What are the advantages of parallel circuits? Check all that apply.
If one bulb goes out, the other bulbs go out.
If one bulb goes out, the other bulbs stay lit.
If there is a break in one branch of the circuit, current can still flow through the other branches.
If there is a break in one branch of the circuit, current cannot flow at all.
Parallel circuits are simple to design and build,
O Parallel circuits are complicated to design and build.

Answers

Answer 1

The correct answer is option (1) and (2). The advantages of parallel circuits include If one bulb goes out, the other bulbs stay lit and If there is a break in one branch of the circuit, current can still flow through the other branches.

Parallel circuits offer several advantages, and you should check the statements that accurately reflect these benefits.

Here are the advantages of parallel circuits:

1. If one bulb goes out, the other bulbs stay lit.

Correct. In a parallel circuit, each component is connected across the same voltage source. Therefore, if one component fails, the others continue to function.

2. If there is a break in one branch of the circuit, current can still flow through the other branches.

Correct. In a parallel circuit, each branch operates independently. A break in one branch does not affect the operation of the other branches.

3. Parallel circuits are simple to design and build.

Incorrect. While parallel circuits offer certain advantages in terms of reliability and consistent voltage, they are not necessarily simpler to design compared to series circuits. The complexity can increase with the number of branches and components.

4. Parallel circuits are complicated to design and build.

Correct. Parallel circuits can be more complex to design and build than series circuits, especially as the number of branches increases. The design must ensure proper connections and consider the current distribution across each branch.

5. If one bulb goes out, the other bulbs go out.

Incorrect. This statement applies to series circuits, not parallel circuits. In a series circuit, if one component fails, the entire circuit is interrupted.

6. If there is a break in one branch of the circuit, current cannot flow at all.

Incorrect. In a parallel circuit, a break in one branch does not stop current from flowing through the other branches. Each branch operates independently of the others.

The complete question is:

What are the advantages of parallel circuits? Check all that apply.

1. If one bulb goes out, the other bulbs go out.

2. If one bulb goes out, the other bulbs stay lit.

3. If there is a break in one branch of the circuit, current can still flow through the other branches.

4. If there is a break in one branch of the circuit, current cannot flow at all.

5. Parallel circuits are simple to design and build,

6. Parallel circuits are complicated to design and build.


Related Questions

A 10 N force is applied to a hockey puck over a period of 0.1 s. What is the change in momentum of the hockey puck?

Answers

Final answer:

The change in momentum of the hockey puck is 1 kg·m/s.

Explanation:

The change in momentum of an object can be calculated using the equation: change in momentum = force x time.

In this case, the force applied to the hockey puck is 10 N and the time period over which the force is applied is 0.1 s. Therefore, the change in momentum of the hockey puck is 10 N x 0.1 s = 1 kg·m/s.

The answer and how to do it?? Thanks

Answers

The acceleration of the block is 4 m/s².

To find the acceleration of the 1kg block in the given diagram, we need to calculate the total force acting on the block and then divide it by the mass of the block.

Since there are three forces acting on the block, we can find the resultant force by adding these forces together.

In this case, the forces are 5N, 4N, and 5N in different directions.

Combining these forces, we get a net force of 4N in the horizontal direction.

Since the mass of the block is 1kg, the acceleration can be calculated using Newton's second law of motion: F = ma.

Therefore, the acceleration of the block is 4 m/s².

_____ All elements in this series are radioactive?

Answers

Answer:

    Actinide series     : All the elements in the actinides series are radiactive

Explanation:

The question is to fill in the blank which series of elements in the periodic table are radiactive.

The answer is the actnide series.

The actinide series is the elements in the same row as actinide since the same actnide (atomic number 89)  to the lawrencium (atomic number 103).

Among other elements, this series include thorium, uranium and plutonium which are very known as radiactive elements, since they are used in nuclear reactors, which use  nuclear fission reactions.

The reason for the radioactivity of these elements is the massive unstable nucleus.

A heavy nucleus means a large amount of positive charge (protons)  concentrated in a tiny region (the nucleus of the atom).

The electrostatic repulsion among those so many protons is not balanced by the strong nuclear force (from the neutrons) resulting in the unstability (radioactivity) of the nucleus.

Final answer:

In a radioactive decay series, not all elements are radioactive. The series includes most of the naturally radioactive elements, but each series concludes with a stable, non-radioactive end-product, typically a stable isotope of lead.

Explanation:

The question you've asked relates to Radioactive Decay Series. Naturally occurring radioactive isotopes of the heaviest elements fall into decay series. These series include most of the naturally radioactive elements of the periodic table such as the uranium series, the actinide series, and the thorium series. However, not all elements in these series are radioactive; each chain ultimately concludes with a stable end-product. For example, for all three mentioned series, the end-product is a stable isotope of lead. The concept of a decay series results from heavy nuclei decaying to a lighter one, with the lighter, daughter nucleus becoming the parent nucleus for the next decay.

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A 37.9 A current flows in a long, straight wire. Find the strength of the resulting magnetic field at a distance of 45.5 cm from
the wire.

Answers

Answer:

[tex]1.67\cdot 10^{-5} T[/tex]

Explanation:

The magnitude of the magnetic field produced by a current-carrying wire is given by the equation:

[tex]B=\frac{\mu_0 I}{2\pi r}[/tex]

where:

[tex]\mu_0=4\pi \cdot 10^{-7} H/m[/tex] is the vaacuum permeability

I is the current in the wire

r is the distance from the wire

The direction of the magnetic field lines is tangential to concentric circles around the wire.

In this problem, we have:

[tex]I=37.9 A[/tex] is the current in the wire

[tex]r=45.5 cm = 0.455 m[/tex] is the distance  from the wire

Solving for B, we find the magnitude of the magnetic field:

[tex]B=\frac{\mu_0 I}{2\pi r}=\frac{(4\pi \cdot 10^{-7})(37.9)}{2\pi (0.455)}=1.67\cdot 10^{-5} T[/tex]

in which medium does sound travel the fastest​

Answers

Answer:

Solids

Explanation:

Aluminum

Explanation:

Objects that are not moving have NO _____. A. mass (only) B. mass and momentum (only) C. velocity and momentum (only) D. mass, velocity, and momentum

Answers

Answer:

Objects that are not moving have NO velocity and momentum (only)

Explanation:

This best explains the potential energy of an object, when an object is at rest. it is said to have possessed a potential energy but without velocity and momentum i.e energy at rest

a 60 kg child sits on on the outer edge a playground merry-go-around with radius of 4 meters that spins around at 1 revolution every 5 seconds, mercilessly bringing the child ever closer to nausea. What is the child's angular momentum? ( Remember to include the units.) What is the angular momentum of another child with the same mass who is sitting half way out from the center?

Answers

Answer:

a) [tex]1209.6 kg m^2/s[/tex]

b) [tex]302.4 kg m^2/s[/tex]

Explanation:

a)

The angular momentum of an object in circular motion is given by the formula

[tex]L=m\omega r^2[/tex]

where

m is its mass

[tex]\omega[/tex] is its angular velocity

r is the distance of the object from the axis of rotation

For the child in this problem, we have:

m = 60 kg is his mass

r = 4 m is the radius of the merry-go-around

Here the child completes 1 revolution every 5 seconds; so his frequency is

[tex]f=\frac{1}{5}=0.2 Hz[/tex]

And so his angular speed is

[tex]\omega=2\pi f=2\pi 0.2=1.26rad/s[/tex]

Therefore, the angular momentum is

[tex]L=(60)(1.26)(4)^2=1209.6 kg m^2/s[/tex]

b)

For a child sitting halfway of the merry-go-around, his distance from the axis of rotation is

[tex]r=\frac{4 m}{2}=2 m[/tex]

The mass of the child is the same as before,

m = 60 kg

And the angular speed is the  same as well: in fact, the merry go around is a rigid body, so all its points cover the same angle in the  same time; so, they all have the same angular speed. Therefore,

[tex]\omega=1.26 rad/s[/tex]

Therefore, the angular momentum here is:

[tex]L=m\omega r^2 = (60)(1.26)(2)^2=302.4 kg m^2/s[/tex]

Girl who’s mass is 52kg, experienced a net force of 1800N at bottom of a roller coster loop during her school physics field to the local amusement park, determine Sophia’s acceleration at location.

Answers

Answer:

34.62m/s^2

Explanation:

Force = mass x acceleration

Given

Force = 1800N

Mass = 52kg

Therefore

1800 = 52 x a

Divide both sides by 52

1800/52 = 52/52 x a

34.62 = a

a = 34.62m/s^2

Four ball are simultaneously launched with the same speed from the same height and h above the ground. At the same instant, ball 5 is released from the rest at the same height. Rank in order, from shortest to longest, the amount of time it takes each of these balls to hit the ground ( some maybe simultaneously.)

Answers

Final answer:

In this scenario of Physics involving free fall and projected motion, all the balls launched, whether from rest or different angles, from the same height will hit the ground simultaneously. The time of flight in such a case, considering no air resistance, will only depend on the initial height from the ground and the acceleration due to gravity, not on the initial speed or direction of projection.

Explanation:

The question pertains to the physics concept of free fall and their time of flights. To reiterate, all the balls are being launched from the same height, h, including ball 5 which is released from rest. According to physics, irrespective of their initial velocities or launch angles, all objects in free fall will hit the ground at the same time assuming they are dropped from the same height. This is because the time a projectile is in the air is governed by its vertical motion alone and in this scenario, all the balls have the same vertical component which is the same height from which they are dropped. So, all of the balls including ball 5 will hit the ground simultaneously.

This understanding is backed by two key principles. One, that the horizontal and vertical motions of a projectile are independent of each other, meaning the horizontal velocity does not affect the vertical fall. Two, that the time of flight of a projectile is linearly proportional to the initial velocity in the y direction (height in this case) and inversely proportional to g (acceleration due to gravity). Considering the fact that all the balls start from rest, have the same height, and experience the same acceleration due to gravity, the time of flight for all balls becomes equal.

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The centre of gravity of a body may not be necessary on the body. Justify ​

Answers

Answer:

Your center of gravity

Explanation:

like everyone has there own center of gravity by there weight because that is going to see hows your balance, if I'm right

The center of gravity is the point where the total weight of a body is concentrated, but it may not always be on the body itself. This can be observed in situations like an unbalanced car wheel or a human standing, where the center of mass does not align with the geometric center.

The center of gravity of a body is the point where the total weight of the body is assumed to be concentrated. However, it does not necessarily need to be located on the body itself. This concept is particularly important in understanding the balance and stability of objects. For instance, a car wheel that has not been balanced properly has a center of mass that does not coincide with its geometrical center. Moreover, in a situation like a human standing, by shifting their weight, they can cause the center of mass to hang in space - a point that might not correspond with any actual material part of the body.

Three-dimensional bodies demonstrate this when they are in motion, such as when a stick is thrown in the air and seems to rotate around a single point. This occurs because the center of mass carries the whole mass of the body, contributing to the observed motion. Even large structures, such as buildings or cruise ships, despite their size, are located in a uniform gravitational field on Earth, which means the acceleration due to gravity is constant and the center of gravity and center of mass coincide.

Objects with odd shapes or missing parts can also have a center of gravity outside their physical form. Imagine a horseshoe where the center of gravity would be somewhere near the bottom, even though there's no material there.

Consider a hollow ring, the mass is concentrated around the rim, not in the center. As a result, the center of gravity would lie somewhere within the ring, not necessarily on the actual body.

what device is made of coils of wire with an electrical current passing through it in order to generate a magnetic field

Answers

Transformer

Explanation:

A transformer is a device with two or more magnetically coupled windings. A time varying current in one coil (primary winding) generates a magnetic field which induces a voltage in the other coil (secondary winding). Transformers are capable of either increasing or decreasing the voltage and current levels of their supply, without modifying its frequency, or the amount of electrical power being transferred from one winding to another via the magnetic circuit. There are two types of transformer:

1. Step up transformer - increases voltage

2. Step down transformer - decreases voltage

F= 90 N
D= 5 m
W= ?

A. 18 j
B. 0.05 j
C. 450 j
D. 550 j

Answers

Answer:

c I hope this helpssssss :)

What contributes the most to food waste in America

Answers

According to the USDA, 40% of our food worth $161 billion is not even harvested, lost in processing, thrown away in restaurants and homes or ended up rotting in America’s landfills. It is also reported that 50% of the produce is never consumed.

Disparities in food distribution and availability imply that numerous communities and neighborhoods have very constrained access to fresh affordable food. Also, a significant number of those with a bounty of food choose to toss it rather than donate it.  

Another type of food waste comes from produce discarded by millions of backyard cultivators due to their gardens producing far more fruits and vegetables than they might use, preserve or give to friends and neighbours.

a heavy object falls with the acceleration as a light object during free fall. Why?

Answers

A heavy object falls with the acceleration as a light object during free fall because of acceleration due to gravity.

Explanation:

A motion can be termed as free fall when the object is completely under the influence of gravity. So in this case, no other force will be acting on the object other than the gravitational force. As the gravity influences the object in free fall, the acceleration attained by any object in free fall is same. And this acceleration is termed as acceleration due to gravity. Since, the gravity gives the acceleration to every object experiencing free fall, then the acceleration should be constant. Thus, a heavy object and a light object will have same acceleration during free fall.

A 0.14 -kg baseball is moving at 41 m/s. A 0.058-kg tennis ball is moving at 67 m/s. Which of the two balls has higher kinetic energy?

Answers

Since kinetic energy is a form of energy using the equation KE=¹/₂mv², the units of measurement is in Joules (J). Therefore, the tennis ball had more kinetic energy than the baseball since velocity is a larger factor than the mass is when determining kinetic energy.

Answer:The answer is tennis ball

Explanation:

i know this cause I'm good at math and why wouldn't you trust a random guy off the internet.

You serve a volleyball with mass of 2.1kg. The call leaves your hand at 30m/s. The ball has Energy calculate it

Answers

Answer: 945 joules

Explanation:

Given that:

mass of volleyball = 2.1kg.

Speed at moving volleyball = 30m/s. Energy possessed by volleyball = ?

Recall that the energy possessed by a moving object is known as kinetic energy. Thus, the moving volleyball has kinetic energy.

So, apply the formula for kinetic energy

K.E = 1/2 x mass x speed^2

K.E = 1/2 x 2.1kg x (30m/s)^2

K.E = 0.5 x 2.1kg x 900

K.E = 945 Joules

Thus, the volleyball has kinetic energy of the 945 joules

In the following diagram, the voltage is 1.5 volts and the resistance is 0.35 ohms. Use Ohm's Law to determine the current in the circuit.

Answers

Answer:

I = 4.28 [amp]

Explanation:

To solve this type of problems we must have knowledge of the law of ohm, which tells us that the voltage is equal to the product of resistance by current.

Initial data:

v = 1.5 [volt]

R = 0.35 [ohms]

v = I * R

therefore:

I = 1.5 / 0.35

I = 4.28 [amp]

Final answer:

Using Ohm's Law, the current in the circuit with a voltage of 1.5 volts and a resistance of 0.35 ohms is calculated to be approximately 4.286 amperes.

Explanation:

To determine the current in the circuit, we can use Ohm's Law, which is stated as I = V/R, where I is the current in amperes, V is the voltage in volts, and R is the resistance in ohms. Given that the voltage (V) is 1.5 volts and the resistance (R) is 0.35 ohms, we can substitute these values into the equation to calculate the current.

Thus, the current (I) can be calculated as follows:

I = 1.5V / 0.35Ω = 4.286 amperes (approx).

This means that the current flowing through the circuit is approximately 4.286 amperes.

The diagram shows the electric field due to point charge Q. Which statements are correct? Check all that apply.

Answers

Answer:

The correct statements  are:

A. The electric field is nonuniform.D. Charge Q is positive.E. If charge A moves toward charge Q, it must be a negative charge

Explanation:

The answer choices are:

A. The electric field is nonuniform.B. The electric field is uniform.C. Charge Q is negative.D. Charge Q is positive.E. If charge A moves toward charge Q, it must be a negative charge.F. If charge A moves toward charge Q, it must be a positive charge.

Solution

The electric field is the electrostatic force per unit of charge,  

         [tex]\vec E=\dfrac{\vec F}{Q}[/tex]

around around a charge, where another charge would experience the electrostatic force.

The electric field lines are shown in a diagram with arrows ditributed radially away from a positive charge and radially toward a negative charge.

Since the arrows are away from Q, Q is a positive charge: statement D.

Since the size of the arrows decreases as you move away  from Q the stregth of the field is not uniform: statement A.

Since the charge Q is positive, a negative charge would be attracted toward it: statement E.

A sample of gas has a volume of 42 L at a pressure of 200 kPa and a temperature of 30^ * C . What would be the volume, if the pressure were increased to 250 kPa and the temperature were decreased to 5^ * C ?

Answers

Answer:

30 L

Explanation:

Ideal gas law:

PV = nRT

Rearranging:

PV / T = nR

Since n and R are constant:

P₁ V₁ / T₁ = P₂ V₂ / T₂

Plugging in values and solving:

(200 kPa) (42 L) / (30 + 273.15 K) = (250 kPa) V / (5 + 273.15 K)

V = 30.8 L

Rounded to one significant figure, the new volume is 30 L.

which best describes oil and water

Answers

The correct answer is option C. The hydrogen bonding between the water molecules is much stronger than the dipole induced dipole forces between the water and nonpolar oil molecules.

Option C is correct because water’s hydrogen bonding is much stronger than the dipole induced dipole interactions between water and nonpolar oil molecules.

Why other options are incorrect:

Option A is incorrect because the lack of ionization is not the reason; oil is nonpolar and does not interact well with polar water.Option B is incorrect because dispersion forces in oil are not significantly stronger than the forces between water and oil; the primary issue is the mismatch in polarity.Option D is incorrect because density is not the factor; the issue is the difference in polarity between water and oil.

The complete question is:

Which of the following best explains why oil and water don't mix?

a) Oil molecules can't dissociate into ions on dissolution into water.

b) The dispersion forces between the oil molecules are much stronger than the dipole induced dipole forces between the water and nonpolar oil molecules.

c) The hydrogen bonding between the water molecules is much stronger than the dipole induced dipole forces between the water and nonpolar oil molecules.

d) Water is too dense to allow the oil to dissolve in it  of the water is too oil is.

which land class has the least restrictions and is best for cultivation

Answers

Answer:

land scaping

Explanation:it makes your yard look lit imfao

Answer:

class #3

Explanation:

The soils are deep, well-drained, easily worked, hold water well and are either fairly well supplied with plant nutrients or highly responsive to the application of fertilizers.

A driver starts is parked car and within 5 seconds reaches a speed of 60km/h, as he travels east. What his acceleration?

Answers

The acceleration of the car is 3.3 m/s²

Explanation:

Given-

Speed of the car, (we can  represent as s) = 60 km/hr = 60 × [tex]\frac{5}{18}[/tex] = 16.67 m/s

Time,(we can  represent as  t) = 5 s

Acceleration, (we can represent as a) = ?

We know,

a = [tex]\frac{s}{t}[/tex]

a = [tex]\frac{16.67}{5}[/tex]

a = 3.334 m/s²

The acceleration of the car  is 3.3 m/s²

is there carbon atoms in the compound Ca3N2​

Answers

No, there are not any carbon atoms inside this compound.

The compound is [tex]Ca_3N_2[/tex]. This means there are 3 "Ca" atoms and 2 "N" atoms.

Ca is calciumN is nitrogen

Thus, none of the elements in this compound are carbon, meaning there are no carbon atoms. Let me know if you need any clarifications, thanks!

~ Padoru

No mate. Ca denotes calcium. Ca3 means three calcium atoms. N denotes nitrogen. N2 denotes two nitrogen atoms

A cetain car weighs 25,000 N. Calculate the mass of the car.
245.000 kg
25,000 kg
9.81 m/s2
2,500 kg

Answers

Answer:2500kg

Explanation:

Weight of car(w)=25000N

Acceleration due to gravity approximately(g) 10m/s^2

Mass=w/g

Mass=25000/10

Mass=2500kg

Why and how is oil used to reduce the effects of friction in large machines

Answers

By reducing friction

Explanation:

A big machine is composed of several moving and stationary parts. Some of these parts are in a state of constant motion hence they periodically rub against each other. The friction between the body parts causes the body part to wear out and heat up in the process. This heat is symbolic of waste of energy.

The lubricating agents are a saviour in such conditions. Lubricating oils with high viscosities reduces friction. If we go deep into the working of the lubrication we find that the interacting parts of machines are quite rough when viewed under microscope. These rough surfaces when interact produce bumpy motion, wear and tear, heat etc.

Oil fills these microscopic voids and thus provides temporary relief. When these lubricated body parts interact, they encounter plain surface with decreased friction (due to high viscosity of the oils) and thus glide over each other freely thereby producing smooth movements, noiseless working.

 

The moon’s relative motion causes

Answers

Answer: Different cycles of the moon and ocean currents are all I can think of.

Answer:

Different cycles of the moon and ocean currents.

Explanation:

5. A 5.5 x10-6 C charge is located 0.28 m from a -3.5 x 10-6 C charge.
a) What is the magnitude of the force that the positive charge exerts on the negative charge?
b) If the negative charge was doubled, how would the force change?

Answers

(a) The magnitude of force that the positive charge exerts on the negative charge is - 2.209 N.

(b) If the negative charge is doubled, then the force will also get doubled.

The new force will be F = -4.418 N.

Explanation:

The force acting between two charged particles separated by a distance is termed as Coloumb's force or electrostatic force. It can be termed as electrostatic force of attraction if the the force acting between the charges are oppositely charged. And it can be termed as electrostatic force of repulsion if the charges are similar or like charges.

In the present case, there is a positive and negative charge, so electrostatic force of attraction will be acting between them. As per Coloumb's law, the electrostatic force of attraction is directly proportional to the product of charges and inversely proportional to the square of distance of separation.

[tex]F = \frac{kQq}{d^{2} }[/tex]

Here, k is the constant of proportionality which is equal to 9 ×[tex]10^{9}[/tex] and Q, q are the two charges, d is the distance of separation.

So here Q = 5.5 ×[tex]10^{-6} C[/tex] and q = - 3.5 ×[tex]10^{-6} C[/tex] and d = 0.28 m

Then, [tex]F=-\frac{9*10^{9}*5.5*10^{-6} * 3.5 * 10^{-6} }{(0.28)^{2} } = 2209.82*10^{-3}[/tex]

So the magnitude of force that the positive charge exerts on the negative charge is - 2.209 N.

(b) If the negative charge is doubled, then the force will also get doubled.

The new force will be F = -4.418 N.

Final answer:

The question requires the calculation of the electric force between two point charges using Coulomb's law and understanding how changes in the magnitude of one charge affect the force.

Explanation:

The question involves understanding and applying Coulomb's law, which describes the electric force between two point charges.

a) Magnitude of the Force

To find the magnitude of the force that one charge exerts on another, we use the formula given by Coulomb's law:

[tex]F = k * |q1 * q2| / r^2[/tex]

Where:

F is the magnitude of the force between charges,k is the Coulomb's constant [tex](8.9875 x 10^9 N m^2/C^2),[/tex]q1 and q2 are the charges [tex](5.5 x 10^-6 C and -3.5 x 10^-6 C respectively),[/tex]r is the separation between the charges (0.28 m).

Plugging in the values, we calculate F.

b) Effect of Doubling the Negative Charge

If the negative charge was doubled, the new charge would become [tex]-7.0 x 10^-6 C.[/tex] Since the force is directly proportional to the product of the two charges, doubling one of the charges would double the force as well.

A 82-kg skydiver has a speed of 40 m/s at an altitude of 490 m above the ground. Calculate the total mechanical energy of the skydiver.

Answers

Answer:

[tex]ME=459,364J[/tex]

Explanation:

Mechanical Energy=Potential Energy+ kinetic Energy

[tex]m=82kg,g=9.8N/kg,h=490m,v=40m/s[/tex]

To calculate Kinetic Energy:-

[tex]KE=\frac{1}[2}mv^2\\=\frac{1}{2}\times82kg \times(40m/s)^2\\=65600J[/tex]

To calculate Potential Energy:-

[tex]PE=mgh\\=82kg \times9.8N/kg \times490\\=393764[/tex]

therefore,

[tex]ME=KE+PE\\=65600+393764\\=459364J[/tex]

The skydiver's total mechanical energy is 459365J

Final answer:

The total mechanical energy of an 82-kg skydiver moving at 40 m/s at an altitude of 490 m above the ground is calculated as 458876 Joules, which includes both kinetic and potential energy.

Explanation:

Calculating Total Mechanical Energy of a Skydiver

To calculate the total mechanical energy of a 82-kg skydiver moving at a speed of 40 m/s at an altitude of 490 m above the ground, we need to consider both kinetic and potential energy.

Kinetic energy (KE) is given by the formula: KE = 0.5 Times m times v2

Gravitational potential energy (PE) is given by the formula: PE = m  times g Times h

Where:

m is the mass of the skydiver (82 kg)

v is the velocity (40 m/s)

g is the acceleration due to gravity (9.8 m/s2)

h is the height above the ground (490 m)

Now we perform the calculations:

KE = 0.5  imes 82 kg times (40 m/s)2 = 0.5 times 82 times 1600 = 65600 J

PE = 82 kg times 9.8 m/s2 times 490 m = 82 times 9.8 times 490 = 393276 J

The total mechanical energy (Etotal) is the sum of kinetic and potential energy:

Etotal = KE + PE = 65600 J + 393276 J = 458876 J

Therefore, the total mechanical energy of the skydiver is 458876 Joules.

Desiree has a scientific question that she wants to investigate. She has developed a hypothesis and method for her experiment. Which step of scientific inquiry should Desiree take next?

Desiree should present her findings to her teacher and classmates.
Desiree should collect data, which may support or refute her hypothesis.
Desiree should provide an explanation for her results.

Answers

Answer:

Desiree should collect data, which may support or refute her hypothesis.

Explanation:

The next step Desiree must take is to collect data which might likely support or refute her hypothesis.

This is usually done by carrying out experiments or field studies.

The scientific method provides the steps through which knowledge of science is investigated. It usually starts with observation. After an observation is made, a scientific question is asked. This leads to the development of hypothesis. Then, experiments are carried out and data collect to either bolster the claim or refute it. Interpretation follows and conclusion is draw.

Desiree should proceed to the step of collecting data, which may support or refute her hypothesis. Therefore option B is correct.

Collecting data is a crucial stage in the scientific inquiry process. It involves conducting experiments or observations to gather information that can either confirm or contradict the hypothesis she has formulated.

By systematically collecting and analyzing data, Desiree can draw conclusions based on empirical evidence. This step forms the backbone of scientific investigation as it provides the tangible information required to validate or revise her hypothesis.

Once she has sufficient data, Desiree can move on to analyzing her results and drawing meaningful conclusions, paving the way for the interpretation and potential communication of her findings.

Therefore option B is correct.

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a current-carrying wire has the maximum magnetic force in it when it is placed in a constant magnetic field when

Answers

Answer:

Maximum magnetic force on current carrying wire when wire is placed at 90 degree with magnetic field

Explanation:

As we know that the magnetic force on current carrying conductor is given as

[tex]\vec F = i(\vec L \times \vec B)[/tex]

here we have

[tex]F = i L Bsin\theta[/tex]

here we know that

[tex]\theta [/tex] = angle between length vector and magnetic field vector

so if we would like to have maximum magnetic force on the current carrying wire then

[tex]\theta = 90 [/tex]

so we have

[tex]F_{mex} = iLB[/tex]

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