i dont know the answer please tell me?
Elliptical galaxies are massive blobs of stars characterized by their round or ellipsoidal shapes. These galaxies are composed mainly of older stars and have little to no ongoing star formation activity.
The wire that do not touch each other are dawn without blobs.
A blob in a bottle demonstration typically involves adding a small amount of vinegar and baking soda to a plastic bottle, which creates carbon dioxide gas. The gas fills up a latex balloon attached to the bottle, causing it to inflate and resemble a blob. This is a simple way to visually demonstrate a chemical reaction.
Yes, lava lamps contain small amounts of krypton gas as a component of the overall mixture. Krypton is used to control the buoyancy of the wax blobs inside the lamp, helping them rise and fall in a mesmerizing manner.
Lava lamps typically use a surfactant called ethoxylated alcohol or a similar compound. Surfactants in lava lamps help to lower the surface tension of the liquids inside the lamp, allowing the colored wax blobs to move and flow more easily.
Blobs in the bottle could potentially hinder the transfer of heat in the reaction, affecting the water temperature by either trapping or releasing heat. This could lead to an inaccurate measurement of the reaction's temperature or alter the rate of the reaction. It's important to ensure the bottle is free of any obstructions to obtain reliable results.
The variables in a blobs in a bottle experiment may include the type and amount of materials used to create the blobs, the size and shape of the bottle, the temperature of the water in the bottle, and the amount of time elapsed to observe the blobs forming and reacting. These variables can be manipulated to study how they affect the formation and movement of the blobs in the bottle.
No, the size of the bottle does not affect how many blobs are produced. The number of blobs is determined by the pressure applied to the bottle and the viscosity of the liquid inside.
The density of blobs in a bottle would depend on the material the blobs are made of and how tightly packed they are inside the bottle. The density can be calculated by dividing the mass of the blobs by the volume they occupy in the bottle.
The hypothesis of the "blobs in a bottle" experiment typically involves predicting how the size, shape, or behavior of the blobs will change under different conditions or treatments. This hypothesis is usually framed as a testable statement that can be supported or refuted through experimentation and data analysis. For example, a hypothesis could be that increasing the temperature of the bottle will cause the blobs to expand in size, or that adding a certain chemical will cause the blobs to change color.
Putting the cap on the bottle prevents the blobs from moving because it does not allow fresh air to enter the bottle. The blobs rely on the expansion and contraction of air inside the bottle to move, and sealing it off with the cap disrupts this process.
No, the size of the fizzy tablet does not significantly affect the number of blobs created in a homemade lava lamp. The reaction between the tablet and the liquid produces the gas bubbles responsible for creating the blobs, and this reaction is fairly consistent regardless of the tablet size.
The size of tablets can affect the amount of bubbles in blobs in a bottle. Larger tablets may produce more bubbles as they release more gas into the liquid compared to smaller tablets. Additionally, the surface area of the tablet exposed to the liquid can also influence bubble formation.
no it doesn't spill it just bubbles
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Some results of blobs in a bottle experiment may include observing the movement of blobs due to changes in temperature or pressure, demonstrating the principles of convection currents or fluid dynamics, and exploring the behavior of different liquids under varying conditions. It can also be used to understand how heat energy is transferred within a system.
The blobs in a bottle science experiment demonstrates the principle of density. When two liquids with different densities, such as oil and water, are mixed together in a bottle, they form separate blobs due to their immiscibility. The blobs created in this experiment help to visualize how substances with different densities do not mix together and instead form distinct layers.