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Collection of Microarray Cliparts (28)

Looking for Microarray Cliparts? Here you will find a carefully collected gallery of free images in high quality. Each Microarray Cliparts can be downloaded for school projects, presentations, websites or creative designs. Need a custom image? Try our free image generator. These cliparts are free for personal use. Please read the full terms of use.

A tight set of microarray images optimized for clarity at small sizes, ideal for badges, labels, and infographic callouts.

A high-resolution fluorescent microarray showing differential gene expression via color-coded spot intensities (red = upregulated, green = downregulated, yellow = co-expression).
A bold, rhythmic composition of saturated polka dots that pop against deep charcoal, blending playfulness with precision.
This schematic illustrates how microarray analysis identifies differential gene expression by labeling cDNA from cancer (red) and normal (green) cells.
From DNA double helix to functional proteins: this diagram shows how genetic information flows through chromosomes, genes, and ribosomes to build cellular machinery.
A sleek, metallic gold DNA double helix model highlighting the iconic twisted-ladder structure of genetic material.
A labeled scientific illustration demonstrating the hierarchical packaging of DNA-from the double helix to chromosomes within the cell nucleus.
A labeled illustration of the DNA double helix highlighting nitrogenous bases, deoxyribose sugars, phosphate groups, and hydrogen bonds between complementary bases.
DNA methylation occurs when a methyl group (M) attaches to the 5′ carbon of cytosine, forming 5-methylcytosine-a key epigenetic mark.
A stylized 3D molecular lattice highlighting interconnected nodes and bonds, symbolizing chemistry, biology, or digital networks.
A 3D-rendered DNA strand showing a specific point mutation (highlighted in orange), crucial for understanding genetic disorders and CRISPR applications.
A playful, hand-drawn sun with warm orange rays-perfect for brightening up kids’ content or seasonal campaigns.
The image is a digital illustration of a tag with a QR code on it. The tag is rectangular in shape and has a black background. On the top left corner, there is a label that reads "Genecip" in white text. Below the label, it says "Human Transcription Array 2.0". On the right side of the tag, there are two lines of text that read "For Research Only". The tag also has a small blue square in the center, which is likely the logo of the company "affymetrix". The text is written in a modern sans-serif font and is centered
The image is a diagram that shows the process of creating a network connection. It consists of four interconnected nodes, each with a different color - pink, blue, green, yellow, and orange. The nodes are connected by arrows, indicating the flow of data between them. The first node on the left is a pink circle, representing the network connection, while the second node is a green circle representing a data flow. The third node is an orange circle, which represents the data flow between the nodes. The fourth node is blue, representing data flow, and the fifth node is green. The sixth node is yellow, representing
The image is a flowchart that shows the process of creating a network connection. It consists of multiple nodes connected by arrows, each node representing a different component of the network. The nodes are represented by different colors, including red, blue, green, yellow, and orange. The nodes are connected by a series of lines, representing the flow of data between them. The lines are arranged in a way that they form a grid-like pattern, with the red nodes on the left side and the green nodes in the middle. On the right side of the image, there is a laptop with a graph on
The image shows a blue platform with a white background. On the platform, there is a 3D model of a DNA molecule in different colors - green, red, blue, and black. The molecule is made up of multiple strands of DNA in different sizes and shapes, with the green strand on the left side and the red strand in the middle. The blue strand is connected to the green and red strands, while the black strand is in the air. The background is transparent, allowing the colors of the molecule to stand out. The image appears to be a representation of a molecular structure, possibly a protein or a molecule.
The image is a flowchart that shows the process of creating a network of colorful squares. The squares are arranged in a grid-like pattern, with each square representing a different component of the network. There are six pink circles in the image, each with a different color - red, blue, green, yellow, and orange. The red circles are connected by a black line, while the green circles are filled with colorful squares of different sizes and colors. The blue circles are in the center of the image and are connected to the pink circles. On the right side of the flowchart, there is a
The image is a diagram that shows the process of DNA sequencing. It shows a hand holding a microscope and scanning a DNA strand. The diagram shows the structure of the DNA strand, which is a type of DNA molecule that is used to measure the size and shape of the brain. The DNA strand is shown in the top left corner of the image, with the stage 1 stage 2 stage 3 stage 4 stage 5 stage 6 stage 7 stage 8 stage 9 stage 10 stage 11 stage 12 stage 13 stage 14 stage 15 stage 16 stage 17 stage 18 stage 19 stage 20 stage 21 stage 22 stage 23 stage 24 stage 25 stage
The image is a digital illustration of a DNA double helix. The double helikon is made up of multiple strands of DNA in different colors - red, blue, green, yellow, and orange. The strands are arranged in a way that they form a curved line, with the red strand on the left side and the green strand in the middle. The colors are vibrant and stand out against the white background. The image has a transparent background, making the colors of the DNA stand out.
This step-by-step diagram shows how microarray technology identifies genomic alterations-like deletions or amplifications-in tumor DNA by comparing it to normal reference DNA.
The image is a color chart that shows the positive regulation of osteostasis differentiation. The chart is divided into four sections, each representing a different color. The first section is labeled "Color Key" and shows a blue bar with a red line representing the color of the key. The second section is titled "Value" and has a green line representing a value. The third section is labelled "G0-0-5-6-7-8-9-10-11-12-13-14-15-16-17-18-19-20-21-22-23-24-
A step-by-step illustration of a data pipeline-from initial input (like CSV or sensor data) through cleaning, structuring, and final visualization on a dashboard.
A visual walkthrough of DNA replication-highlighting helicase unwinding, RNA primers, DNA polymerase action, and Okazaki fragment joining.
A detailed view of an active RGB LED matrix, showcasing how individual red, green, and blue subpixels combine to create rich, dynamic visuals.
A compact, high-performance automated analyzer with an open sample tray, ready for batch processing of microplates.
A schematic representation of directional data flow across a multi-state node grid, showing traversal paths and decision points.
The image is a screenshot of a slide from a presentation. It shows three icons on the left side of the slide. The first icon is a blue circle with a white background and a white text box in the center. The second icon is an illustration of a group of people with a blue background. The third icon is of a person with a green background and white text. There are three options on the slide - "1. You can replace the icons in this deck/slide with any icons you like from our site, or completely remove them if required. You find a huge collection of icons in the icons
The image is a simple, rectangular icon with a light brown color. It appears to be a sim card or a sim chip. The sim card is rectangular in shape and has a smooth surface. It has two curved lines on either side, which are likely used to connect the sim card to a computer or other device. The lines are evenly spaced and run horizontally across the sim. The background is transparent, making the sim cards stand out.
Step-by-step illustration of dinucleotide formation: starting from protected nucleoside 1, activated phosphite 3 couples with nucleoside 5 to yield dinucleotide 6 after oxidation.