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Labpro Photo Colorimeter

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₹7,315  
A Labpro 128 Laboratory Stirrer, also known as a magnetic stirrer, is a common laboratory instrument used for stirring or mixing liquids. It consists of a motorized base and a magnetic stir bar that is placed inside the liquid being stirred. The stir bar rotates due to a rotating magnetic field generated by the motor, creating a swirling motion in the liquid. Here's an overview of how a laboratory stirrer typically works: Motorized Base: The stirrer consists of a motorized base unit that houses the motor and control functions. The base unit usually has adjustable speed settings, allowing users to control the rotation speed of the stir bar. Magnetic Stir Bar: A magnetic stir bar, also called a flea or stir rod, is a small, cylindrical magnet that is placed in the liquid being stirred. The stir bar is typically Teflon-coated or made of a non-reactive material to prevent chemical reactions with the liquid. Magnetic Field and Rotation: When the stirrer is turned on, the motor generates a rotating magnetic field. The magnetic field causes the stir bar to rotate rapidly, creating a vortex or swirling motion in the liquid. This motion facilitates mixing, dissolving, or homogenizing of the substances in the liquid. Heat and Chemical Resistance: Stirrers are designed to withstand a range of temperatures and are often used in conjunction with temperature-controlled hot plates or heating mantles. The stir bars are resistant to heat and chemical corrosion to ensure their durability and compatibility with different solutions. Safety Features: Laboratory stirrers may include safety features such as overload protection or automatic shut-off to prevent damage to the motor or other components. Some stirrers also have a low-profile design or a built-in support stand to hold the stirring vessel securely. Laboratory stirrers are widely used in various scientific and research applications, including chemistry, biology, pharmaceuticals, and quality control. They are essential tools for mixing reagents, preparing solutions, conducting experiments, and maintaining homogeneity in samples. It's important to follow safety guidelines when using laboratory stirrers, including proper handling of chemicals, avoiding contact between the stir bar and other magnetic objects, and using appropriate protective equipment. Regular cleaning and maintenance of the stir bars and equipment are necessary to ensure reliable performance and prevent cross-contamination between different samples.
₹12,979  
A  Labpro 111 Microprocess or Photo Colorimeter with 8 Filters is a scientific instrument used to measure the concentration of a substance in a solution by analyzing the absorbance or transmittance of light. It is widely used in chemistry, biochemistry, environmental science, and other fields where precise analysis of chemical concentrations is required. Here's how a photo colorimeter works: Light Source: The photo colorimeter contains a light source, typically a tungsten or halogen lamp, that emits a beam of light. The light source emits a specific wavelength of light, usually in the visible or ultraviolet range. Sample and Cuvette: The solution to be analyzed is placed in a transparent container called a cuvette. The cuvette is inserted into the photo colorimeter's sample chamber. Photodetector: The photo colorimeter has a photodetector, which measures the intensity of light passing through the solution in the cuvette. The photodetector may consist of a photodiode or a photomultiplier tube. Calibration: Before analyzing the sample, the photo colorimeter is often calibrated using a standard solution of known concentration. This calibration establishes a baseline to correlate the absorbance or transmittance readings with the concentration of the substance. Measurement: The light beam passes through the sample solution in the cuvette, and the photodetector measures the intensity of light that emerges on the other side. The amount of light absorbed or transmitted by the solution depends on the concentration of the substance being analyzed. Data Analysis: The photo colorimeter measures the absorbance or transmittance of light, which is then converted into a numerical value. This value can be used to determine the concentration of the substance in the solution using a calibration curve or mathematical equations. Photo colorimeters provide accurate and quantitative measurements of various substances, including dyes, pigments, metal ions, organic compounds, and biological samples. They are widely used in research laboratories, quality control, environmental monitoring, and medical diagnostics for applications such as water analysis, drug testing, protein quantification, and enzyme activity measurements.
₹4,719  
A  Labpro 0.3 Amp ABS Digital Photo Colorimeter is a scientific instrument used to measure the concentration of a substance in a solution by analyzing the absorbance or transmittance of light. It is widely used in chemistry, biochemistry, environmental science, and other fields where precise analysis of chemical concentrations is required. Here's how a photo colorimeter works: Light Source: The photo colorimeter contains a light source, typically a tungsten or halogen lamp, that emits a beam of light. The light source emits a specific wavelength of light, usually in the visible or ultraviolet range. Sample and Cuvette: The solution to be analyzed is placed in a transparent container called a cuvette. The cuvette is inserted into the photo colorimeter's sample chamber. Photodetector: The photo colorimeter has a photodetector, which measures the intensity of light passing through the solution in the cuvette. The photodetector may consist of a photodiode or a photomultiplier tube. Calibration: Before analyzing the sample, the photo colorimeter is often calibrated using a standard solution of known concentration. This calibration establishes a baseline to correlate the absorbance or transmittance readings with the concentration of the substance. Measurement: The light beam passes through the sample solution in the cuvette, and the photodetector measures the intensity of light that emerges on the other side. The amount of light absorbed or transmitted by the solution depends on the concentration of the substance being analyzed. Data Analysis: The photo colorimeter measures the absorbance or transmittance of light, which is then converted into a numerical value. This value can be used to determine the concentration of the substance in the solution using a calibration curve or mathematical equations. Photo colorimeters provide accurate and quantitative measurements of various substances, including dyes, pigments, metal ions, organic compounds, and biological samples. They are widely used in research laboratories, quality control, environmental monitoring, and medical diagnostics for applications such as water analysis, drug testing, protein quantification, and enzyme activity measurements.
₹9,321  
A  Labpro 12 Digital Photo Colorimeter with 8 Filters is a scientific instrument used to measure the concentration of a substance in a solution by analyzing the absorbance or transmittance of light. It is widely used in chemistry, biochemistry, environmental science, and other fields where precise analysis of chemical concentrations is required. Here's how a photo colorimeter works: Light Source: The photo colorimeter contains a light source, typically a tungsten or halogen lamp, that emits a beam of light. The light source emits a specific wavelength of light, usually in the visible or ultraviolet range. Sample and Cuvette: The solution to be analyzed is placed in a transparent container called a cuvette. The cuvette is inserted into the photo colorimeter's sample chamber. Photodetector: The photo colorimeter has a photodetector, which measures the intensity of light passing through the solution in the cuvette. The photodetector may consist of a photodiode or a photomultiplier tube. Calibration: Before analyzing the sample, the photo colorimeter is often calibrated using a standard solution of known concentration. This calibration establishes a baseline to correlate the absorbance or transmittance readings with the concentration of the substance. Measurement: The light beam passes through the sample solution in the cuvette, and the photodetector measures the intensity of light that emerges on the other side. The amount of light absorbed or transmitted by the solution depends on the concentration of the substance being analyzed. Data Analysis: The photo colorimeter measures the absorbance or transmittance of light, which is then converted into a numerical value. This value can be used to determine the concentration of the substance in the solution using a calibration curve or mathematical equations. Photo colorimeters provide accurate and quantitative measurements of various substances, including dyes, pigments, metal ions, organic compounds, and biological samples. They are widely used in research laboratories, quality control, environmental monitoring, and medical diagnostics for applications such as water analysis, drug testing, protein quantification, and enzyme activity measurements.
₹10,147  
A  Labpro 114 Auto Deluxe Photo Colorimeter with 8 Filters is a scientific instrument used to measure the concentration of a substance in a solution by analyzing the absorbance or transmittance of light. It is widely used in chemistry, biochemistry, environmental science, and other fields where precise analysis of chemical concentrations is required. Here's how a photo colorimeter works: Light Source: The photo colorimeter contains a light source, typically a tungsten or halogen lamp, that emits a beam of light. The light source emits a specific wavelength of light, usually in the visible or ultraviolet range. Sample and Cuvette: The solution to be analyzed is placed in a transparent container called a cuvette. The cuvette is inserted into the photo colorimeter's sample chamber. Photodetector: The photo colorimeter has a photodetector, which measures the intensity of light passing through the solution in the cuvette. The photodetector may consist of a photodiode or a photomultiplier tube. Calibration: Before analyzing the sample, the photo colorimeter is often calibrated using a standard solution of known concentration. This calibration establishes a baseline to correlate the absorbance or transmittance readings with the concentration of the substance. Measurement: The light beam passes through the sample solution in the cuvette, and the photodetector measures the intensity of light that emerges on the other side. The amount of light absorbed or transmitted by the solution depends on the concentration of the substance being analyzed. Data Analysis: The photo colorimeter measures the absorbance or transmittance of light, which is then converted into a numerical value. This value can be used to determine the concentration of the substance in the solution using a calibration curve or mathematical equations. Photo colorimeters provide accurate and quantitative measurements of various substances, including dyes, pigments, metal ions, organic compounds, and biological samples. They are widely used in research laboratories, quality control, environmental monitoring, and medical diagnostics for applications such as water analysis, drug testing, protein quantification, and enzyme activity measurements.
₹8,377  
A  Labpro 13 Digital Photo Colorimeter with 5 Filters is a scientific instrument used to measure the concentration of a substance in a solution by analyzing the absorbance or transmittance of light. It is widely used in chemistry, biochemistry, environmental science, and other fields where precise analysis of chemical concentrations is required. Here's how a photo colorimeter works: Light Source: The photo colorimeter contains a light source, typically a tungsten or halogen lamp, that emits a beam of light. The light source emits a specific wavelength of light, usually in the visible or ultraviolet range. Sample and Cuvette: The solution to be analyzed is placed in a transparent container called a cuvette. The cuvette is inserted into the photo colorimeter's sample chamber. Photodetector: The photo colorimeter has a photodetector, which measures the intensity of light passing through the solution in the cuvette. The photodetector may consist of a photodiode or a photomultiplier tube. Calibration: Before analyzing the sample, the photo colorimeter is often calibrated using a standard solution of known concentration. This calibration establishes a baseline to correlate the absorbance or transmittance readings with the concentration of the substance. Measurement: The light beam passes through the sample solution in the cuvette, and the photodetector measures the intensity of light that emerges on the other side. The amount of light absorbed or transmitted by the solution depends on the concentration of the substance being analyzed. Data Analysis: The photo colorimeter measures the absorbance or transmittance of light, which is then converted into a numerical value. This value can be used to determine the concentration of the substance in the solution using a calibration curve or mathematical equations. Photo colorimeters provide accurate and quantitative measurements of various substances, including dyes, pigments, metal ions, organic compounds, and biological samples. They are widely used in research laboratories, quality control, environmental monitoring, and medical diagnostics for applications such as water analysis, drug testing, protein quantification, and enzyme activity measurements.
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₹44,099 ₹54,600
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Top Selling Labpro Photo Colorimeter Products Price List for March 2026

Product Name Specifications Expected Price Dispatch Time Discount
Labpro 128 Laboratory Stirrer Frequency 50 Hz | Power 1/20 Hp ₹7,315 5 days --
This data was last updated on 30/03/2026