to the masses of the objects and the distance between them. However, in most cases, the force of gravity between everyday objects is too small to be noticeable.

The force of gravity between two people is determined by their masses and the distance between them. Since the masses of two people are relatively small compared to, say, the mass of the Earth, the gravitational force between them is negligible.

Furthermore, the distance between two people passing each other on the street is relatively large compared to their masses. The gravitational force between two objects decreases rapidly with distance, becoming very small at distances much larger than the size of the objects. Hence, the gravitational pull between two people passing each other on the street is too small to be felt or noticed.

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How does the Hood Canal Bridge work?

Answers

The Hood Canal Bridge is a floating bridge that uses pontoons to support the weight of the bridge deck and allow for water traffic to pass underneath.

The Hood Canal Bridge is a floating bridge that spans the Hood Canal, a narrow and deep fjord in Washington State, USA. The bridge is made up of two parallel pontoons, each over 2,500 feet long, that are connected by a series of trusses and beams.

The pontoons float on the surface of the water and are stabilized by a system of cables and anchors that hold them in place. The bridge is supported by over 80 concrete pillars that are anchored to the sea floor. The bridge can be opened to allow boats and ships to pass through by raising the pontoons using hydraulic jacks, which are powered by two diesel engines.

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Rank each pendulum on the basis of the maximum kinetic energy it attains after release. Rank from largest to smallest to rank items as equivalent, overlap them.

Answers

The kinetic energy depends on the velocity which is in turn dependent on the position of the pendulum bob per time.

How is the kinetic energy of the pendulum determined?

Your question is incomplete but has something to do with the kin etic energy of the pendulum.

To calculate the velocity of the pendulum, we need to first determine the amplitude of the pendulum swing, which is the maximum angle of displacement from the equilibrium position.

It's important to note that the kinetic energy of a pendulum is not constant throughout its swing, but rather changes as the pendulum moves back and forth. The maximum kinetic energy is reached at the bottom of the swing when the velocity is at its highest.

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can electromagnetic waves travel through empty space

Answers

"The electromagnetic waves can travel through empty space as they do not require any medium to travel."

Non-mechanical waves include electromagnetic waves. From the disturbance's cause, electromagnetic waves spread in all directions.

As they do not require molecules to move, electromagnetic waves differ from sound waves in this regard. This implies that electromagnetic waves can move through solid things, such as air, as well as through space. Astronauts on spacewalks use radios in this manner to converse.

Different frequencies are available for electromagnetic radiation. A wave's character is determined by its frequency. Radio waves, for instance, are electromagnetic waves with a frequency of 300-30 gigahertz.

Electromagnetic waves can therefore pass through empty space.

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what is 120 °F to °C?

Answers

Celsius (°C) and Fahrenheit (°F) -273.15°C, or -459.67°F; -50°C, or -58.0°F; -40°C, or -40.0°F; -30°C, or -22.0°F; -20°C, or -4.0°F; and -10°C, or 14.0°F.

Incomplete: °

For reference, 48.89 °C, or 120 °F, is the temperature in Celsius.

To convert a degree in Fahrenheit to a degree in Celsius, use the Fahrenheit to Celsius formula. Celsius is calculated as [(°F-32)5]/9 in Fahrenheit. Add 32 and multiply the result by.5556 (or 5/9) to convert degrees Fahrenheit to Celsius. Simply multiply the result by 1.8 (or 9/5) and add 32 to get the temperature in Fahrenheit. As opposed to 180 degrees on the Fahrenheit scale, 100 degrees on the Celsius scale separates the freezing point and boiling point of water.

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Why is series better than parallel?

Answers

Series connection is advantageous over parallel connection as a parallel circuit consumes more power than a series circuit.

While the voltage across each appliance is the same in a parallel connection, the current passing through each appliance is different in a series connection. A parallel circuit also consumes more energy than a series circuit despite being more dependable.

The quantity of current flowing through each of the circuit's components is the primary distinction between a parallel and a series circuit. The quantity of current flowing through each component in a series circuit is the same.

In comparison to a parallel circuit, a series circuit extends the battery's life. Compared to parallel or series-parallel wiring, this technique of electrical wiring is the most straightforward, and errors are much easier to spot and fix.

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Starting from rest, a 4-kg block slides 10m down a frictionless 30° incline.

Determine the work done on the block by the force of gravity, the normal force, the net force, and the KE of the block at the end of the 10m slide​

Answers

Answer:

The work done on the block by the force of gravity is 392.4 J. The work done by the normal force is zero. The work done by the net force is equal to the change in kinetic energy of the block. At the end of the slide, the block has a kinetic energy of (1/2)mv^2, where v is the speed of the block.

Explanation:

what causes already spinning nebula clumps to flatten into discs?

Answers

"Accretion disc formation" is the process by which a spinning nebula clump transforms into a flat, revolving disc as a result of several physical forces.

The conservation of angular momentum is a crucial element. Due to the conservation of angular momentum, the nebula clump begins to spin more quickly as it falls apart under the influence of gravity. The clump's overall rotation gets more structured as the material within it rotates more quickly as it approaches the centre of mass.

The impact of magnetic fields is another significant aspect. The magnetic fields within the clump strengthen and organise as it breaks apart. By helping to transfer angular momentum away from the falling material, these magnetic fields can aid the material continue to collapse.

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if the temp outside increased 10 degrees C, how would dew point change?
stay the same

Answers

The change in dew point depends on a number of factors, such as the humidity of the air and the amount of moisture in the air.

If the temperature outside increases by 10 degrees C, the air will become warmer and more humid, which will increase the dew point. Generally speaking, the higher the temperature, the higher the dew point. If the humidity and moisture content of the air remain the same, then a 10 degree C increase in temperature would result in a corresponding increase in dew point. The change in dew point would depend on the existing atmospheric conditions at the time. Dew point is the temperature at which the air becomes saturated with water vapor and the vapor begins to condense and form dew.

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How to convert 110c to f?

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110 °C is equivalent to 230 °F. The conversion formula between Celsius and Fahrenheit is:

°F = (°C x 9/5) + 32 °C = (°F - 32) x 5/9

To convert 110 degrees Celsius (°C) to Fahrenheit (°F), you can use the following formula:

°F = (°C x 9/5) + 32

Plugging in the given value of 110 °C, we get:

°F = (110 x 9/5) + 32 = 198 + 32 = 230 °F (rounded to two decimal places)

Therefore, 110 °C is equivalent to 230 °F.

Two popular temperature scales used around the world are the Celsius and Fahrenheit systems. The majority of nations in the globe use the metric temperature scale of Celsius (°C), however a small number of other nations also use the Fahrenheit (°F) measure.

The formula for converting between degrees Fahrenheit and degrees Celsius is: °F = (°C x 9/5) + 32 °C = (°F - 32) x 5/9.

The Celsius temperature is multiplied by 9/5 and 32 is added to convert it to Fahrenheit. By deducting 32 from the Fahrenheit temperature and multiplying the result by 5/9, you can convert a temperature from Fahrenheit to Celsius.

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which wave parameter measures the time it takes to complete one cycle?

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The wave parameter that measures time to complete one cycle is called period.

Time describes how long something takes to complete. When an occurrence repeats itself, we call it periodic and refer to the amount of time it takes to do so as the period. The length of time it takes for a particle in a medium to finish one full vibrational cycle is the period of a wave.

The duration of an oscillation is its length in time.

In physics, the wavelength is the extent over which a periodic wave repeats, or its spatial period.

Time describes how long something takes to complete. When an occurrence repeats itself, we call it periodic and refer to the amount of time it takes to do so as the period. The length of time it takes for a particle in a medium to finish one full vibrational cycle is the period of a wave.

The time interval, expressed in seconds, between two waves as they travel through a stationary point is known as the wave period.

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