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10774 Results for: "Disposable+Garments&pageNo=32&view=list"

Analytical laboratory balances, Cubis® II MCA

Supplier: Sartorius Balances

Cubis® II MCA analytical balances with advanced user interface offer maximum weighing capacity between 120 and 520 g in combination with readability of 0.1 mg.

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Ultrasonic Bath with Heating, Sonorex Technology RM 182 UH

Supplier: BANDELIN-ELECTRONIC

High-performance ultrasonic cleaning bath with heating for industry, service and maintenance. The welded oscillating tank made of stainless steel V4A (1 4404), 2 mm guarantees maximum durability even with intensive use.

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ADDITIONAL CHIP CARD, BLANK, null

Supplier: MEMMERT

ADDITIONAL CHIP CARD, BLANK, null

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Flask for collecting 100ml, with cylindrical hook,st29/32,165x40mmmm, acc. to schlenk, null

Supplier: witeg Labortechnik

Flask for collecting 100ml, with cylindrical hook,st29/32,165x40mmmm, acc. to schlenk, null

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300 mm long 1 * 1 items

Supplier: NEUBERT VOLUME GLASSWAERE

300 mm long 1 * 1 items

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SCHEIDENSPEKULUM N.COLLIN, 100/ 90X32 MM 1 * 1 ST

Supplier: Aesculap

SCHEIDENSPEKULUM N.COLLIN, 100/ 90X32 MM 1 * 1 ST

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Mouse monoclonal antibody raised against partial recombinant rat Slc38a1. 1 * 100 µG

Supplier: Abnova

Mouse monoclonal antibody raised against partial recombinant rat Slc38a1. 1 * 100 µG

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Mouse monoclonal antibody raised against partial recombinant rat Slc38a1. 1 * 100 µG

Supplier: Abnova

Mouse monoclonal antibody raised against partial recombinant rat Slc38a1. 1 * 100 µG

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POWDER FUNNEL, DIA. 80 MM, 1 * 1 items

Supplier: witeg Labortechnik

POWDER FUNNEL, DIA. 80 MM, 1 * 1 items

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Sentinex OP Mantel Special, Spunl., mit Einschlag 150c

Supplier: MARKET SOURCE PART PROCESS

Sentinex OP Mantel Special, Spunl., mit Einschlag 150c

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COLUMN PLATINUM C18-EPS 5µ 150 X 3.2MM 1 * 1 items

Supplier: DR MAISCH

COLUMN PLATINUM C18-EPS 5µ 150 X 3.2MM 1 * 1 items

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ADDITIONAL CHIP CARD, BLANK, null

Supplier: MEMMERT

ADDITIONAL CHIP CARD, BLANK, null

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Mouse monoclonal antibody raised against partial recombinant rat Slc38a1. 1 * 100 µG

Supplier: Abnova

Mouse monoclonal antibody raised against partial recombinant rat Slc38a1. 1 * 100 µG

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Mouse monoclonal antibody raised against partial recombinant rat Slc38a1. 1 * 100 µG

Supplier: Abnova

Mouse monoclonal antibody raised against partial recombinant rat Slc38a1. 1 * 100 µG

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Mouse monoclonal antibody raised against partial recombinant mouse Notch1. 1 * 100 µG

Supplier: Abnova

Mouse monoclonal antibody raised against partial recombinant mouse Notch1. 1 * 100 µG

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Mouse monoclonal antibody raised against partial recombinant mouse Notch1. 1 * 100 µG

Supplier: Abnova

Mouse monoclonal antibody raised against partial recombinant mouse Notch1. 1 * 100 µG

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Mouse monoclonal antibody raised against partial recombinant mouse Notch1. 1 * 100 µG

Supplier: Abnova

Mouse monoclonal antibody raised against partial recombinant mouse Notch1. 1 * 100 µG

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Mouse monoclonal antibody raised against partial recombinant rat Slc38a1. 1 * 100 µG

Supplier: Abnova

Mouse monoclonal antibody raised against partial recombinant rat Slc38a1. 1 * 100 µG

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Mouse monoclonal antibody raised against partial recombinant rat Slc38a1. 1 * 100 µG

Supplier: Abnova

Mouse monoclonal antibody raised against partial recombinant rat Slc38a1. 1 * 100 µG

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Mouse monoclonal antibody raised against partial recombinant rat Slc38a1. 1 * 100 µG

Supplier: Abnova

Mouse monoclonal antibody raised against partial recombinant rat Slc38a1. 1 * 100 µG

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Mouse monoclonal antibody raised against partial recombinant mouse Notch1. 1 * 100 µG

Supplier: Abnova

Mouse monoclonal antibody raised against partial recombinant mouse Notch1. 1 * 100 µG

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Mouse monoclonal antibody raised against partial recombinant mouse Notch1. 1 * 100 µG

Supplier: Abnova

Mouse monoclonal antibody raised against partial recombinant mouse Notch1. 1 * 100 µG

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Anti-ADAM32 Rabbit Polyclonal Antibody (Cy3®)

Supplier: Bioss

ADAM32 was first discovered in a search for testis-specific proteinases. ADAM32 was identified in human, rat, mouse, macaque and chimp, and thus far has been found only in testis. In mice, ADAM32 is found on the sperm surface, where it may play a role in fertilization. ADAM32 is a member of the ADAMs family (A Disintegrin And Metalloproteinase), but does not contain the canonical HExxHxxxxH zinc-binding metalloproteinase catalytic site. The domain structure of the full length ADAM32 includes a signal sequence, propeptide domain, metalloproteinase-like domain, disintegrin-like domain, cys-rich domain, EGF-like domain, a short spacer region, then the transmembrane domain and a cytoplasmic domain. Like many of the reproductive-specific ADAMS, ADAM32 plays a non-enzymatic role, or (as is the case for ADAMs 1 & 2 (fertilin alpha and beta)), the protein acts in concert with a proteolytically active ADAM to process proteins. Little is known about interactions between ADAM32 and other ADAMs. Several different sequences for human ADAM32 are published; 787, 688, 649, 629, and 279 amino acids in length. The 688 amino acid form is identical to the 787 AA form until the EGF-like domain, and lacks the TM and cytoplasmic domains. The 649 AA form is likewise identical to the longer form, just to the start of the TM domain, and also lacks the TM and cytoplasmic domains. The 629 AA form has a deletion of 107 residues midway into the MP-like domain, and lacks the amino end of the disintegrin domain, but contains the rest of the domains found in the full-length ADAM32. The predicted masses for the different versions are 87.8, 76.9, 72.9, 70.9 and 32.1, respectively, for the 786, 688, 649, 629 and 279 AA forms.

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Anti-ADAM32 Rabbit Polyclonal Antibody (Cy7®)

Supplier: Bioss

ADAM32 was first discovered in a search for testis-specific proteinases. ADAM32 was identified in human, rat, mouse, macaque and chimp, and thus far has been found only in testis. In mice, ADAM32 is found on the sperm surface, where it may play a role in fertilization. ADAM32 is a member of the ADAMs family (A Disintegrin And Metalloproteinase), but does not contain the canonical HExxHxxxxH zinc-binding metalloproteinase catalytic site. The domain structure of the full length ADAM32 includes a signal sequence, propeptide domain, metalloproteinase-like domain, disintegrin-like domain, cys-rich domain, EGF-like domain, a short spacer region, then the transmembrane domain and a cytoplasmic domain. Like many of the reproductive-specific ADAMS, ADAM32 plays a non-enzymatic role, or (as is the case for ADAMs 1 & 2 (fertilin alpha and beta)), the protein acts in concert with a proteolytically active ADAM to process proteins. Little is known about interactions between ADAM32 and other ADAMs. Several different sequences for human ADAM32 are published; 787, 688, 649, 629, and 279 amino acids in length. The 688 amino acid form is identical to the 787 AA form until the EGF-like domain, and lacks the TM and cytoplasmic domains. The 649 AA form is likewise identical to the longer form, just to the start of the TM domain, and also lacks the TM and cytoplasmic domains. The 629 AA form has a deletion of 107 residues midway into the MP-like domain, and lacks the amino end of the disintegrin domain, but contains the rest of the domains found in the full-length ADAM32. The predicted masses for the different versions are 87.8, 76.9, 72.9, 70.9 and 32.1, respectively, for the 786, 688, 649, 629 and 279 AA forms.

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Anti-ADAM32 Rabbit Polyclonal Antibody (Cy5.5®)

Supplier: Bioss

ADAM32 was first discovered in a search for testis-specific proteinases. ADAM32 was identified in human, rat, mouse, macaque and chimp, and thus far has been found only in testis. In mice, ADAM32 is found on the sperm surface, where it may play a role in fertilization. ADAM32 is a member of the ADAMs family (A Disintegrin And Metalloproteinase), but does not contain the canonical HExxHxxxxH zinc-binding metalloproteinase catalytic site. The domain structure of the full length ADAM32 includes a signal sequence, propeptide domain, metalloproteinase-like domain, disintegrin-like domain, cys-rich domain, EGF-like domain, a short spacer region, then the transmembrane domain and a cytoplasmic domain. Like many of the reproductive-specific ADAMS, ADAM32 plays a non-enzymatic role, or (as is the case for ADAMs 1 & 2 (fertilin alpha and beta)), the protein acts in concert with a proteolytically active ADAM to process proteins. Little is known about interactions between ADAM32 and other ADAMs. Several different sequences for human ADAM32 are published; 787, 688, 649, 629, and 279 amino acids in length. The 688 amino acid form is identical to the 787 AA form until the EGF-like domain, and lacks the TM and cytoplasmic domains. The 649 AA form is likewise identical to the longer form, just to the start of the TM domain, and also lacks the TM and cytoplasmic domains. The 629 AA form has a deletion of 107 residues midway into the MP-like domain, and lacks the amino end of the disintegrin domain, but contains the rest of the domains found in the full-length ADAM32. The predicted masses for the different versions are 87.8, 76.9, 72.9, 70.9 and 32.1, respectively, for the 786, 688, 649, 629 and 279 AA forms.

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Anti-ADAM32 Rabbit Polyclonal Antibody (FITC (Fluorescein Isothiocyanate))

Supplier: Bioss

ADAM32 was first discovered in a search for testis-specific proteinases. ADAM32 was identified in human, rat, mouse, macaque and chimp, and thus far has been found only in testis. In mice, ADAM32 is found on the sperm surface, where it may play a role in fertilization. ADAM32 is a member of the ADAMs family (A Disintegrin And Metalloproteinase), but does not contain the canonical HExxHxxxxH zinc-binding metalloproteinase catalytic site. The domain structure of the full length ADAM32 includes a signal sequence, propeptide domain, metalloproteinase-like domain, disintegrin-like domain, cys-rich domain, EGF-like domain, a short spacer region, then the transmembrane domain and a cytoplasmic domain. Like many of the reproductive-specific ADAMS, ADAM32 plays a non-enzymatic role, or (as is the case for ADAMs 1 & 2 (fertilin alpha and beta)), the protein acts in concert with a proteolytically active ADAM to process proteins. Little is known about interactions between ADAM32 and other ADAMs. Several different sequences for human ADAM32 are published; 787, 688, 649, 629, and 279 amino acids in length. The 688 amino acid form is identical to the 787 AA form until the EGF-like domain, and lacks the TM and cytoplasmic domains. The 649 AA form is likewise identical to the longer form, just to the start of the TM domain, and also lacks the TM and cytoplasmic domains. The 629 AA form has a deletion of 107 residues midway into the MP-like domain, and lacks the amino end of the disintegrin domain, but contains the rest of the domains found in the full-length ADAM32. The predicted masses for the different versions are 87.8, 76.9, 72.9, 70.9 and 32.1, respectively, for the 786, 688, 649, 629 and 279 AA forms.

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Anti-ADAM32 Rabbit Polyclonal Antibody (HRP (Horseradish Peroxidase))

Supplier: Bioss

ADAM32 was first discovered in a search for testis-specific proteinases. ADAM32 was identified in human, rat, mouse, macaque and chimp, and thus far has been found only in testis. In mice, ADAM32 is found on the sperm surface, where it may play a role in fertilization. ADAM32 is a member of the ADAMs family (A Disintegrin And Metalloproteinase), but does not contain the canonical HExxHxxxxH zinc-binding metalloproteinase catalytic site. The domain structure of the full length ADAM32 includes a signal sequence, propeptide domain, metalloproteinase-like domain, disintegrin-like domain, cys-rich domain, EGF-like domain, a short spacer region, then the transmembrane domain and a cytoplasmic domain. Like many of the reproductive-specific ADAMS, ADAM32 plays a non-enzymatic role, or (as is the case for ADAMs 1 & 2 (fertilin alpha and beta)), the protein acts in concert with a proteolytically active ADAM to process proteins. Little is known about interactions between ADAM32 and other ADAMs. Several different sequences for human ADAM32 are published; 787, 688, 649, 629, and 279 amino acids in length. The 688 amino acid form is identical to the 787 AA form until the EGF-like domain, and lacks the TM and cytoplasmic domains. The 649 AA form is likewise identical to the longer form, just to the start of the TM domain, and also lacks the TM and cytoplasmic domains. The 629 AA form has a deletion of 107 residues midway into the MP-like domain, and lacks the amino end of the disintegrin domain, but contains the rest of the domains found in the full-length ADAM32. The predicted masses for the different versions are 87.8, 76.9, 72.9, 70.9 and 32.1, respectively, for the 786, 688, 649, 629 and 279 AA forms.

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9-Bromo-1,2,3,5,6,7-hexahydropyrido[3,2,1-ij]quinoline,95% 1 * 5 g

Supplier: AMBEED

9-Bromo-1,2,3,5,6,7-hexahydropyrido[3,2,1-ij]quinoline,95% 1 * 5 g

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Motor MQC 847 48V DC /5,4A / 235W 3200/min for VKS 1 * 1 items

Supplier: Edmund Bühler GmbH

Motor MQC 847 48V DC /5,4A / 235W 3200/min for VKS 1 * 1 items

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Anti-ADAM32 Rabbit Polyclonal Antibody

Supplier: Bioss

ADAM32 was first discovered in a search for testis-specific proteinases. ADAM32 was identified in human, rat, mouse, macaque and chimp, and thus far has been found only in testis. In mice, ADAM32 is found on the sperm surface, where it may play a role in fertilization. ADAM32 is a member of the ADAMs family (A Disintegrin And Metalloproteinase), but does not contain the canonical HExxHxxxxH zinc-binding metalloproteinase catalytic site. The domain structure of the full length ADAM32 includes a signal sequence, propeptide domain, metalloproteinase-like domain, disintegrin-like domain, cys-rich domain, EGF-like domain, a short spacer region, then the transmembrane domain and a cytoplasmic domain. Like many of the reproductive-specific ADAMS, ADAM32 plays a non-enzymatic role, or (as is the case for ADAMs 1 & 2 (fertilin alpha and beta)), the protein acts in concert with a proteolytically active ADAM to process proteins. Little is known about interactions between ADAM32 and other ADAMs. Several different sequences for human ADAM32 are published; 787, 688, 649, 629, and 279 amino acids in length. The 688 amino acid form is identical to the 787 AA form until the EGF-like domain, and lacks the TM and cytoplasmic domains. The 649 AA form is likewise identical to the longer form, just to the start of the TM domain, and also lacks the TM and cytoplasmic domains. The 629 AA form has a deletion of 107 residues midway into the MP-like domain, and lacks the amino end of the disintegrin domain, but contains the rest of the domains found in the full-length ADAM32. The predicted masses for the different versions are 87.8, 76.9, 72.9, 70.9 and 32.1, respectively, for the 786, 688, 649, 629 and 279 AA forms.

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